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  4. Huawei Sun2000 & ioBroker via JS script funktioniert

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Huawei Sun2000 & ioBroker via JS script funktioniert

Geplant Angeheftet Gesperrt Verschoben ioBroker Allgemein
481 Beiträge 62 Kommentatoren 121.4k Aufrufe 63 Watching
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  • K Kachel

    Die Modbus-Ansteuerung vom Huawei Sun2000 Wechselrichter ist über TCP etwas speziell, da nach öffnen des TCP-Ports noch eine Pause eingehalten werden muss, da sonst keine Daten zurück geliefert werden. Auch wird nicht jede Modbus-TCP-Anfrage mit den angeforderten Registern beantwortet. Daher funktioniert die Kommunikation über den normalen Modbus-Adapter im ioBroker nicht.

    Um die verfügbaren Register in den ioBroker zu bekommen hab ich ein js-script geschrieben, dass die Abfrage der Register über TCP macht und die Daten entsprechend parsed. Man braucht dafür im IOBroker nur die ScriptEngine und muss in deren Settings noch die modbus-serial hinzufügen. Danach legt das Script einen großen Satz an Objekten an und aktualisiert die regelmäßig (ca. 2x die Minute). Es werden nur Register gelesen - das Schreiben von Registern ist nicht eingebaut (und bei mir gerade auch nicht nötig). Damit die Netzwerkpakete möglichst groß sind werden die Registern in Blöcken abgefragt.

    Wer möchte kann das Script gerne nutzen. . Einfach IP, Batteriekonfiguration und die Modbus-IDs eintragen und ausführen. Wer es ändern möchte darf dies auch gerne tun - es freut aber sicher alle ioBroker-Nutzer wenn ihr Änderungen auch wieder veröffentlicht.

    Falls jemand noch eine Idee hat, wie man den Huawei File-transfer über Modbus implementieren kann (mit deren speziellem function-code 0x41), würde ich mich freuen. Der fehlt leider damit die Optimierer ihre Echtzeit-Daten in den IOBroker liefern können...

    der Kachel

    // License: Beerware! Do what ever you like with this, but I'm not liable for anything that you do with it.
    // If you like this code, feel free to buy me a beer ...
    // Have fun with it! der Kachel
    var ModbusRTU = require("modbus-serial");
    var client = new ModbusRTU();
    
    var modbusErrorMessages = [
        "Unknown error",
        "Illegal function (device does not support this read/write function)",
        "Illegal data address (register not supported by device)",
        "Illegal data value (value cannot be written to this register)",
        "Slave device failure (device reports internal error)",
        "Acknowledge (requested data will be available later)",
        "Slave device busy (retry request again later)"
    ];
    
    // open connection to a tcp line
    client.setTimeout(10000);
    
    // Enter your inverter modbus IP and port here:
    client.connectTCP("$$$ADD.YOUR.IP.HERE$$$", { port: 502 });
    // Enter the Modbus-IDs of your Sun2000 inverters here:
    const ModBusIDs = [16, 1];
    // On which Modbus-ID can we reach the power meter? (via Sun2000!)
    const PowerMeterID = 0;
    // Enter your battery stack setup. 2 dimensional array. 
    // e.g. [[3, 2], [3, 0]] means:
    // First inverter has two battery stacks with 3 + 2 battery modules
    // while second inverter has only one battery stack with 3 battery modules
    const BatteryUnits = [[3, 0], [3, 0]];
    
    // These register spaces need to be read:
    const RegisterSpacesToReadContinuously = [[30000, 81], [37100, 114], [32000, 116], [37000, 68],  [37700, 100], [37800, 100], [38200, 100], [38300, 100], [38400, 100], [35300, 40]];
    var RegisterSpacesToReadContinuouslyPtr = 0;
    
    var GlobalDataBuffer = new Array(2);
    for(var i=0; i<ModBusIDs.length; i++) {
        GlobalDataBuffer[i] = new Array(50000); // not optimized....
    }
    
    // ---------------------------------------------------------------
    // Some helper functions:
    function readUnsignedInt16(array) {
        var value = array[0];    
        return value;
    }
    
    function readUnsignedInt32(array) {
        var value = array[0] * 256 * 256 + array[1];    
        return value;
    }
    
    function readSignedInt16(array) {
        var value = 0;
        if (array[0] > 32767)
            value = array[0] - 65535; 
        else
            value = array[0];
    
        return value;
    }
    function readSignedInt32(array) {
        var value = 0;
        for (var i = 0; i < 2; i++) {
            value = (value << 16) | array[i];
        }
        return value;
    }
    function getU16(dataarray, index) {
        var value = readUnsignedInt16(dataarray.slice(index, index+1));
        return value;
    }
    
    function getU32(dataarray, index) {
        var value = readUnsignedInt32(dataarray.slice(index, index+2));
        return value;
    }
    
    function getI16(dataarray, index) {
        var value = readSignedInt16(dataarray.slice(index, index+1));
        return value;
    }
    
    function getI32(dataarray, index) {
        var value = readSignedInt32(dataarray.slice(index, index+2));
        return value;
    }
    
    function getString(dataarray, index, length) {
        var shortarray = dataarray.slice(index, index+length);
        var bytearray = [];
        for(var i = 0; i < length; i++) {
            bytearray.push(dataarray[index+i] >> 8);
            bytearray.push(dataarray[index+i] & 0xff);
        }       
        var value =  String.fromCharCode.apply(null, bytearray);    
        return value;
    }
    
    function getZeroTerminatedString(dataarray, index, length) {
        var shortarray = dataarray.slice(index, index+length);
        var bytearray = [];
        for(var i = 0; i < length; i++) {
            bytearray.push(dataarray[index+i] >> 8);
            bytearray.push(dataarray[index+i] & 0xff);
        }       
        var value =  String.fromCharCode.apply(null, bytearray);    
        var value2 = new String(value).trim();
        return value2;
    }
    
    function forcesetState(objectname, value, options) {
        if(!existsState(objectname)) {
            createState(objectname, value, options);        
        }
        else {
            setState(objectname, value);
        }
    }  
    // ---------------------------------------------------------------
    // Functions to map registers into ioBreaker objects:
    function processOptimizers(id) {
        forcesetState("Solarpower.Huawei.Inverter." + id + ".OptimizerTotalNumber",     getU16(GlobalDataBuffer[id-1], 35200), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".OptimizerOnlineNumber",    getU16(GlobalDataBuffer[id-1], 35201), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".OptimizerFeatureData",     getU16(GlobalDataBuffer[id-1], 35202), {name: "", unit: ""});
    }
    
    function processInverterPowerAdjustments(id) {
        forcesetState("Solarpower.Huawei.Inverter." + id + ".ActiveAdjustement.ActiveAdjustementMode",     getU16(GlobalDataBuffer[id-1], 35300), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".ActiveAdjustement.ActiveAdjustementValue",    getU32(GlobalDataBuffer[id-1], 35301), {name: "", unit: ""}); // Note: This might be an error in the manual. It says register 35302 with quantity 2, but on 35303 is already the next value.
        forcesetState("Solarpower.Huawei.Inverter." + id + ".ActiveAdjustement.ActiveAdjustementCommand",  getU16(GlobalDataBuffer[id-1], 35303), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".ActiveAdjustement.ReactiveAdjustementMode",   getU16(GlobalDataBuffer[id-1], 35304), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".ActiveAdjustement.ReactiveAdjustementValue",  getU32(GlobalDataBuffer[id-1], 35305), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".ActiveAdjustement.ReactiveAdjustementCommand",getU16(GlobalDataBuffer[id-1], 35307), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".ActiveAdjustement.PowerMeterActivePower",     getI32(GlobalDataBuffer[id-1], 35313), {name: "", unit: ""});
    }
    
    function processBattery(id) {
        // Battery registers 1-15 (Stack 1 related)
        if(BatteryUnits[id-1][0] > 0) {
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.RunningStatus",          getU16(GlobalDataBuffer[id-1], 37000), {name: "", unit: ""});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.ChargeAndDischargePower",getI32(GlobalDataBuffer[id-1], 37001), {name: "Charge and Discharge Power", unit: "W"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.BusVoltage",             getU16(GlobalDataBuffer[id-1], 37003) / 10, {name: "Busvoltage", unit: "V"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.BatterySOC",             getU16(GlobalDataBuffer[id-1], 37004) / 10, {name: "Battery SOC", unit: "%"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.WorkingMode",            getU16(GlobalDataBuffer[id-1], 37006), {name: "Working Mode", unit: ""});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.RatedChargePower",       getU32(GlobalDataBuffer[id-1], 37007), {name: "", unit: "W"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.RatedDischargePower",    getU32(GlobalDataBuffer[id-1], 37009), {name: "", unit: "W"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.FaultID",                getU16(GlobalDataBuffer[id-1], 37014), {name: "", unit: ""});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.CurrentDayChargeCapacity",    getU32(GlobalDataBuffer[id-1], 37015) / 100, {name: "", unit: "kWh"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.CurrentDayDischargeCapacity", getU32(GlobalDataBuffer[id-1], 37017) / 100, {name: "", unit: "kWh"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.BusCurrent",             getI16(GlobalDataBuffer[id-1], 37021) / 10, {name: "Buscurrent", unit: "A"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.BatteryTemperature",     getI16(GlobalDataBuffer[id-1], 37022) / 10, {name: "Battery Temperatue", unit: "°C"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.RemainingChargeDischargeTime", getU16(GlobalDataBuffer[id-1], 37025), {name: "", unit: "mins"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.DCDCversion",            getZeroTerminatedString(GlobalDataBuffer[id-1], 37026, 10), {name: "", unit: ""});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.BMSversion",             getZeroTerminatedString(GlobalDataBuffer[id-1], 37036, 10), {name: "", unit: ""});
        }
        // Battery registers 16+17 (Storage-related)
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Battery.MaximumChargePower",                getU32(GlobalDataBuffer[id-1], 37046), {name: "", unit: "W"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Battery.MaximumDischargePower",             getU32(GlobalDataBuffer[id-1], 37048), {name: "", unit: "W"});
    
        // Battery register 18-20 (Stack 1 related)
        if(BatteryUnits[id-1][0] > 0) {
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.SN",                         getZeroTerminatedString(GlobalDataBuffer[id-1], 37052, 10), {name: "Serialnumber", unit: ""});       
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.TotalCharge",                getU32(GlobalDataBuffer[id-1], 37066) / 100, {name: "", unit: "kWh"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.TotalDischarge",             getU32(GlobalDataBuffer[id-1], 37068) / 100, {name: "", unit: "kWh"});
        }
        // Battery register 21-31 (Stack 2 related)
        if(BatteryUnits[id-1][1] > 0) {
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.2.SN",                     getZeroTerminatedString(GlobalDataBuffer[id-1], 37700, 10), {name: "Serialnumber", unit: ""});        
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.2.BatterySOC",             getU16(GlobalDataBuffer[id-1], 37738) / 10, {name: "", unit: "%"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.2.RunningStatus",          getU16(GlobalDataBuffer[id-1], 37741), {name: "", unit: ""});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.2.ChargeAndDischargePower",getI32(GlobalDataBuffer[id-1], 37743), {name: "", unit: "W"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.2.CurrentDayChargeCapacity",    getU32(GlobalDataBuffer[id-1], 37746) / 100, {name: "", unit: "kWh"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.2.CurrentDayDischargeCapacity", getU32(GlobalDataBuffer[id-1], 37748) / 100, {name: "", unit: "kWh"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.2.BusVoltage",             getU16(GlobalDataBuffer[id-1], 37750) / 10, {name: "", unit: "V"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.2.BusCurrent",             getI16(GlobalDataBuffer[id-1], 37751) / 10, {name: "", unit: "A"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.2.BatteryTemperature",     getI16(GlobalDataBuffer[id-1], 37752) / 10, {name: "", unit: "°C"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.2.TotalCharge",                 getU32(GlobalDataBuffer[id-1], 37753) / 100, {name: "", unit: "kWh"});
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.2.TotalDischarge",              getU32(GlobalDataBuffer[id-1], 37755) / 100, {name: "", unit: "kWh"});
        }
        // Battery register 32-41 (Storage related)
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Battery.RatedCapacity", getU32(GlobalDataBuffer[id-1], 37758) / 1, {name: "", unit: "Wh"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Battery.SOC", getU16(GlobalDataBuffer[id-1], 37760) / 10, {name: "", unit: "%"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Battery.RunningStatus", getU16(GlobalDataBuffer[id-1], 37762) / 1, {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Battery.BusVoltage", getU16(GlobalDataBuffer[id-1], 37763) / 10, {name: "", unit: "V"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Battery.BusCurrent", getI16(GlobalDataBuffer[id-1], 37764) / 10, {name: "", unit: "A"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Battery.ChargeAndDischargePower", getI32(GlobalDataBuffer[id-1], 37765) / 1, {name: "", unit: "W"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Battery.TotalCharge", getU32(GlobalDataBuffer[id-1], 37780) / 100, {name: "", unit: "kWh"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Battery.TotalDischarge", getU32(GlobalDataBuffer[id-1], 37782) / 100, {name: "", unit: "kWh"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Battery.CurrentDayChargeCapacity", getU32(GlobalDataBuffer[id-1], 37784) / 100, {name: "", unit: "kWh"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Battery.CurrentDayDischargeCapacity", getU32(GlobalDataBuffer[id-1], 37786) / 100, {name: "Current DayDiscarge ", unit: "kWh"});
    
        // Battery registers 42+43 (Battery stack related)   
        if(BatteryUnits[id-1][1] > 0) {
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.2.SoftwareVersion",    getZeroTerminatedString(GlobalDataBuffer[id-1], 37814, 8), {name: "Softwareversion", unit: ""});
        }
        if(BatteryUnits[id-1][0] > 0) {
            forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack.1.SoftwareVersion",    getZeroTerminatedString(GlobalDataBuffer[id-1], 37799, 8), {name: "Softwareversion", unit: ""});
        }
    
        // Registers 44 to 98: (Battery pack related)
        for(var i = 1; i <= 2; i++){        
            if(BatteryUnits[id-1][i-1] >= 0) {            
                for(var j = 1; j <= BatteryUnits[id-1][i-1]; j++) {
                    //[[38200, 38242, 38284] [38326, 38368, 38410]]; (+42 for each battery pack, +126 for each stack)
                    forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack." + i + ".Battery" + j + ".SN",                getZeroTerminatedString(GlobalDataBuffer[id-1], 38200+(i-1)*126+(j-1)*42, 6), {name: "", unit: ""});
                    forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack." + i + ".Battery" + j + ".FirmwareVersion",   getZeroTerminatedString(GlobalDataBuffer[id-1], 38210+(i-1)*126+(j-1)*42, 8), {name: "", unit: ""});
                    forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack." + i + ".Battery" + j + ".WorkingStatus",     getU16(GlobalDataBuffer[id-1], 38228+(i-1)*126+(j-1)*42), {name: "", unit: ""});
                    forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack." + i + ".Battery" + j + ".BatterySOC",        getU16(GlobalDataBuffer[id-1], 38229+(i-1)*126+(j-1)*42) / 10, {name: "", unit: "%"});
                    forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack." + i + ".Battery" + j + ".ChargeAndDischargePower", getI32(GlobalDataBuffer[id-1], 38233+(i-1)*126+(j-1)*42) / 1000, {name: "", unit: "kW"});
                    forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack." + i + ".Battery" + j + ".Voltage",           getU16(GlobalDataBuffer[id-1], 38235+(i-1)*126+(j-1)*42) / 10, {name: "", unit: "V"});
                    forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack." + i + ".Battery" + j + ".Current",           getI16(GlobalDataBuffer[id-1], 38236+(i-1)*126+(j-1)*42) / 10, {name: "", unit: "A"});
                    forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack." + i + ".Battery" + j + ".TotalCharge",       getU32(GlobalDataBuffer[id-1], 38238+(i-1)*126+(j-1)*42) / 100, {name: "", unit: "kWh"});
                    forcesetState("Solarpower.Huawei.Inverter." + id + ".Batterystack." + i + ".Battery" + j + ".TotalDischarge",    getU32(GlobalDataBuffer[id-1], 38240+(i-1)*126+(j-1)*42) / 100, {name: "", unit: "kWh"});
    
                    // [[38452, 38454, 38456][38458, 38460, 38462]] ( +2 for each pack, +6 for each stack)
                    createState("Solarpower.Huawei.Inverter." + id + ".Batterystack." + i + ".Battery" + j + ".MaxTemperature", getI16(GlobalDataBuffer[id-1], 38452+(i-1)*6+(j-1)*2) / 10, {name: "", unit: "°C"});
                    createState("Solarpower.Huawei.Inverter." + id + ".Batterystack." + i + ".Battery" + j + ".MinTemperature", getI16(GlobalDataBuffer[id-1], 38453+(i-1)*6+(j-1)*2) / 10, {name: "", unit: "°C"});
                }
            }        
        }
    
        // Battery registers 110-141 are not supported by this script yet!
    }
    
    function ProcessPowerMeterStatus() {       
        forcesetState("Solarpower.Huawei.Meter.Status",          getU16(GlobalDataBuffer[PowerMeterID], 37100), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Meter.VoltageL1",        getI32(GlobalDataBuffer[PowerMeterID], 37101)  / 10, {name: "", unit: "V"});
        forcesetState("Solarpower.Huawei.Meter.VoltageL2",        getI32(GlobalDataBuffer[PowerMeterID], 37103)  / 10, {name: "", unit: "V"});
        forcesetState("Solarpower.Huawei.Meter.VoltageL3",        getI32(GlobalDataBuffer[PowerMeterID], 37105)  / 10, {name: "", unit: "V"});
        forcesetState("Solarpower.Huawei.Meter.CurrentL1",        getI32(GlobalDataBuffer[PowerMeterID], 37107)  / 100, {name: "", unit: "A"});
        forcesetState("Solarpower.Huawei.Meter.CurrentL2",        getI32(GlobalDataBuffer[PowerMeterID], 37109)  / 100, {name: "", unit: "A"});
        forcesetState("Solarpower.Huawei.Meter.CurrentL3",        getI32(GlobalDataBuffer[PowerMeterID], 37111) / 100, {name: "", unit: "A"});
        forcesetState("Solarpower.Huawei.Meter.ActivePower",     getI32(GlobalDataBuffer[PowerMeterID], 37113) / 1, {name: "", unit: "W"});
        forcesetState("Solarpower.Huawei.Meter.ReactivePower",   getI32(GlobalDataBuffer[PowerMeterID], 37115) / 1, {name: "", unit: "Var"});
        forcesetState("Solarpower.Huawei.Meter.PowerFactor",     getI16(GlobalDataBuffer[PowerMeterID], 37117) / 1000, {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Meter.GridFrequency",   getI16(GlobalDataBuffer[PowerMeterID], 37118) / 100, {name: "", unit: "Hz"});
        forcesetState("Solarpower.Huawei.Meter.PositiveActiveEnergy",     getI32(GlobalDataBuffer[PowerMeterID], 37119) / 100, {name: "", unit: "kWh"});
        forcesetState("Solarpower.Huawei.Meter.ReverseActiveEnergy",      getI32(GlobalDataBuffer[PowerMeterID], 37121) / 100, {name: "", unit: "kWh"});
        forcesetState("Solarpower.Huawei.Meter.AccumulatedReactivePower", getI32(GlobalDataBuffer[PowerMeterID], 37123) / 100, {name: "", unit: "kVarh"});
        forcesetState("Solarpower.Huawei.Meter.MeterType",       getU16(GlobalDataBuffer[PowerMeterID], 37125), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Meter.VoltageL1-L2",       getI32(GlobalDataBuffer[PowerMeterID], 37126) / 10, {name: "", unit: "V"});
        forcesetState("Solarpower.Huawei.Meter.VoltageL2-L3",       getI32(GlobalDataBuffer[PowerMeterID], 37128) / 10, {name: "", unit: "V"});
        forcesetState("Solarpower.Huawei.Meter.VoltageL3-L1",       getI32(GlobalDataBuffer[PowerMeterID], 37130) / 10, {name: "", unit: "V"});
        forcesetState("Solarpower.Huawei.Meter.ActivePowerL1",    getI32(GlobalDataBuffer[PowerMeterID], 37132) / 1, {name: "", unit: "W"});
        forcesetState("Solarpower.Huawei.Meter.ActivePowerL2",    getI32(GlobalDataBuffer[PowerMeterID], 37134) / 1, {name: "", unit: "W"});
        forcesetState("Solarpower.Huawei.Meter.ActivePowerL3",    getI32(GlobalDataBuffer[PowerMeterID], 37136) / 1, {name: "", unit: "W"});
        forcesetState("Solarpower.Huawei.Meter.MeterModel",      getU16(GlobalDataBuffer[PowerMeterID], 37138), {name: "", unit: ""});
    }
    
    function processInverterStatus(id) {
        forcesetState("Solarpower.Huawei.Inverter." + id + ".State1", getU16(GlobalDataBuffer[id-1], 32000), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".State2", getU16(GlobalDataBuffer[id-1], 32001), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".State3", getU16(GlobalDataBuffer[id-1], 32002), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Alarm1", getU16(GlobalDataBuffer[id-1], 32008), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Alarm2", getU16(GlobalDataBuffer[id-1], 32009), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Alarm3", getU16(GlobalDataBuffer[id-1], 32010), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".String.1_Voltage",       getI16(GlobalDataBuffer[id-1], 32016) / 10  , {name: "", unit: "V"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".String.1_Current",       getI16(GlobalDataBuffer[id-1], 32017) / 100 , {name: "", unit: "A"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".String.2_Voltage",       getI16(GlobalDataBuffer[id-1], 32018) / 10  , {name: "", unit: "V"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".String.2_Current",       getI16(GlobalDataBuffer[id-1], 32019) / 100 , {name: "", unit: "A"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".InputPower",             getI32(GlobalDataBuffer[id-1], 32064) / 1000, {name: "", unit: "kW"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1-L2_Voltage",           getU16(GlobalDataBuffer[id-1], 32066) / 10  , {name: "", unit: "V"});      
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2-L3_Voltage",           getU16(GlobalDataBuffer[id-1], 32067) / 10  , {name: "", unit: "V"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3-L1_Voltage",           getU16(GlobalDataBuffer[id-1], 32068) / 10  , {name: "", unit: "V"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Voltage",            getU16(GlobalDataBuffer[id-1], 32069) / 10  , {name: "", unit: "V"});                              
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Voltage",            getU16(GlobalDataBuffer[id-1], 32070) / 10  , {name: "", unit: "V"});                                                  
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Voltage",            getU16(GlobalDataBuffer[id-1], 32071) / 10  , {name: "", unit: "V"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Current",         getI32(GlobalDataBuffer[id-1], 32072) / 1000, {name: "", unit: "A"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Current",         getI32(GlobalDataBuffer[id-1], 32074) / 1000, {name: "", unit: "A"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Current",         getI32(GlobalDataBuffer[id-1], 32076) / 1000, {name: "", unit: "A"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".PeakActivePowerDay",     getI32(GlobalDataBuffer[id-1], 32078) / 1000, {name: "", unit: "kW"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".ActivePower",            getI32(GlobalDataBuffer[id-1], 32080) / 1000, {name: "", unit: "kW"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".ReactivePower",          getI32(GlobalDataBuffer[id-1], 32082) / 1000, {name: "", unit: "kVar"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".PowerFactor",            getI16(GlobalDataBuffer[id-1], 32084) / 1000, {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".GridFrequency",          getU16(GlobalDataBuffer[id-1], 32085) / 100 , {name: "", unit: "Hz"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Efficiency",             getU16(GlobalDataBuffer[id-1], 32086) / 100 , {name: "", unit: "%"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".InternalTemperature",    getI16(GlobalDataBuffer[id-1], 32087) / 10  , {name: "", unit: "°C"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".InsulationResistance",   getU16(GlobalDataBuffer[id-1], 32088) / 1000, {name: "", unit: "MOhm"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".DeviceStatus",              getU16(GlobalDataBuffer[id-1], 32089), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".FaultCode",                 getU16(GlobalDataBuffer[id-1], 32090), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".StartupTime",               getU16(GlobalDataBuffer[id-1], 32091), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".ShutdownTime",              getU16(GlobalDataBuffer[id-1], 32093), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".AccomulatedEnergyYield",    getU16(GlobalDataBuffer[id-1], 32106), {name: "", unit: "kWh"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".DailyEnergyYield",          getU16(GlobalDataBuffer[id-1], 32114), {name: "", unit: "kWh"});
    }
    
    function ProcessDeviceInfo(id) {      
        // Note: Manual says its quantitiy is 15, but that is the number (+1) of 8bit characters
        forcesetState("Solarpower.Huawei.Inverter." + id + ".Model",  getZeroTerminatedString(GlobalDataBuffer[id-1], 30000, 8), {name: "", unit: ""}); 
        forcesetState("Solarpower.Huawei.Inverter." + id + ".SN",     getZeroTerminatedString(GlobalDataBuffer[id-1], 30015, 6), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".PN",     getZeroTerminatedString(GlobalDataBuffer[id-1], 30025, 6), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".ModelID",           getU16(GlobalDataBuffer[id-1], 30070), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".PVStrings",         getU16(GlobalDataBuffer[id-1], 30071), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".MPPTrackers",       getU16(GlobalDataBuffer[id-1], 30072), {name: "", unit: ""});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".MaxRatedPower",     getU32(GlobalDataBuffer[id-1], 30073) / 1000, {name: "", unit: "kW"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".MaxActivePower",    getU32(GlobalDataBuffer[id-1], 30075) / 1000, {name: "", unit: "kW"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".MaxApparentPower",  getU32(GlobalDataBuffer[id-1], 30077) / 1000, {name: "", unit: "kVA"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".MaxReactivePowerToGrid",        getI32(GlobalDataBuffer[id-1], 30079) / 1000, {name: "", unit: "kVAr"});
        forcesetState("Solarpower.Huawei.Inverter." + id + ".MaxReactivePowerFromGrid",      getI32(GlobalDataBuffer[id-1], 30081) / 1000, {name: "", unit: "kVAr"});
    }
    
    function readRegisterSpace(id, address, length) {
        client.setID(ModBusIDs[id-1]);
        client.readHoldingRegisters(address, length, function(err, data) {
            if (err) {
                console.warn("Error received reading address " + address + " from id: " + ModBusIDs[id-1] + " with error: " + modbusErrorMessages[err.modbusCode]);            
            }
            else
            {   
                console.debug("Read data from id/address " + ModBusIDs[id-1] + "/" + address + "\nData is: " + data.data);
                for(var i = 0; i < length; i++)  {
                    GlobalDataBuffer[id-1][address+i] = data.data[i];
                } 
            }
        });
    }
    
    function processData() {
        console.log("Processing new data...");
        for(var i = 1; i <= ModBusIDs.length; i++) {
            ProcessDeviceInfo(i);
            processInverterStatus(i);
            processBattery(i);
            processInverterPowerAdjustments(i);
            processOptimizers(i); 
        }    
        ProcessPowerMeterStatus();
        console.log("Processing done!");
    }
    
    
    // -------------------------------------------------------------------
    // This is the main function triggering a  read via modbus-tcp every two seconds.
    // Processing of data is triggered as soon as one complete set of registers is copied.
    var triggerprocessing = 0; 
    var currentinverter = 1;
    
    
    setInterval(function() {
        if(triggerprocessing == 1) {
            triggerprocessing = 0;
            processData();        
        }      
       
        console.log("Triggering read of inverter " + currentinverter + " at address " + RegisterSpacesToReadContinuously[RegisterSpacesToReadContinuouslyPtr][0] + " with length " +  RegisterSpacesToReadContinuously[RegisterSpacesToReadContinuouslyPtr][1]);
        readRegisterSpace(currentinverter, RegisterSpacesToReadContinuously[RegisterSpacesToReadContinuouslyPtr][0], RegisterSpacesToReadContinuously[RegisterSpacesToReadContinuouslyPtr][1]); 
        RegisterSpacesToReadContinuouslyPtr++;               
        if(RegisterSpacesToReadContinuouslyPtr >= RegisterSpacesToReadContinuously.length) {
            RegisterSpacesToReadContinuouslyPtr = 0;
            currentinverter++
            if(currentinverter > ModBusIDs.length){
                currentinverter = 1;  
                triggerprocessing = 1;                    
            }
        }     
    }, 2000);
    
    A Offline
    A Offline
    ATARI
    schrieb am zuletzt editiert von ATARI
    #57

    @kachel

    Vielen Dank für das Script und Deine Arbeit !

    Wie kann ich den Abfrage Intervall nach einem Durchlauf verzögern
    oder nur einmal pro Minute oder alle 5 Minuten starten lassen?
    Ein Timer mit: von Uhrzeit bis Uhrzeit alle x Minuten wäre auch super.

    Momentan bekommt das Script irgendwann im Laufe des Tages keine
    Daten mehr und erzeugt nur noch Fehlermeldungen.
    In diesem Fall hilft nur: das Script stoppen und nach einigen Minuten
    wieder starten.

    Gruß
    ATARI

    Edit:
    Würde Dir für Deine Arbeit 'nen Kaffee oder 'n Bier spendieren.

    Raspberry Pi 5B (ioB via pi OS_lite(64bit) | Synology NAS (ioB via Docker)

    Alex WarkentinA J H 3 Antworten Letzte Antwort
    0
    • J juggi1962

      Hallo an alle Wissenden :-)
      Funktioniert dieses Skript auch ohne Speicher?
      Ich hab leider keinen Speicher was muss ich dann daran ändern.
      Für mich ist JS Neuland.
      Wäre schön wenn mir jemand helfen könnte.
      Danke im Voraus Gruß Jürgen.

      
      javascript.0
      2023-03-05 09:56:27.826	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 38200 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:56:25.826	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 37800 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:56:23.824	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 37700 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:56:21.826	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 37000 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:56:19.823	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 32000 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:56:17.823	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 37100 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:56:15.823	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 30000 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:56:13.821	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 35300 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:56:11.820	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 38400 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:56:09.820	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 38300 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:56:07.819	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 38200 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:56:05.819	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 37800 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:56:03.820	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 37700 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:56:01.819	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 37000 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:55:59.817	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 32000 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:55:57.817	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 37100 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:55:55.817	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 30000 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:55:53.817	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 35300 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:55:51.818	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 38400 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:55:49.816	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 38300 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:55:47.816	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 38200 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:55:45.815	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 37800 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:55:43.815	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 37700 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:55:41.815	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 37000 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:55:39.815	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 32000 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:55:37.814	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 37100 from id: undefined with error: undefined
      
      javascript.0
      2023-03-05 09:55:35.814	warn	script.js.Test.Modbus_Huawei_Sun_2000: Error received reading address 30000 from id: undefined with error: undefined
      
      Alex WarkentinA Offline
      Alex WarkentinA Offline
      Alex Warkentin
      schrieb am zuletzt editiert von
      #58

      @juggi1962
      Der Fehler besagt, dass deine ID für den Wechselrichter "undefined" ist. Welche ID hast du im Script eingestellt und hast du sie mit deinen aktuellen Einstellungen abgeglichen?

      J 1 Antwort Letzte Antwort
      0
      • A ATARI

        @kachel

        Vielen Dank für das Script und Deine Arbeit !

        Wie kann ich den Abfrage Intervall nach einem Durchlauf verzögern
        oder nur einmal pro Minute oder alle 5 Minuten starten lassen?
        Ein Timer mit: von Uhrzeit bis Uhrzeit alle x Minuten wäre auch super.

        Momentan bekommt das Script irgendwann im Laufe des Tages keine
        Daten mehr und erzeugt nur noch Fehlermeldungen.
        In diesem Fall hilft nur: das Script stoppen und nach einigen Minuten
        wieder starten.

        Gruß
        ATARI

        Edit:
        Würde Dir für Deine Arbeit 'nen Kaffee oder 'n Bier spendieren.

        Alex WarkentinA Offline
        Alex WarkentinA Offline
        Alex Warkentin
        schrieb am zuletzt editiert von
        #59

        @atari
        Das Abfrageintervall kannst du in der letzten Zeile des Scripts in ms einstellen. Dein Problem liegt wohl aber weniger am Intervall (dann kommt zwischendurch eine Warnung, dass das Gerät beschäftigt ist), sondern, dass das Script beim Verlust der Modbus-Verbindung diese nicht wieder automatisch aufbaut.

        J A 2 Antworten Letzte Antwort
        0
        • Alex WarkentinA Alex Warkentin

          @juggi1962
          Der Fehler besagt, dass deine ID für den Wechselrichter "undefined" ist. Welche ID hast du im Script eingestellt und hast du sie mit deinen aktuellen Einstellungen abgeglichen?

          J Offline
          J Offline
          juggi1962
          schrieb am zuletzt editiert von
          #60

          @alex-warkentin
          Danke für deine Antwort. Soweit funktioniert jetzt alles.
          Gibt es eigentlich eine Möglichkeit die Infos auszuschalten denn so sehe ich im Log ja nur mehr diese von dem Skript.
          Danke für eure Hilfe

          Alex WarkentinA 1 Antwort Letzte Antwort
          0
          • A ATARI

            @juggi1962

            Bin auch nicht so fit in js..
            ändere mal die Einstellung für den Speicher.

            zum Bsp.:
            const BatteryUnits = [0, 0];

            Gruß
            ATARI

            Edit:
            Deinem Log zufolge bekommst Du keine Daten von der Anlage.
            Hast Du in den Kom.einstellung des Wechselrichters den ModBus
            aktiviert?

            J Offline
            J Offline
            juggi1962
            schrieb am zuletzt editiert von
            #61

            @atari sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

            @juggi1962

            Bin auch nicht so fit in js..
            ändere mal die Einstellung für den Speicher.

            zum Bsp.:
            const BatteryUnits = [0, 0];

            Gruß
            ATARI

            Edit:
            Deinem Log zufolge bekommst Du keine Daten von der Anlage.
            Hast Du in den Kom.einstellung des Wechselrichters den ModBus
            aktiviert?

            Danke für deine Antwort. Soweit läuft jetzt alles

            1 Antwort Letzte Antwort
            0
            • J juggi1962

              @alex-warkentin
              Danke für deine Antwort. Soweit funktioniert jetzt alles.
              Gibt es eigentlich eine Möglichkeit die Infos auszuschalten denn so sehe ich im Log ja nur mehr diese von dem Skript.
              Danke für eure Hilfe

              Alex WarkentinA Offline
              Alex WarkentinA Offline
              Alex Warkentin
              schrieb am zuletzt editiert von
              #62

              @juggi1962
              Suche mal im Script mit STRG + F nach "console.log" und setze überall, wo dich die Information nicht interessiert "//" vor die Zeile.

              J 1 Antwort Letzte Antwort
              0
              • Alex WarkentinA Alex Warkentin

                @juggi1962
                Suche mal im Script mit STRG + F nach "console.log" und setze überall, wo dich die Information nicht interessiert "//" vor die Zeile.

                J Offline
                J Offline
                juggi1962
                schrieb am zuletzt editiert von
                #63

                @alex-warkentin
                Super Danke, werde ich gleich probieren

                1 Antwort Letzte Antwort
                0
                • A ATARI

                  @kachel

                  Vielen Dank für das Script und Deine Arbeit !

                  Wie kann ich den Abfrage Intervall nach einem Durchlauf verzögern
                  oder nur einmal pro Minute oder alle 5 Minuten starten lassen?
                  Ein Timer mit: von Uhrzeit bis Uhrzeit alle x Minuten wäre auch super.

                  Momentan bekommt das Script irgendwann im Laufe des Tages keine
                  Daten mehr und erzeugt nur noch Fehlermeldungen.
                  In diesem Fall hilft nur: das Script stoppen und nach einigen Minuten
                  wieder starten.

                  Gruß
                  ATARI

                  Edit:
                  Würde Dir für Deine Arbeit 'nen Kaffee oder 'n Bier spendieren.

                  J Offline
                  J Offline
                  juggi1962
                  schrieb am zuletzt editiert von
                  #64

                  @atari sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

                  @kachel

                  Vielen Dank für das Script und Deine Arbeit !

                  Wie kann ich den Abfrage Intervall nach einem Durchlauf verzögern
                  oder nur einmal pro Minute oder alle 5 Minuten starten lassen?
                  Ein Timer mit: von Uhrzeit bis Uhrzeit alle x Minuten wäre auch super.

                  Momentan bekommt das Script irgendwann im Laufe des Tages keine
                  Daten mehr und erzeugt nur noch Fehlermeldungen.
                  In diesem Fall hilft nur: das Script stoppen und nach einigen Minuten
                  wieder starten.

                  Gruß
                  ATARI

                  Edit:
                  Würde Dir für Deine Arbeit 'nen Kaffee oder 'n Bier spendieren.

                  Ich habe leider das selbe Problem. Eine Weile läuft alles bestens und dann nur mehr Fehler.
                  Neustart und es läuft wieder ein Weilchen.

                  1 Antwort Letzte Antwort
                  0
                  • Alex WarkentinA Alex Warkentin

                    @atari
                    Das Abfrageintervall kannst du in der letzten Zeile des Scripts in ms einstellen. Dein Problem liegt wohl aber weniger am Intervall (dann kommt zwischendurch eine Warnung, dass das Gerät beschäftigt ist), sondern, dass das Script beim Verlust der Modbus-Verbindung diese nicht wieder automatisch aufbaut.

                    J Offline
                    J Offline
                    juggi1962
                    schrieb am zuletzt editiert von
                    #65

                    @alex-warkentin sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

                    @atari
                    Das Abfrageintervall kannst du in der letzten Zeile des Scripts in ms einstellen. Dein Problem liegt wohl aber weniger am Intervall (dann kommt zwischendurch eine Warnung, dass das Gerät beschäftigt ist), sondern, dass das Script beim Verlust der Modbus-Verbindung diese nicht wieder automatisch aufbaut.

                    Ich habe das selbe Problem.
                    Ich habe eine LAN Verbindung also sollte fie Verbindung bleiben, oder verstehe ich da was falsch? was kann man da machen

                    Alex WarkentinA 1 Antwort Letzte Antwort
                    0
                    • J juggi1962

                      @alex-warkentin sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

                      @atari
                      Das Abfrageintervall kannst du in der letzten Zeile des Scripts in ms einstellen. Dein Problem liegt wohl aber weniger am Intervall (dann kommt zwischendurch eine Warnung, dass das Gerät beschäftigt ist), sondern, dass das Script beim Verlust der Modbus-Verbindung diese nicht wieder automatisch aufbaut.

                      Ich habe das selbe Problem.
                      Ich habe eine LAN Verbindung also sollte fie Verbindung bleiben, oder verstehe ich da was falsch? was kann man da machen

                      Alex WarkentinA Offline
                      Alex WarkentinA Offline
                      Alex Warkentin
                      schrieb am zuletzt editiert von
                      #66

                      @juggi1962 Poste mal die Logs, wenn der Fehler auftritt

                      Hier ist das Script, was ich für mich angepasst habe. Achtung! Ich habe die Batterie und andere für mich uninteressante Sachen rausgeschmissen und die Namen von Variablen und Funktionen angepasst. Für die Neuverbindung nach Verbindungsabbruch brauchst du die Zeilen 18 - 27 , 107-122 und 235 -237

                      // License: Beerware! Do what ever you like with this, but I'm not liable for anything that you do with it.
                      // If you like this code, feel free to buy me a beer ...
                      // Have fun with it! der Kachel
                      // @ts-ignore
                      var modbusRTU = require("modbus-serial");
                      var client = new modbusRTU();
                      
                      var modbusErrorMessages = [
                          "Unknown error",
                          "Illegal function (device does not support this read/write function)",
                          "Illegal data address (register not supported by device)",
                          "Illegal data value (value cannot be written to this register)",
                          "Slave device failure (device reports internal error)",
                          "Acknowledge (requested data will be available later)",
                          "Slave device busy (retry request again later)"
                      ];
                      
                      // Enter your inverter modbus IP and port here:
                      const modbusHost = "000.000.000.000";
                      const modbusPort = 502;
                      // Enter the Modbus-IDs of your Sun2000 inverters here:
                      const modbusID = [1];
                      // On which Modbus-ID can we reach the power meter? (via Sun2000!)
                      const powerMeterID = 0;
                      
                      // Connect to modbus client
                      ConnectModbus();
                      
                      // These register spaces need to be read:
                      const registerSpacesToReadContinuously = [[37100, 114], [32000, 116]];
                      var registerSpacesToReadContinuouslyPtr = 0;
                      
                      var globalDataBuffer = new Array(1);
                      globalDataBuffer[0] = new Array(50000); // not optimized....
                      
                      // ---------------------------------------------------------------
                      // Some helper functions:
                      function ReadUnsignedInt16(array) {
                          var value = array[0];    
                          return value;
                      }
                      
                      function ReadUnsignedInt32(array) {
                          var value = array[0] * 256 * 256 + array[1];    
                          return value;
                      }
                      
                      function ReadSignedInt16(array) {
                          var value = 0;
                          if (array[0] > 32767)
                              value = array[0] - 65535; 
                          else
                              value = array[0];
                      
                          return value;
                      }
                      function ReadSignedInt32(array) {
                          var value = 0;
                          for (var i = 0; i < 2; i++) {
                              value = (value << 16) | array[i];
                          }
                          return value;
                      }
                      function GetU16(dataarray, index) {
                          var value = ReadUnsignedInt16(dataarray.slice(index, index+1));
                          return value;
                      }
                      
                      function GetU32(dataarray, index) {
                          var value = ReadUnsignedInt32(dataarray.slice(index, index+2));
                          return value;
                      }
                      
                      function GetI16(dataarray, index) {
                          var value = ReadSignedInt16(dataarray.slice(index, index+1));
                          return value;
                      }
                      
                      function GetI32(dataarray, index) {
                          var value = ReadSignedInt32(dataarray.slice(index, index+2));
                          return value;
                      }
                      
                      function GetString(dataarray, index, length) {
                          var shortarray = dataarray.slice(index, index+length);
                          var bytearray = [];
                          for(var i = 0; i < length; i++) {
                              bytearray.push(dataarray[index+i] >> 8);
                              bytearray.push(dataarray[index+i] & 0xff);
                          }       
                          var value =  String.fromCharCode.apply(null, bytearray);    
                          return value;
                      }
                      
                      function GetZeroTerminatedString(dataarray, index, length) {
                          var shortarray = dataarray.slice(index, index+length);
                          var bytearray = [];
                          for(var i = 0; i < length; i++) {
                              bytearray.push(dataarray[index+i] >> 8);
                              bytearray.push(dataarray[index+i] & 0xff);
                          }       
                          var value =  String.fromCharCode.apply(null, bytearray);    
                          var value2 = new String(value).trim();
                          return value2;
                      }
                      
                      // Funktion zum Herstellen einer Modbus-Verbindung
                      function ConnectModbus() {
                          console.log("Init connection to: " + modbusHost +":" + modbusPort);
                          // set requests parameters
                          client.setTimeout (10000);
                          // try to connect
                          client.connectTCP (modbusHost, { port: modbusPort })
                              .then(function()
                              {
                                  console.log("Connected, wait for reading...");
                              })
                              .catch(function(e)
                              {
                                  console.log(e);
                              });
                      }
                      
                      // Funktion zum Anlegen und Beschreiben eines Datenpunkts
                      function ForceSetState(objectname, value, options) {
                          if(!existsState("javascript.0." + objectname))      createState(objectname, value, options);
                          else                                                setState(objectname, value);
                      }  
                      // ---------------------------------------------------------------
                      // Functions to map registers into ioBreaker objects:
                      function ProcessPowerMeterStatus() {       
                          ForceSetState("Solarpower.Huawei.Meter.Status",                     GetU16(globalDataBuffer[powerMeterID], 37100),          {name: "", unit: ""});
                          ForceSetState("Solarpower.Huawei.Meter.VoltageL1",                  GetI32(globalDataBuffer[powerMeterID], 37101) / 10,     {name: "", unit: "V"});
                          ForceSetState("Solarpower.Huawei.Meter.VoltageL2",                  GetI32(globalDataBuffer[powerMeterID], 37103) / 10,     {name: "", unit: "V"});
                          ForceSetState("Solarpower.Huawei.Meter.VoltageL3",                  GetI32(globalDataBuffer[powerMeterID], 37105) / 10,     {name: "", unit: "V"});
                          ForceSetState("Solarpower.Huawei.Meter.CurrentL1",                  GetI32(globalDataBuffer[powerMeterID], 37107) / 100,    {name: "", unit: "A"});
                          ForceSetState("Solarpower.Huawei.Meter.CurrentL2",                  GetI32(globalDataBuffer[powerMeterID], 37109) / 100,    {name: "", unit: "A"});
                          ForceSetState("Solarpower.Huawei.Meter.CurrentL3",                  GetI32(globalDataBuffer[powerMeterID], 37111) / 100,    {name: "", unit: "A"});
                          ForceSetState("Solarpower.Huawei.Meter.ActivePower",                GetI32(globalDataBuffer[powerMeterID], 37113) / 1,      {name: "", unit: "W"});
                          ForceSetState("Solarpower.Huawei.Meter.ReactivePower",              GetI32(globalDataBuffer[powerMeterID], 37115) / 1,      {name: "", unit: "Var"});
                          ForceSetState("Solarpower.Huawei.Meter.PowerFactor",                GetI16(globalDataBuffer[powerMeterID], 37117) / 1000,   {name: "", unit: ""});
                          ForceSetState("Solarpower.Huawei.Meter.GridFrequency",              GetI16(globalDataBuffer[powerMeterID], 37118) / 100,    {name: "", unit: "Hz"});
                          ForceSetState("Solarpower.Huawei.Meter.PositiveActiveEnergy",       GetI32(globalDataBuffer[powerMeterID], 37119) / 100,    {name: "", unit: "kWh"});
                          ForceSetState("Solarpower.Huawei.Meter.ReverseActiveEnergy",        GetI32(globalDataBuffer[powerMeterID], 37121) / 100,    {name: "", unit: "kWh"});
                          ForceSetState("Solarpower.Huawei.Meter.AccumulatedReactivePower",   GetI32(globalDataBuffer[powerMeterID], 37123) / 100,    {name: "", unit: "kVarh"});
                          //ForceSetState("Solarpower.Huawei.Meter.MeterType",                  GetU16(globalDataBuffer[powerMeterID], 37125),          {name: "", unit: ""});
                          ForceSetState("Solarpower.Huawei.Meter.VoltageL1-L2",               GetI32(globalDataBuffer[powerMeterID], 37126) / 10,     {name: "", unit: "V"});
                          ForceSetState("Solarpower.Huawei.Meter.VoltageL2-L3",               GetI32(globalDataBuffer[powerMeterID], 37128) / 10,     {name: "", unit: "V"});
                          ForceSetState("Solarpower.Huawei.Meter.VoltageL3-L1",               GetI32(globalDataBuffer[powerMeterID], 37130) / 10,     {name: "", unit: "V"});
                          ForceSetState("Solarpower.Huawei.Meter.ActivePowerL1",              GetI32(globalDataBuffer[powerMeterID], 37132) / 1,      {name: "", unit: "W"});
                          ForceSetState("Solarpower.Huawei.Meter.ActivePowerL2",              GetI32(globalDataBuffer[powerMeterID], 37134) / 1,      {name: "", unit: "W"});
                          ForceSetState("Solarpower.Huawei.Meter.ActivePowerL3",              GetI32(globalDataBuffer[powerMeterID], 37136) / 1,      {name: "", unit: "W"});
                          //ForceSetState("Solarpower.Huawei.Meter.MeterModel",                 GetU16(globalDataBuffer[powerMeterID], 37138),          {name: "", unit: ""});
                      }
                      
                      function ProcessInverterStatus(id) {
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".State1",                   GetU16(globalDataBuffer[id-1], 32000),          {name: "", unit: ""});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".State2",                   GetU16(globalDataBuffer[id-1], 32002),          {name: "", unit: ""});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".State3",                   GetU32(globalDataBuffer[id-1], 32003),          {name: "", unit: ""});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm1",                   GetU16(globalDataBuffer[id-1], 32008),          {name: "", unit: ""});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm2",                   GetU16(globalDataBuffer[id-1], 32009),          {name: "", unit: ""});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm3",                   GetU16(globalDataBuffer[id-1], 32010),          {name: "", unit: ""});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Voltage",         GetI16(globalDataBuffer[id-1], 32016) / 10,     {name: "", unit: "V"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Current",         GetI16(globalDataBuffer[id-1], 32017) / 100,    {name: "", unit: "A"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Voltage",         GetI16(globalDataBuffer[id-1], 32018) / 10,     {name: "", unit: "V"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Current",         GetI16(globalDataBuffer[id-1], 32019) / 100,    {name: "", unit: "A"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Voltage",         GetI16(globalDataBuffer[id-1], 32020) / 10,     {name: "", unit: "V"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Current",         GetI16(globalDataBuffer[id-1], 32021) / 100,    {name: "", unit: "A"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Voltage",         GetI16(globalDataBuffer[id-1], 32022) / 10,     {name: "", unit: "V"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Current",         GetI16(globalDataBuffer[id-1], 32023) / 100,    {name: "", unit: "A"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".InputPower",               GetI32(globalDataBuffer[id-1], 32064) / 1000,   {name: "", unit: "kW"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1-L2_Voltage",       GetU16(globalDataBuffer[id-1], 32066) / 10,     {name: "", unit: "V"});      
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2-L3_Voltage",       GetU16(globalDataBuffer[id-1], 32067) / 10,     {name: "", unit: "V"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3-L1_Voltage",       GetU16(globalDataBuffer[id-1], 32068) / 10,     {name: "", unit: "V"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Voltage",          GetU16(globalDataBuffer[id-1], 32069) / 10,     {name: "", unit: "V"});                              
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Voltage",          GetU16(globalDataBuffer[id-1], 32070) / 10,     {name: "", unit: "V"});                                                  
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Voltage",          GetU16(globalDataBuffer[id-1], 32071) / 10,     {name: "", unit: "V"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Current",          GetI32(globalDataBuffer[id-1], 32072) / 1000,   {name: "", unit: "A"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Current",          GetI32(globalDataBuffer[id-1], 32074) / 1000,   {name: "", unit: "A"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Current",          GetI32(globalDataBuffer[id-1], 32076) / 1000,   {name: "", unit: "A"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".PeakActivePowerDay",       GetI32(globalDataBuffer[id-1], 32078) / 1000,   {name: "", unit: "kW"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".ActivePower",              GetI32(globalDataBuffer[id-1], 32080) / 1000,   {name: "", unit: "kW"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".ReactivePower",            GetI32(globalDataBuffer[id-1], 32082) / 1000,   {name: "", unit: "kVar"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".PowerFactor",              GetI16(globalDataBuffer[id-1], 32084) / 1000,   {name: "", unit: ""});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".GridFrequency",            GetU16(globalDataBuffer[id-1], 32085) / 100,    {name: "", unit: "Hz"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".Efficiency",               GetU16(globalDataBuffer[id-1], 32086) / 100,    {name: "", unit: "%"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".InternalTemperature",      GetI16(globalDataBuffer[id-1], 32087) / 10,     {name: "", unit: "°C"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".InsulationResistance",     GetU16(globalDataBuffer[id-1], 32088) / 1000,   {name: "", unit: "MOhm"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".DeviceStatus",             GetU16(globalDataBuffer[id-1], 32089),          {name: "", unit: ""});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".FaultCode",                GetU16(globalDataBuffer[id-1], 32090),          {name: "", unit: ""});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".StartupTime",              String(new Date(GetU32(globalDataBuffer[id-1], 32091)*1000)),          {name: "", unit: ""});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".ShutdownTime",             String(new Date(GetU32(globalDataBuffer[id-1], 32093)*1000)),          {name: "", unit: ""});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".AccomulatedEnergyYield",   GetU32(globalDataBuffer[id-1], 32106),          {name: "", unit: "kWh"});
                          ForceSetState("Solarpower.Huawei.Inverter." + id + ".DailyEnergyYield",         GetU32(globalDataBuffer[id-1], 32114),          {name: "", unit: "kWh"});
                      }
                      
                      function ReadRegisterSpace(id, address, length) {
                          client.setID(modbusID[id-1]);
                          client.readHoldingRegisters(address, length, function(err, data) {
                              if (err) {
                                  console.warn("Error received reading address " + address + " from id: " + modbusID[id-1] + " with error: " + modbusErrorMessages[err.modbusCode]); 
                              }
                              else
                              {   
                                  console.debug("Read data from id/address " + modbusID[id-1] + "/" + address + "\nData is: " + data.data);
                                  for(var i = 0; i < length; i++)  {
                                      globalDataBuffer[id-1][address+i] = data.data[i];
                                  } 
                              }
                          });
                      }
                      
                      function ProcessData() {
                          //console.log("Processing new data...");
                          for(var i = 1; i <= modbusID.length; i++) {
                              //ProcessDeviceInfo(i);
                              ProcessInverterStatus(i);
                              //processBattery(i);
                              //processInverterPowerAdjustments(i);
                              //processOptimizers(i); 
                          }    
                          ProcessPowerMeterStatus();
                          //console.log("Processing done!");
                      }
                      
                      
                      // -------------------------------------------------------------------
                      // This is the main function triggering a  read via modbus-tcp every two seconds.
                      // Processing of data is triggered as soon as one complete set of registers is copied.
                      var triggerprocessing = 0; 
                      var currentinverter = 1;
                      
                      
                      setInterval(function() {
                              if (!client.isOpen){
                                  ConnectModbus();
                              }
                              if(triggerprocessing == 1) {
                              triggerprocessing = 0;
                              ProcessData();        
                              }      
                         
                          //console.log("Triggering read of inverter " + currentinverter + " at address " + registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0] + " with length " +  registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]);
                          ReadRegisterSpace(currentinverter, registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0], registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]); 
                          registerSpacesToReadContinuouslyPtr++;               
                          if(registerSpacesToReadContinuouslyPtr >= registerSpacesToReadContinuously.length) {
                              registerSpacesToReadContinuouslyPtr = 0;
                              currentinverter++
                              if(currentinverter > modbusID.length){
                                  currentinverter = 1;  
                                  triggerprocessing = 1;                    
                              }
                          }     
                      }, 3000);
                      
                      J H 3 Antworten Letzte Antwort
                      0
                      • Alex WarkentinA Alex Warkentin

                        @juggi1962 Poste mal die Logs, wenn der Fehler auftritt

                        Hier ist das Script, was ich für mich angepasst habe. Achtung! Ich habe die Batterie und andere für mich uninteressante Sachen rausgeschmissen und die Namen von Variablen und Funktionen angepasst. Für die Neuverbindung nach Verbindungsabbruch brauchst du die Zeilen 18 - 27 , 107-122 und 235 -237

                        // License: Beerware! Do what ever you like with this, but I'm not liable for anything that you do with it.
                        // If you like this code, feel free to buy me a beer ...
                        // Have fun with it! der Kachel
                        // @ts-ignore
                        var modbusRTU = require("modbus-serial");
                        var client = new modbusRTU();
                        
                        var modbusErrorMessages = [
                            "Unknown error",
                            "Illegal function (device does not support this read/write function)",
                            "Illegal data address (register not supported by device)",
                            "Illegal data value (value cannot be written to this register)",
                            "Slave device failure (device reports internal error)",
                            "Acknowledge (requested data will be available later)",
                            "Slave device busy (retry request again later)"
                        ];
                        
                        // Enter your inverter modbus IP and port here:
                        const modbusHost = "000.000.000.000";
                        const modbusPort = 502;
                        // Enter the Modbus-IDs of your Sun2000 inverters here:
                        const modbusID = [1];
                        // On which Modbus-ID can we reach the power meter? (via Sun2000!)
                        const powerMeterID = 0;
                        
                        // Connect to modbus client
                        ConnectModbus();
                        
                        // These register spaces need to be read:
                        const registerSpacesToReadContinuously = [[37100, 114], [32000, 116]];
                        var registerSpacesToReadContinuouslyPtr = 0;
                        
                        var globalDataBuffer = new Array(1);
                        globalDataBuffer[0] = new Array(50000); // not optimized....
                        
                        // ---------------------------------------------------------------
                        // Some helper functions:
                        function ReadUnsignedInt16(array) {
                            var value = array[0];    
                            return value;
                        }
                        
                        function ReadUnsignedInt32(array) {
                            var value = array[0] * 256 * 256 + array[1];    
                            return value;
                        }
                        
                        function ReadSignedInt16(array) {
                            var value = 0;
                            if (array[0] > 32767)
                                value = array[0] - 65535; 
                            else
                                value = array[0];
                        
                            return value;
                        }
                        function ReadSignedInt32(array) {
                            var value = 0;
                            for (var i = 0; i < 2; i++) {
                                value = (value << 16) | array[i];
                            }
                            return value;
                        }
                        function GetU16(dataarray, index) {
                            var value = ReadUnsignedInt16(dataarray.slice(index, index+1));
                            return value;
                        }
                        
                        function GetU32(dataarray, index) {
                            var value = ReadUnsignedInt32(dataarray.slice(index, index+2));
                            return value;
                        }
                        
                        function GetI16(dataarray, index) {
                            var value = ReadSignedInt16(dataarray.slice(index, index+1));
                            return value;
                        }
                        
                        function GetI32(dataarray, index) {
                            var value = ReadSignedInt32(dataarray.slice(index, index+2));
                            return value;
                        }
                        
                        function GetString(dataarray, index, length) {
                            var shortarray = dataarray.slice(index, index+length);
                            var bytearray = [];
                            for(var i = 0; i < length; i++) {
                                bytearray.push(dataarray[index+i] >> 8);
                                bytearray.push(dataarray[index+i] & 0xff);
                            }       
                            var value =  String.fromCharCode.apply(null, bytearray);    
                            return value;
                        }
                        
                        function GetZeroTerminatedString(dataarray, index, length) {
                            var shortarray = dataarray.slice(index, index+length);
                            var bytearray = [];
                            for(var i = 0; i < length; i++) {
                                bytearray.push(dataarray[index+i] >> 8);
                                bytearray.push(dataarray[index+i] & 0xff);
                            }       
                            var value =  String.fromCharCode.apply(null, bytearray);    
                            var value2 = new String(value).trim();
                            return value2;
                        }
                        
                        // Funktion zum Herstellen einer Modbus-Verbindung
                        function ConnectModbus() {
                            console.log("Init connection to: " + modbusHost +":" + modbusPort);
                            // set requests parameters
                            client.setTimeout (10000);
                            // try to connect
                            client.connectTCP (modbusHost, { port: modbusPort })
                                .then(function()
                                {
                                    console.log("Connected, wait for reading...");
                                })
                                .catch(function(e)
                                {
                                    console.log(e);
                                });
                        }
                        
                        // Funktion zum Anlegen und Beschreiben eines Datenpunkts
                        function ForceSetState(objectname, value, options) {
                            if(!existsState("javascript.0." + objectname))      createState(objectname, value, options);
                            else                                                setState(objectname, value);
                        }  
                        // ---------------------------------------------------------------
                        // Functions to map registers into ioBreaker objects:
                        function ProcessPowerMeterStatus() {       
                            ForceSetState("Solarpower.Huawei.Meter.Status",                     GetU16(globalDataBuffer[powerMeterID], 37100),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Meter.VoltageL1",                  GetI32(globalDataBuffer[powerMeterID], 37101) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Meter.VoltageL2",                  GetI32(globalDataBuffer[powerMeterID], 37103) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Meter.VoltageL3",                  GetI32(globalDataBuffer[powerMeterID], 37105) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Meter.CurrentL1",                  GetI32(globalDataBuffer[powerMeterID], 37107) / 100,    {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Meter.CurrentL2",                  GetI32(globalDataBuffer[powerMeterID], 37109) / 100,    {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Meter.CurrentL3",                  GetI32(globalDataBuffer[powerMeterID], 37111) / 100,    {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Meter.ActivePower",                GetI32(globalDataBuffer[powerMeterID], 37113) / 1,      {name: "", unit: "W"});
                            ForceSetState("Solarpower.Huawei.Meter.ReactivePower",              GetI32(globalDataBuffer[powerMeterID], 37115) / 1,      {name: "", unit: "Var"});
                            ForceSetState("Solarpower.Huawei.Meter.PowerFactor",                GetI16(globalDataBuffer[powerMeterID], 37117) / 1000,   {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Meter.GridFrequency",              GetI16(globalDataBuffer[powerMeterID], 37118) / 100,    {name: "", unit: "Hz"});
                            ForceSetState("Solarpower.Huawei.Meter.PositiveActiveEnergy",       GetI32(globalDataBuffer[powerMeterID], 37119) / 100,    {name: "", unit: "kWh"});
                            ForceSetState("Solarpower.Huawei.Meter.ReverseActiveEnergy",        GetI32(globalDataBuffer[powerMeterID], 37121) / 100,    {name: "", unit: "kWh"});
                            ForceSetState("Solarpower.Huawei.Meter.AccumulatedReactivePower",   GetI32(globalDataBuffer[powerMeterID], 37123) / 100,    {name: "", unit: "kVarh"});
                            //ForceSetState("Solarpower.Huawei.Meter.MeterType",                  GetU16(globalDataBuffer[powerMeterID], 37125),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Meter.VoltageL1-L2",               GetI32(globalDataBuffer[powerMeterID], 37126) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Meter.VoltageL2-L3",               GetI32(globalDataBuffer[powerMeterID], 37128) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Meter.VoltageL3-L1",               GetI32(globalDataBuffer[powerMeterID], 37130) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Meter.ActivePowerL1",              GetI32(globalDataBuffer[powerMeterID], 37132) / 1,      {name: "", unit: "W"});
                            ForceSetState("Solarpower.Huawei.Meter.ActivePowerL2",              GetI32(globalDataBuffer[powerMeterID], 37134) / 1,      {name: "", unit: "W"});
                            ForceSetState("Solarpower.Huawei.Meter.ActivePowerL3",              GetI32(globalDataBuffer[powerMeterID], 37136) / 1,      {name: "", unit: "W"});
                            //ForceSetState("Solarpower.Huawei.Meter.MeterModel",                 GetU16(globalDataBuffer[powerMeterID], 37138),          {name: "", unit: ""});
                        }
                        
                        function ProcessInverterStatus(id) {
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".State1",                   GetU16(globalDataBuffer[id-1], 32000),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".State2",                   GetU16(globalDataBuffer[id-1], 32002),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".State3",                   GetU32(globalDataBuffer[id-1], 32003),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm1",                   GetU16(globalDataBuffer[id-1], 32008),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm2",                   GetU16(globalDataBuffer[id-1], 32009),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm3",                   GetU16(globalDataBuffer[id-1], 32010),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Voltage",         GetI16(globalDataBuffer[id-1], 32016) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Current",         GetI16(globalDataBuffer[id-1], 32017) / 100,    {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Voltage",         GetI16(globalDataBuffer[id-1], 32018) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Current",         GetI16(globalDataBuffer[id-1], 32019) / 100,    {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Voltage",         GetI16(globalDataBuffer[id-1], 32020) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Current",         GetI16(globalDataBuffer[id-1], 32021) / 100,    {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Voltage",         GetI16(globalDataBuffer[id-1], 32022) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Current",         GetI16(globalDataBuffer[id-1], 32023) / 100,    {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".InputPower",               GetI32(globalDataBuffer[id-1], 32064) / 1000,   {name: "", unit: "kW"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1-L2_Voltage",       GetU16(globalDataBuffer[id-1], 32066) / 10,     {name: "", unit: "V"});      
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2-L3_Voltage",       GetU16(globalDataBuffer[id-1], 32067) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3-L1_Voltage",       GetU16(globalDataBuffer[id-1], 32068) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Voltage",          GetU16(globalDataBuffer[id-1], 32069) / 10,     {name: "", unit: "V"});                              
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Voltage",          GetU16(globalDataBuffer[id-1], 32070) / 10,     {name: "", unit: "V"});                                                  
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Voltage",          GetU16(globalDataBuffer[id-1], 32071) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Current",          GetI32(globalDataBuffer[id-1], 32072) / 1000,   {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Current",          GetI32(globalDataBuffer[id-1], 32074) / 1000,   {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Current",          GetI32(globalDataBuffer[id-1], 32076) / 1000,   {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".PeakActivePowerDay",       GetI32(globalDataBuffer[id-1], 32078) / 1000,   {name: "", unit: "kW"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".ActivePower",              GetI32(globalDataBuffer[id-1], 32080) / 1000,   {name: "", unit: "kW"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".ReactivePower",            GetI32(globalDataBuffer[id-1], 32082) / 1000,   {name: "", unit: "kVar"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".PowerFactor",              GetI16(globalDataBuffer[id-1], 32084) / 1000,   {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".GridFrequency",            GetU16(globalDataBuffer[id-1], 32085) / 100,    {name: "", unit: "Hz"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Efficiency",               GetU16(globalDataBuffer[id-1], 32086) / 100,    {name: "", unit: "%"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".InternalTemperature",      GetI16(globalDataBuffer[id-1], 32087) / 10,     {name: "", unit: "°C"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".InsulationResistance",     GetU16(globalDataBuffer[id-1], 32088) / 1000,   {name: "", unit: "MOhm"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".DeviceStatus",             GetU16(globalDataBuffer[id-1], 32089),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".FaultCode",                GetU16(globalDataBuffer[id-1], 32090),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".StartupTime",              String(new Date(GetU32(globalDataBuffer[id-1], 32091)*1000)),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".ShutdownTime",             String(new Date(GetU32(globalDataBuffer[id-1], 32093)*1000)),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".AccomulatedEnergyYield",   GetU32(globalDataBuffer[id-1], 32106),          {name: "", unit: "kWh"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".DailyEnergyYield",         GetU32(globalDataBuffer[id-1], 32114),          {name: "", unit: "kWh"});
                        }
                        
                        function ReadRegisterSpace(id, address, length) {
                            client.setID(modbusID[id-1]);
                            client.readHoldingRegisters(address, length, function(err, data) {
                                if (err) {
                                    console.warn("Error received reading address " + address + " from id: " + modbusID[id-1] + " with error: " + modbusErrorMessages[err.modbusCode]); 
                                }
                                else
                                {   
                                    console.debug("Read data from id/address " + modbusID[id-1] + "/" + address + "\nData is: " + data.data);
                                    for(var i = 0; i < length; i++)  {
                                        globalDataBuffer[id-1][address+i] = data.data[i];
                                    } 
                                }
                            });
                        }
                        
                        function ProcessData() {
                            //console.log("Processing new data...");
                            for(var i = 1; i <= modbusID.length; i++) {
                                //ProcessDeviceInfo(i);
                                ProcessInverterStatus(i);
                                //processBattery(i);
                                //processInverterPowerAdjustments(i);
                                //processOptimizers(i); 
                            }    
                            ProcessPowerMeterStatus();
                            //console.log("Processing done!");
                        }
                        
                        
                        // -------------------------------------------------------------------
                        // This is the main function triggering a  read via modbus-tcp every two seconds.
                        // Processing of data is triggered as soon as one complete set of registers is copied.
                        var triggerprocessing = 0; 
                        var currentinverter = 1;
                        
                        
                        setInterval(function() {
                                if (!client.isOpen){
                                    ConnectModbus();
                                }
                                if(triggerprocessing == 1) {
                                triggerprocessing = 0;
                                ProcessData();        
                                }      
                           
                            //console.log("Triggering read of inverter " + currentinverter + " at address " + registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0] + " with length " +  registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]);
                            ReadRegisterSpace(currentinverter, registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0], registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]); 
                            registerSpacesToReadContinuouslyPtr++;               
                            if(registerSpacesToReadContinuouslyPtr >= registerSpacesToReadContinuously.length) {
                                registerSpacesToReadContinuouslyPtr = 0;
                                currentinverter++
                                if(currentinverter > modbusID.length){
                                    currentinverter = 1;  
                                    triggerprocessing = 1;                    
                                }
                            }     
                        }, 3000);
                        
                        J Offline
                        J Offline
                        juggi1962
                        schrieb am zuletzt editiert von
                        #67

                        @alex-warkentin sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

                        @juggi1962 Poste mal die Logs, wenn der Fehler auftritt

                        Hier ist das Script, was ich für mich angepasst habe. Achtung! Ich habe die Batterie und andere für mich uninteressante Sachen rausgeschmissen und die Namen von Variablen und Funktionen angepasst. Für die Neuverbindung nach Verbindungsabbruch brauchst du die Zeilen 18 - 27 , 107-122 und 235 -237

                        // License: Beerware! Do what ever you like with this, but I'm not liable for anything that you do with it.
                        // If you like this code, feel free to buy me a beer ...
                        // Have fun with it! der Kachel
                        // @ts-ignore
                        var modbusRTU = require("modbus-serial");
                        var client = new modbusRTU();
                        
                        var modbusErrorMessages = [
                            "Unknown error",
                            "Illegal function (device does not support this read/write function)",
                            "Illegal data address (register not supported by device)",
                            "Illegal data value (value cannot be written to this register)",
                            "Slave device failure (device reports internal error)",
                            "Acknowledge (requested data will be available later)",
                            "Slave device busy (retry request again later)"
                        ];
                        
                        // Enter your inverter modbus IP and port here:
                        const modbusHost = "000.000.000.000";
                        const modbusPort = 502;
                        // Enter the Modbus-IDs of your Sun2000 inverters here:
                        const modbusID = [1];
                        // On which Modbus-ID can we reach the power meter? (via Sun2000!)
                        const powerMeterID = 0;
                        
                        // Connect to modbus client
                        ConnectModbus();
                        
                        // These register spaces need to be read:
                        const registerSpacesToReadContinuously = [[37100, 114], [32000, 116]];
                        var registerSpacesToReadContinuouslyPtr = 0;
                        
                        var globalDataBuffer = new Array(1);
                        globalDataBuffer[0] = new Array(50000); // not optimized....
                        
                        // ---------------------------------------------------------------
                        // Some helper functions:
                        function ReadUnsignedInt16(array) {
                            var value = array[0];    
                            return value;
                        }
                        
                        function ReadUnsignedInt32(array) {
                            var value = array[0] * 256 * 256 + array[1];    
                            return value;
                        }
                        
                        function ReadSignedInt16(array) {
                            var value = 0;
                            if (array[0] > 32767)
                                value = array[0] - 65535; 
                            else
                                value = array[0];
                        
                            return value;
                        }
                        function ReadSignedInt32(array) {
                            var value = 0;
                            for (var i = 0; i < 2; i++) {
                                value = (value << 16) | array[i];
                            }
                            return value;
                        }
                        function GetU16(dataarray, index) {
                            var value = ReadUnsignedInt16(dataarray.slice(index, index+1));
                            return value;
                        }
                        
                        function GetU32(dataarray, index) {
                            var value = ReadUnsignedInt32(dataarray.slice(index, index+2));
                            return value;
                        }
                        
                        function GetI16(dataarray, index) {
                            var value = ReadSignedInt16(dataarray.slice(index, index+1));
                            return value;
                        }
                        
                        function GetI32(dataarray, index) {
                            var value = ReadSignedInt32(dataarray.slice(index, index+2));
                            return value;
                        }
                        
                        function GetString(dataarray, index, length) {
                            var shortarray = dataarray.slice(index, index+length);
                            var bytearray = [];
                            for(var i = 0; i < length; i++) {
                                bytearray.push(dataarray[index+i] >> 8);
                                bytearray.push(dataarray[index+i] & 0xff);
                            }       
                            var value =  String.fromCharCode.apply(null, bytearray);    
                            return value;
                        }
                        
                        function GetZeroTerminatedString(dataarray, index, length) {
                            var shortarray = dataarray.slice(index, index+length);
                            var bytearray = [];
                            for(var i = 0; i < length; i++) {
                                bytearray.push(dataarray[index+i] >> 8);
                                bytearray.push(dataarray[index+i] & 0xff);
                            }       
                            var value =  String.fromCharCode.apply(null, bytearray);    
                            var value2 = new String(value).trim();
                            return value2;
                        }
                        
                        // Funktion zum Herstellen einer Modbus-Verbindung
                        function ConnectModbus() {
                            console.log("Init connection to: " + modbusHost +":" + modbusPort);
                            // set requests parameters
                            client.setTimeout (10000);
                            // try to connect
                            client.connectTCP (modbusHost, { port: modbusPort })
                                .then(function()
                                {
                                    console.log("Connected, wait for reading...");
                                })
                                .catch(function(e)
                                {
                                    console.log(e);
                                });
                        }
                        
                        // Funktion zum Anlegen und Beschreiben eines Datenpunkts
                        function ForceSetState(objectname, value, options) {
                            if(!existsState("javascript.0." + objectname))      createState(objectname, value, options);
                            else                                                setState(objectname, value);
                        }  
                        // ---------------------------------------------------------------
                        // Functions to map registers into ioBreaker objects:
                        function ProcessPowerMeterStatus() {       
                            ForceSetState("Solarpower.Huawei.Meter.Status",                     GetU16(globalDataBuffer[powerMeterID], 37100),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Meter.VoltageL1",                  GetI32(globalDataBuffer[powerMeterID], 37101) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Meter.VoltageL2",                  GetI32(globalDataBuffer[powerMeterID], 37103) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Meter.VoltageL3",                  GetI32(globalDataBuffer[powerMeterID], 37105) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Meter.CurrentL1",                  GetI32(globalDataBuffer[powerMeterID], 37107) / 100,    {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Meter.CurrentL2",                  GetI32(globalDataBuffer[powerMeterID], 37109) / 100,    {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Meter.CurrentL3",                  GetI32(globalDataBuffer[powerMeterID], 37111) / 100,    {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Meter.ActivePower",                GetI32(globalDataBuffer[powerMeterID], 37113) / 1,      {name: "", unit: "W"});
                            ForceSetState("Solarpower.Huawei.Meter.ReactivePower",              GetI32(globalDataBuffer[powerMeterID], 37115) / 1,      {name: "", unit: "Var"});
                            ForceSetState("Solarpower.Huawei.Meter.PowerFactor",                GetI16(globalDataBuffer[powerMeterID], 37117) / 1000,   {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Meter.GridFrequency",              GetI16(globalDataBuffer[powerMeterID], 37118) / 100,    {name: "", unit: "Hz"});
                            ForceSetState("Solarpower.Huawei.Meter.PositiveActiveEnergy",       GetI32(globalDataBuffer[powerMeterID], 37119) / 100,    {name: "", unit: "kWh"});
                            ForceSetState("Solarpower.Huawei.Meter.ReverseActiveEnergy",        GetI32(globalDataBuffer[powerMeterID], 37121) / 100,    {name: "", unit: "kWh"});
                            ForceSetState("Solarpower.Huawei.Meter.AccumulatedReactivePower",   GetI32(globalDataBuffer[powerMeterID], 37123) / 100,    {name: "", unit: "kVarh"});
                            //ForceSetState("Solarpower.Huawei.Meter.MeterType",                  GetU16(globalDataBuffer[powerMeterID], 37125),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Meter.VoltageL1-L2",               GetI32(globalDataBuffer[powerMeterID], 37126) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Meter.VoltageL2-L3",               GetI32(globalDataBuffer[powerMeterID], 37128) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Meter.VoltageL3-L1",               GetI32(globalDataBuffer[powerMeterID], 37130) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Meter.ActivePowerL1",              GetI32(globalDataBuffer[powerMeterID], 37132) / 1,      {name: "", unit: "W"});
                            ForceSetState("Solarpower.Huawei.Meter.ActivePowerL2",              GetI32(globalDataBuffer[powerMeterID], 37134) / 1,      {name: "", unit: "W"});
                            ForceSetState("Solarpower.Huawei.Meter.ActivePowerL3",              GetI32(globalDataBuffer[powerMeterID], 37136) / 1,      {name: "", unit: "W"});
                            //ForceSetState("Solarpower.Huawei.Meter.MeterModel",                 GetU16(globalDataBuffer[powerMeterID], 37138),          {name: "", unit: ""});
                        }
                        
                        function ProcessInverterStatus(id) {
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".State1",                   GetU16(globalDataBuffer[id-1], 32000),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".State2",                   GetU16(globalDataBuffer[id-1], 32002),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".State3",                   GetU32(globalDataBuffer[id-1], 32003),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm1",                   GetU16(globalDataBuffer[id-1], 32008),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm2",                   GetU16(globalDataBuffer[id-1], 32009),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm3",                   GetU16(globalDataBuffer[id-1], 32010),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Voltage",         GetI16(globalDataBuffer[id-1], 32016) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Current",         GetI16(globalDataBuffer[id-1], 32017) / 100,    {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Voltage",         GetI16(globalDataBuffer[id-1], 32018) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Current",         GetI16(globalDataBuffer[id-1], 32019) / 100,    {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Voltage",         GetI16(globalDataBuffer[id-1], 32020) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Current",         GetI16(globalDataBuffer[id-1], 32021) / 100,    {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Voltage",         GetI16(globalDataBuffer[id-1], 32022) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Current",         GetI16(globalDataBuffer[id-1], 32023) / 100,    {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".InputPower",               GetI32(globalDataBuffer[id-1], 32064) / 1000,   {name: "", unit: "kW"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1-L2_Voltage",       GetU16(globalDataBuffer[id-1], 32066) / 10,     {name: "", unit: "V"});      
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2-L3_Voltage",       GetU16(globalDataBuffer[id-1], 32067) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3-L1_Voltage",       GetU16(globalDataBuffer[id-1], 32068) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Voltage",          GetU16(globalDataBuffer[id-1], 32069) / 10,     {name: "", unit: "V"});                              
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Voltage",          GetU16(globalDataBuffer[id-1], 32070) / 10,     {name: "", unit: "V"});                                                  
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Voltage",          GetU16(globalDataBuffer[id-1], 32071) / 10,     {name: "", unit: "V"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Current",          GetI32(globalDataBuffer[id-1], 32072) / 1000,   {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Current",          GetI32(globalDataBuffer[id-1], 32074) / 1000,   {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Current",          GetI32(globalDataBuffer[id-1], 32076) / 1000,   {name: "", unit: "A"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".PeakActivePowerDay",       GetI32(globalDataBuffer[id-1], 32078) / 1000,   {name: "", unit: "kW"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".ActivePower",              GetI32(globalDataBuffer[id-1], 32080) / 1000,   {name: "", unit: "kW"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".ReactivePower",            GetI32(globalDataBuffer[id-1], 32082) / 1000,   {name: "", unit: "kVar"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".PowerFactor",              GetI16(globalDataBuffer[id-1], 32084) / 1000,   {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".GridFrequency",            GetU16(globalDataBuffer[id-1], 32085) / 100,    {name: "", unit: "Hz"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".Efficiency",               GetU16(globalDataBuffer[id-1], 32086) / 100,    {name: "", unit: "%"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".InternalTemperature",      GetI16(globalDataBuffer[id-1], 32087) / 10,     {name: "", unit: "°C"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".InsulationResistance",     GetU16(globalDataBuffer[id-1], 32088) / 1000,   {name: "", unit: "MOhm"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".DeviceStatus",             GetU16(globalDataBuffer[id-1], 32089),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".FaultCode",                GetU16(globalDataBuffer[id-1], 32090),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".StartupTime",              String(new Date(GetU32(globalDataBuffer[id-1], 32091)*1000)),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".ShutdownTime",             String(new Date(GetU32(globalDataBuffer[id-1], 32093)*1000)),          {name: "", unit: ""});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".AccomulatedEnergyYield",   GetU32(globalDataBuffer[id-1], 32106),          {name: "", unit: "kWh"});
                            ForceSetState("Solarpower.Huawei.Inverter." + id + ".DailyEnergyYield",         GetU32(globalDataBuffer[id-1], 32114),          {name: "", unit: "kWh"});
                        }
                        
                        function ReadRegisterSpace(id, address, length) {
                            client.setID(modbusID[id-1]);
                            client.readHoldingRegisters(address, length, function(err, data) {
                                if (err) {
                                    console.warn("Error received reading address " + address + " from id: " + modbusID[id-1] + " with error: " + modbusErrorMessages[err.modbusCode]); 
                                }
                                else
                                {   
                                    console.debug("Read data from id/address " + modbusID[id-1] + "/" + address + "\nData is: " + data.data);
                                    for(var i = 0; i < length; i++)  {
                                        globalDataBuffer[id-1][address+i] = data.data[i];
                                    } 
                                }
                            });
                        }
                        
                        function ProcessData() {
                            //console.log("Processing new data...");
                            for(var i = 1; i <= modbusID.length; i++) {
                                //ProcessDeviceInfo(i);
                                ProcessInverterStatus(i);
                                //processBattery(i);
                                //processInverterPowerAdjustments(i);
                                //processOptimizers(i); 
                            }    
                            ProcessPowerMeterStatus();
                            //console.log("Processing done!");
                        }
                        
                        
                        // -------------------------------------------------------------------
                        // This is the main function triggering a  read via modbus-tcp every two seconds.
                        // Processing of data is triggered as soon as one complete set of registers is copied.
                        var triggerprocessing = 0; 
                        var currentinverter = 1;
                        
                        
                        setInterval(function() {
                                if (!client.isOpen){
                                    ConnectModbus();
                                }
                                if(triggerprocessing == 1) {
                                triggerprocessing = 0;
                                ProcessData();        
                                }      
                           
                            //console.log("Triggering read of inverter " + currentinverter + " at address " + registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0] + " with length " +  registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]);
                            ReadRegisterSpace(currentinverter, registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0], registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]); 
                            registerSpacesToReadContinuouslyPtr++;               
                            if(registerSpacesToReadContinuouslyPtr >= registerSpacesToReadContinuously.length) {
                                registerSpacesToReadContinuouslyPtr = 0;
                                currentinverter++
                                if(currentinverter > modbusID.length){
                                    currentinverter = 1;  
                                    triggerprocessing = 1;                    
                                }
                            }     
                        }, 3000);
                        

                        Super Danke.
                        Hab eh keine Batterie. Werde es gleich testen.
                        Gruß Jürgen

                        J 1 Antwort Letzte Antwort
                        0
                        • J juggi1962

                          @alex-warkentin sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

                          @juggi1962 Poste mal die Logs, wenn der Fehler auftritt

                          Hier ist das Script, was ich für mich angepasst habe. Achtung! Ich habe die Batterie und andere für mich uninteressante Sachen rausgeschmissen und die Namen von Variablen und Funktionen angepasst. Für die Neuverbindung nach Verbindungsabbruch brauchst du die Zeilen 18 - 27 , 107-122 und 235 -237

                          // License: Beerware! Do what ever you like with this, but I'm not liable for anything that you do with it.
                          // If you like this code, feel free to buy me a beer ...
                          // Have fun with it! der Kachel
                          // @ts-ignore
                          var modbusRTU = require("modbus-serial");
                          var client = new modbusRTU();
                          
                          var modbusErrorMessages = [
                              "Unknown error",
                              "Illegal function (device does not support this read/write function)",
                              "Illegal data address (register not supported by device)",
                              "Illegal data value (value cannot be written to this register)",
                              "Slave device failure (device reports internal error)",
                              "Acknowledge (requested data will be available later)",
                              "Slave device busy (retry request again later)"
                          ];
                          
                          // Enter your inverter modbus IP and port here:
                          const modbusHost = "000.000.000.000";
                          const modbusPort = 502;
                          // Enter the Modbus-IDs of your Sun2000 inverters here:
                          const modbusID = [1];
                          // On which Modbus-ID can we reach the power meter? (via Sun2000!)
                          const powerMeterID = 0;
                          
                          // Connect to modbus client
                          ConnectModbus();
                          
                          // These register spaces need to be read:
                          const registerSpacesToReadContinuously = [[37100, 114], [32000, 116]];
                          var registerSpacesToReadContinuouslyPtr = 0;
                          
                          var globalDataBuffer = new Array(1);
                          globalDataBuffer[0] = new Array(50000); // not optimized....
                          
                          // ---------------------------------------------------------------
                          // Some helper functions:
                          function ReadUnsignedInt16(array) {
                              var value = array[0];    
                              return value;
                          }
                          
                          function ReadUnsignedInt32(array) {
                              var value = array[0] * 256 * 256 + array[1];    
                              return value;
                          }
                          
                          function ReadSignedInt16(array) {
                              var value = 0;
                              if (array[0] > 32767)
                                  value = array[0] - 65535; 
                              else
                                  value = array[0];
                          
                              return value;
                          }
                          function ReadSignedInt32(array) {
                              var value = 0;
                              for (var i = 0; i < 2; i++) {
                                  value = (value << 16) | array[i];
                              }
                              return value;
                          }
                          function GetU16(dataarray, index) {
                              var value = ReadUnsignedInt16(dataarray.slice(index, index+1));
                              return value;
                          }
                          
                          function GetU32(dataarray, index) {
                              var value = ReadUnsignedInt32(dataarray.slice(index, index+2));
                              return value;
                          }
                          
                          function GetI16(dataarray, index) {
                              var value = ReadSignedInt16(dataarray.slice(index, index+1));
                              return value;
                          }
                          
                          function GetI32(dataarray, index) {
                              var value = ReadSignedInt32(dataarray.slice(index, index+2));
                              return value;
                          }
                          
                          function GetString(dataarray, index, length) {
                              var shortarray = dataarray.slice(index, index+length);
                              var bytearray = [];
                              for(var i = 0; i < length; i++) {
                                  bytearray.push(dataarray[index+i] >> 8);
                                  bytearray.push(dataarray[index+i] & 0xff);
                              }       
                              var value =  String.fromCharCode.apply(null, bytearray);    
                              return value;
                          }
                          
                          function GetZeroTerminatedString(dataarray, index, length) {
                              var shortarray = dataarray.slice(index, index+length);
                              var bytearray = [];
                              for(var i = 0; i < length; i++) {
                                  bytearray.push(dataarray[index+i] >> 8);
                                  bytearray.push(dataarray[index+i] & 0xff);
                              }       
                              var value =  String.fromCharCode.apply(null, bytearray);    
                              var value2 = new String(value).trim();
                              return value2;
                          }
                          
                          // Funktion zum Herstellen einer Modbus-Verbindung
                          function ConnectModbus() {
                              console.log("Init connection to: " + modbusHost +":" + modbusPort);
                              // set requests parameters
                              client.setTimeout (10000);
                              // try to connect
                              client.connectTCP (modbusHost, { port: modbusPort })
                                  .then(function()
                                  {
                                      console.log("Connected, wait for reading...");
                                  })
                                  .catch(function(e)
                                  {
                                      console.log(e);
                                  });
                          }
                          
                          // Funktion zum Anlegen und Beschreiben eines Datenpunkts
                          function ForceSetState(objectname, value, options) {
                              if(!existsState("javascript.0." + objectname))      createState(objectname, value, options);
                              else                                                setState(objectname, value);
                          }  
                          // ---------------------------------------------------------------
                          // Functions to map registers into ioBreaker objects:
                          function ProcessPowerMeterStatus() {       
                              ForceSetState("Solarpower.Huawei.Meter.Status",                     GetU16(globalDataBuffer[powerMeterID], 37100),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Meter.VoltageL1",                  GetI32(globalDataBuffer[powerMeterID], 37101) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Meter.VoltageL2",                  GetI32(globalDataBuffer[powerMeterID], 37103) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Meter.VoltageL3",                  GetI32(globalDataBuffer[powerMeterID], 37105) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Meter.CurrentL1",                  GetI32(globalDataBuffer[powerMeterID], 37107) / 100,    {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Meter.CurrentL2",                  GetI32(globalDataBuffer[powerMeterID], 37109) / 100,    {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Meter.CurrentL3",                  GetI32(globalDataBuffer[powerMeterID], 37111) / 100,    {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Meter.ActivePower",                GetI32(globalDataBuffer[powerMeterID], 37113) / 1,      {name: "", unit: "W"});
                              ForceSetState("Solarpower.Huawei.Meter.ReactivePower",              GetI32(globalDataBuffer[powerMeterID], 37115) / 1,      {name: "", unit: "Var"});
                              ForceSetState("Solarpower.Huawei.Meter.PowerFactor",                GetI16(globalDataBuffer[powerMeterID], 37117) / 1000,   {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Meter.GridFrequency",              GetI16(globalDataBuffer[powerMeterID], 37118) / 100,    {name: "", unit: "Hz"});
                              ForceSetState("Solarpower.Huawei.Meter.PositiveActiveEnergy",       GetI32(globalDataBuffer[powerMeterID], 37119) / 100,    {name: "", unit: "kWh"});
                              ForceSetState("Solarpower.Huawei.Meter.ReverseActiveEnergy",        GetI32(globalDataBuffer[powerMeterID], 37121) / 100,    {name: "", unit: "kWh"});
                              ForceSetState("Solarpower.Huawei.Meter.AccumulatedReactivePower",   GetI32(globalDataBuffer[powerMeterID], 37123) / 100,    {name: "", unit: "kVarh"});
                              //ForceSetState("Solarpower.Huawei.Meter.MeterType",                  GetU16(globalDataBuffer[powerMeterID], 37125),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Meter.VoltageL1-L2",               GetI32(globalDataBuffer[powerMeterID], 37126) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Meter.VoltageL2-L3",               GetI32(globalDataBuffer[powerMeterID], 37128) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Meter.VoltageL3-L1",               GetI32(globalDataBuffer[powerMeterID], 37130) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Meter.ActivePowerL1",              GetI32(globalDataBuffer[powerMeterID], 37132) / 1,      {name: "", unit: "W"});
                              ForceSetState("Solarpower.Huawei.Meter.ActivePowerL2",              GetI32(globalDataBuffer[powerMeterID], 37134) / 1,      {name: "", unit: "W"});
                              ForceSetState("Solarpower.Huawei.Meter.ActivePowerL3",              GetI32(globalDataBuffer[powerMeterID], 37136) / 1,      {name: "", unit: "W"});
                              //ForceSetState("Solarpower.Huawei.Meter.MeterModel",                 GetU16(globalDataBuffer[powerMeterID], 37138),          {name: "", unit: ""});
                          }
                          
                          function ProcessInverterStatus(id) {
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".State1",                   GetU16(globalDataBuffer[id-1], 32000),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".State2",                   GetU16(globalDataBuffer[id-1], 32002),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".State3",                   GetU32(globalDataBuffer[id-1], 32003),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm1",                   GetU16(globalDataBuffer[id-1], 32008),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm2",                   GetU16(globalDataBuffer[id-1], 32009),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm3",                   GetU16(globalDataBuffer[id-1], 32010),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Voltage",         GetI16(globalDataBuffer[id-1], 32016) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Current",         GetI16(globalDataBuffer[id-1], 32017) / 100,    {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Voltage",         GetI16(globalDataBuffer[id-1], 32018) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Current",         GetI16(globalDataBuffer[id-1], 32019) / 100,    {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Voltage",         GetI16(globalDataBuffer[id-1], 32020) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Current",         GetI16(globalDataBuffer[id-1], 32021) / 100,    {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Voltage",         GetI16(globalDataBuffer[id-1], 32022) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Current",         GetI16(globalDataBuffer[id-1], 32023) / 100,    {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".InputPower",               GetI32(globalDataBuffer[id-1], 32064) / 1000,   {name: "", unit: "kW"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1-L2_Voltage",       GetU16(globalDataBuffer[id-1], 32066) / 10,     {name: "", unit: "V"});      
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2-L3_Voltage",       GetU16(globalDataBuffer[id-1], 32067) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3-L1_Voltage",       GetU16(globalDataBuffer[id-1], 32068) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Voltage",          GetU16(globalDataBuffer[id-1], 32069) / 10,     {name: "", unit: "V"});                              
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Voltage",          GetU16(globalDataBuffer[id-1], 32070) / 10,     {name: "", unit: "V"});                                                  
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Voltage",          GetU16(globalDataBuffer[id-1], 32071) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Current",          GetI32(globalDataBuffer[id-1], 32072) / 1000,   {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Current",          GetI32(globalDataBuffer[id-1], 32074) / 1000,   {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Current",          GetI32(globalDataBuffer[id-1], 32076) / 1000,   {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".PeakActivePowerDay",       GetI32(globalDataBuffer[id-1], 32078) / 1000,   {name: "", unit: "kW"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".ActivePower",              GetI32(globalDataBuffer[id-1], 32080) / 1000,   {name: "", unit: "kW"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".ReactivePower",            GetI32(globalDataBuffer[id-1], 32082) / 1000,   {name: "", unit: "kVar"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".PowerFactor",              GetI16(globalDataBuffer[id-1], 32084) / 1000,   {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".GridFrequency",            GetU16(globalDataBuffer[id-1], 32085) / 100,    {name: "", unit: "Hz"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Efficiency",               GetU16(globalDataBuffer[id-1], 32086) / 100,    {name: "", unit: "%"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".InternalTemperature",      GetI16(globalDataBuffer[id-1], 32087) / 10,     {name: "", unit: "°C"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".InsulationResistance",     GetU16(globalDataBuffer[id-1], 32088) / 1000,   {name: "", unit: "MOhm"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".DeviceStatus",             GetU16(globalDataBuffer[id-1], 32089),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".FaultCode",                GetU16(globalDataBuffer[id-1], 32090),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".StartupTime",              String(new Date(GetU32(globalDataBuffer[id-1], 32091)*1000)),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".ShutdownTime",             String(new Date(GetU32(globalDataBuffer[id-1], 32093)*1000)),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".AccomulatedEnergyYield",   GetU32(globalDataBuffer[id-1], 32106),          {name: "", unit: "kWh"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".DailyEnergyYield",         GetU32(globalDataBuffer[id-1], 32114),          {name: "", unit: "kWh"});
                          }
                          
                          function ReadRegisterSpace(id, address, length) {
                              client.setID(modbusID[id-1]);
                              client.readHoldingRegisters(address, length, function(err, data) {
                                  if (err) {
                                      console.warn("Error received reading address " + address + " from id: " + modbusID[id-1] + " with error: " + modbusErrorMessages[err.modbusCode]); 
                                  }
                                  else
                                  {   
                                      console.debug("Read data from id/address " + modbusID[id-1] + "/" + address + "\nData is: " + data.data);
                                      for(var i = 0; i < length; i++)  {
                                          globalDataBuffer[id-1][address+i] = data.data[i];
                                      } 
                                  }
                              });
                          }
                          
                          function ProcessData() {
                              //console.log("Processing new data...");
                              for(var i = 1; i <= modbusID.length; i++) {
                                  //ProcessDeviceInfo(i);
                                  ProcessInverterStatus(i);
                                  //processBattery(i);
                                  //processInverterPowerAdjustments(i);
                                  //processOptimizers(i); 
                              }    
                              ProcessPowerMeterStatus();
                              //console.log("Processing done!");
                          }
                          
                          
                          // -------------------------------------------------------------------
                          // This is the main function triggering a  read via modbus-tcp every two seconds.
                          // Processing of data is triggered as soon as one complete set of registers is copied.
                          var triggerprocessing = 0; 
                          var currentinverter = 1;
                          
                          
                          setInterval(function() {
                                  if (!client.isOpen){
                                      ConnectModbus();
                                  }
                                  if(triggerprocessing == 1) {
                                  triggerprocessing = 0;
                                  ProcessData();        
                                  }      
                             
                              //console.log("Triggering read of inverter " + currentinverter + " at address " + registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0] + " with length " +  registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]);
                              ReadRegisterSpace(currentinverter, registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0], registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]); 
                              registerSpacesToReadContinuouslyPtr++;               
                              if(registerSpacesToReadContinuouslyPtr >= registerSpacesToReadContinuously.length) {
                                  registerSpacesToReadContinuouslyPtr = 0;
                                  currentinverter++
                                  if(currentinverter > modbusID.length){
                                      currentinverter = 1;  
                                      triggerprocessing = 1;                    
                                  }
                              }     
                          }, 3000);
                          

                          Super Danke.
                          Hab eh keine Batterie. Werde es gleich testen.
                          Gruß Jürgen

                          J Offline
                          J Offline
                          juggi1962
                          schrieb am zuletzt editiert von
                          #68

                          @juggi1962 sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

                          @alex-warkentin sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

                          @juggi1962 Poste mal die Logs, wenn der Fehler auftritt

                          Hier ist das Script, was ich für mich angepasst habe. Achtung! Ich habe die Batterie und andere für mich uninteressante Sachen rausgeschmissen und die Namen von Variablen und Funktionen angepasst. Für die Neuverbindung nach Verbindungsabbruch brauchst du die Zeilen 18 - 27 , 107-122 und 235 -237

                          // License: Beerware! Do what ever you like with this, but I'm not liable for anything that you do with it.
                          // If you like this code, feel free to buy me a beer ...
                          // Have fun with it! der Kachel
                          // @ts-ignore
                          var modbusRTU = require("modbus-serial");
                          var client = new modbusRTU();
                          
                          var modbusErrorMessages = [
                              "Unknown error",
                              "Illegal function (device does not support this read/write function)",
                              "Illegal data address (register not supported by device)",
                              "Illegal data value (value cannot be written to this register)",
                              "Slave device failure (device reports internal error)",
                              "Acknowledge (requested data will be available later)",
                              "Slave device busy (retry request again later)"
                          ];
                          
                          // Enter your inverter modbus IP and port here:
                          const modbusHost = "000.000.000.000";
                          const modbusPort = 502;
                          // Enter the Modbus-IDs of your Sun2000 inverters here:
                          const modbusID = [1];
                          // On which Modbus-ID can we reach the power meter? (via Sun2000!)
                          const powerMeterID = 0;
                          
                          // Connect to modbus client
                          ConnectModbus();
                          
                          // These register spaces need to be read:
                          const registerSpacesToReadContinuously = [[37100, 114], [32000, 116]];
                          var registerSpacesToReadContinuouslyPtr = 0;
                          
                          var globalDataBuffer = new Array(1);
                          globalDataBuffer[0] = new Array(50000); // not optimized....
                          
                          // ---------------------------------------------------------------
                          // Some helper functions:
                          function ReadUnsignedInt16(array) {
                              var value = array[0];    
                              return value;
                          }
                          
                          function ReadUnsignedInt32(array) {
                              var value = array[0] * 256 * 256 + array[1];    
                              return value;
                          }
                          
                          function ReadSignedInt16(array) {
                              var value = 0;
                              if (array[0] > 32767)
                                  value = array[0] - 65535; 
                              else
                                  value = array[0];
                          
                              return value;
                          }
                          function ReadSignedInt32(array) {
                              var value = 0;
                              for (var i = 0; i < 2; i++) {
                                  value = (value << 16) | array[i];
                              }
                              return value;
                          }
                          function GetU16(dataarray, index) {
                              var value = ReadUnsignedInt16(dataarray.slice(index, index+1));
                              return value;
                          }
                          
                          function GetU32(dataarray, index) {
                              var value = ReadUnsignedInt32(dataarray.slice(index, index+2));
                              return value;
                          }
                          
                          function GetI16(dataarray, index) {
                              var value = ReadSignedInt16(dataarray.slice(index, index+1));
                              return value;
                          }
                          
                          function GetI32(dataarray, index) {
                              var value = ReadSignedInt32(dataarray.slice(index, index+2));
                              return value;
                          }
                          
                          function GetString(dataarray, index, length) {
                              var shortarray = dataarray.slice(index, index+length);
                              var bytearray = [];
                              for(var i = 0; i < length; i++) {
                                  bytearray.push(dataarray[index+i] >> 8);
                                  bytearray.push(dataarray[index+i] & 0xff);
                              }       
                              var value =  String.fromCharCode.apply(null, bytearray);    
                              return value;
                          }
                          
                          function GetZeroTerminatedString(dataarray, index, length) {
                              var shortarray = dataarray.slice(index, index+length);
                              var bytearray = [];
                              for(var i = 0; i < length; i++) {
                                  bytearray.push(dataarray[index+i] >> 8);
                                  bytearray.push(dataarray[index+i] & 0xff);
                              }       
                              var value =  String.fromCharCode.apply(null, bytearray);    
                              var value2 = new String(value).trim();
                              return value2;
                          }
                          
                          // Funktion zum Herstellen einer Modbus-Verbindung
                          function ConnectModbus() {
                              console.log("Init connection to: " + modbusHost +":" + modbusPort);
                              // set requests parameters
                              client.setTimeout (10000);
                              // try to connect
                              client.connectTCP (modbusHost, { port: modbusPort })
                                  .then(function()
                                  {
                                      console.log("Connected, wait for reading...");
                                  })
                                  .catch(function(e)
                                  {
                                      console.log(e);
                                  });
                          }
                          
                          // Funktion zum Anlegen und Beschreiben eines Datenpunkts
                          function ForceSetState(objectname, value, options) {
                              if(!existsState("javascript.0." + objectname))      createState(objectname, value, options);
                              else                                                setState(objectname, value);
                          }  
                          // ---------------------------------------------------------------
                          // Functions to map registers into ioBreaker objects:
                          function ProcessPowerMeterStatus() {       
                              ForceSetState("Solarpower.Huawei.Meter.Status",                     GetU16(globalDataBuffer[powerMeterID], 37100),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Meter.VoltageL1",                  GetI32(globalDataBuffer[powerMeterID], 37101) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Meter.VoltageL2",                  GetI32(globalDataBuffer[powerMeterID], 37103) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Meter.VoltageL3",                  GetI32(globalDataBuffer[powerMeterID], 37105) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Meter.CurrentL1",                  GetI32(globalDataBuffer[powerMeterID], 37107) / 100,    {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Meter.CurrentL2",                  GetI32(globalDataBuffer[powerMeterID], 37109) / 100,    {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Meter.CurrentL3",                  GetI32(globalDataBuffer[powerMeterID], 37111) / 100,    {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Meter.ActivePower",                GetI32(globalDataBuffer[powerMeterID], 37113) / 1,      {name: "", unit: "W"});
                              ForceSetState("Solarpower.Huawei.Meter.ReactivePower",              GetI32(globalDataBuffer[powerMeterID], 37115) / 1,      {name: "", unit: "Var"});
                              ForceSetState("Solarpower.Huawei.Meter.PowerFactor",                GetI16(globalDataBuffer[powerMeterID], 37117) / 1000,   {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Meter.GridFrequency",              GetI16(globalDataBuffer[powerMeterID], 37118) / 100,    {name: "", unit: "Hz"});
                              ForceSetState("Solarpower.Huawei.Meter.PositiveActiveEnergy",       GetI32(globalDataBuffer[powerMeterID], 37119) / 100,    {name: "", unit: "kWh"});
                              ForceSetState("Solarpower.Huawei.Meter.ReverseActiveEnergy",        GetI32(globalDataBuffer[powerMeterID], 37121) / 100,    {name: "", unit: "kWh"});
                              ForceSetState("Solarpower.Huawei.Meter.AccumulatedReactivePower",   GetI32(globalDataBuffer[powerMeterID], 37123) / 100,    {name: "", unit: "kVarh"});
                              //ForceSetState("Solarpower.Huawei.Meter.MeterType",                  GetU16(globalDataBuffer[powerMeterID], 37125),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Meter.VoltageL1-L2",               GetI32(globalDataBuffer[powerMeterID], 37126) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Meter.VoltageL2-L3",               GetI32(globalDataBuffer[powerMeterID], 37128) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Meter.VoltageL3-L1",               GetI32(globalDataBuffer[powerMeterID], 37130) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Meter.ActivePowerL1",              GetI32(globalDataBuffer[powerMeterID], 37132) / 1,      {name: "", unit: "W"});
                              ForceSetState("Solarpower.Huawei.Meter.ActivePowerL2",              GetI32(globalDataBuffer[powerMeterID], 37134) / 1,      {name: "", unit: "W"});
                              ForceSetState("Solarpower.Huawei.Meter.ActivePowerL3",              GetI32(globalDataBuffer[powerMeterID], 37136) / 1,      {name: "", unit: "W"});
                              //ForceSetState("Solarpower.Huawei.Meter.MeterModel",                 GetU16(globalDataBuffer[powerMeterID], 37138),          {name: "", unit: ""});
                          }
                          
                          function ProcessInverterStatus(id) {
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".State1",                   GetU16(globalDataBuffer[id-1], 32000),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".State2",                   GetU16(globalDataBuffer[id-1], 32002),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".State3",                   GetU32(globalDataBuffer[id-1], 32003),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm1",                   GetU16(globalDataBuffer[id-1], 32008),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm2",                   GetU16(globalDataBuffer[id-1], 32009),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm3",                   GetU16(globalDataBuffer[id-1], 32010),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Voltage",         GetI16(globalDataBuffer[id-1], 32016) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Current",         GetI16(globalDataBuffer[id-1], 32017) / 100,    {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Voltage",         GetI16(globalDataBuffer[id-1], 32018) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Current",         GetI16(globalDataBuffer[id-1], 32019) / 100,    {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Voltage",         GetI16(globalDataBuffer[id-1], 32020) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Current",         GetI16(globalDataBuffer[id-1], 32021) / 100,    {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Voltage",         GetI16(globalDataBuffer[id-1], 32022) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Current",         GetI16(globalDataBuffer[id-1], 32023) / 100,    {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".InputPower",               GetI32(globalDataBuffer[id-1], 32064) / 1000,   {name: "", unit: "kW"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1-L2_Voltage",       GetU16(globalDataBuffer[id-1], 32066) / 10,     {name: "", unit: "V"});      
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2-L3_Voltage",       GetU16(globalDataBuffer[id-1], 32067) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3-L1_Voltage",       GetU16(globalDataBuffer[id-1], 32068) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Voltage",          GetU16(globalDataBuffer[id-1], 32069) / 10,     {name: "", unit: "V"});                              
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Voltage",          GetU16(globalDataBuffer[id-1], 32070) / 10,     {name: "", unit: "V"});                                                  
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Voltage",          GetU16(globalDataBuffer[id-1], 32071) / 10,     {name: "", unit: "V"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Current",          GetI32(globalDataBuffer[id-1], 32072) / 1000,   {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Current",          GetI32(globalDataBuffer[id-1], 32074) / 1000,   {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Current",          GetI32(globalDataBuffer[id-1], 32076) / 1000,   {name: "", unit: "A"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".PeakActivePowerDay",       GetI32(globalDataBuffer[id-1], 32078) / 1000,   {name: "", unit: "kW"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".ActivePower",              GetI32(globalDataBuffer[id-1], 32080) / 1000,   {name: "", unit: "kW"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".ReactivePower",            GetI32(globalDataBuffer[id-1], 32082) / 1000,   {name: "", unit: "kVar"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".PowerFactor",              GetI16(globalDataBuffer[id-1], 32084) / 1000,   {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".GridFrequency",            GetU16(globalDataBuffer[id-1], 32085) / 100,    {name: "", unit: "Hz"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".Efficiency",               GetU16(globalDataBuffer[id-1], 32086) / 100,    {name: "", unit: "%"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".InternalTemperature",      GetI16(globalDataBuffer[id-1], 32087) / 10,     {name: "", unit: "°C"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".InsulationResistance",     GetU16(globalDataBuffer[id-1], 32088) / 1000,   {name: "", unit: "MOhm"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".DeviceStatus",             GetU16(globalDataBuffer[id-1], 32089),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".FaultCode",                GetU16(globalDataBuffer[id-1], 32090),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".StartupTime",              String(new Date(GetU32(globalDataBuffer[id-1], 32091)*1000)),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".ShutdownTime",             String(new Date(GetU32(globalDataBuffer[id-1], 32093)*1000)),          {name: "", unit: ""});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".AccomulatedEnergyYield",   GetU32(globalDataBuffer[id-1], 32106),          {name: "", unit: "kWh"});
                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".DailyEnergyYield",         GetU32(globalDataBuffer[id-1], 32114),          {name: "", unit: "kWh"});
                          }
                          
                          function ReadRegisterSpace(id, address, length) {
                              client.setID(modbusID[id-1]);
                              client.readHoldingRegisters(address, length, function(err, data) {
                                  if (err) {
                                      console.warn("Error received reading address " + address + " from id: " + modbusID[id-1] + " with error: " + modbusErrorMessages[err.modbusCode]); 
                                  }
                                  else
                                  {   
                                      console.debug("Read data from id/address " + modbusID[id-1] + "/" + address + "\nData is: " + data.data);
                                      for(var i = 0; i < length; i++)  {
                                          globalDataBuffer[id-1][address+i] = data.data[i];
                                      } 
                                  }
                              });
                          }
                          
                          function ProcessData() {
                              //console.log("Processing new data...");
                              for(var i = 1; i <= modbusID.length; i++) {
                                  //ProcessDeviceInfo(i);
                                  ProcessInverterStatus(i);
                                  //processBattery(i);
                                  //processInverterPowerAdjustments(i);
                                  //processOptimizers(i); 
                              }    
                              ProcessPowerMeterStatus();
                              //console.log("Processing done!");
                          }
                          
                          
                          // -------------------------------------------------------------------
                          // This is the main function triggering a  read via modbus-tcp every two seconds.
                          // Processing of data is triggered as soon as one complete set of registers is copied.
                          var triggerprocessing = 0; 
                          var currentinverter = 1;
                          
                          
                          setInterval(function() {
                                  if (!client.isOpen){
                                      ConnectModbus();
                                  }
                                  if(triggerprocessing == 1) {
                                  triggerprocessing = 0;
                                  ProcessData();        
                                  }      
                             
                              //console.log("Triggering read of inverter " + currentinverter + " at address " + registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0] + " with length " +  registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]);
                              ReadRegisterSpace(currentinverter, registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0], registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]); 
                              registerSpacesToReadContinuouslyPtr++;               
                              if(registerSpacesToReadContinuouslyPtr >= registerSpacesToReadContinuously.length) {
                                  registerSpacesToReadContinuouslyPtr = 0;
                                  currentinverter++
                                  if(currentinverter > modbusID.length){
                                      currentinverter = 1;  
                                      triggerprocessing = 1;                    
                                  }
                              }     
                          }, 3000);
                          

                          Super Danke.
                          Hab eh keine Batterie. Werde es gleich testen.
                          Gruß Jürgen

                          Guten Morgen soweit läuft es mal, aber kann es sein, dass bei
                          Solarpower Huawei Inverter 1 AccomulatedEnergyYield und
                          Solarpower.Huawei.Inverter.1.DailyEnergyYield
                          das Komma fehlt, denn der Tägliche Ertrag wäre schön aber nicht war :-)
                          kann man das irgend wie ändern?

                          Alex WarkentinA 1 Antwort Letzte Antwort
                          0
                          • Alex WarkentinA Alex Warkentin

                            @juggi1962 Poste mal die Logs, wenn der Fehler auftritt

                            Hier ist das Script, was ich für mich angepasst habe. Achtung! Ich habe die Batterie und andere für mich uninteressante Sachen rausgeschmissen und die Namen von Variablen und Funktionen angepasst. Für die Neuverbindung nach Verbindungsabbruch brauchst du die Zeilen 18 - 27 , 107-122 und 235 -237

                            // License: Beerware! Do what ever you like with this, but I'm not liable for anything that you do with it.
                            // If you like this code, feel free to buy me a beer ...
                            // Have fun with it! der Kachel
                            // @ts-ignore
                            var modbusRTU = require("modbus-serial");
                            var client = new modbusRTU();
                            
                            var modbusErrorMessages = [
                                "Unknown error",
                                "Illegal function (device does not support this read/write function)",
                                "Illegal data address (register not supported by device)",
                                "Illegal data value (value cannot be written to this register)",
                                "Slave device failure (device reports internal error)",
                                "Acknowledge (requested data will be available later)",
                                "Slave device busy (retry request again later)"
                            ];
                            
                            // Enter your inverter modbus IP and port here:
                            const modbusHost = "000.000.000.000";
                            const modbusPort = 502;
                            // Enter the Modbus-IDs of your Sun2000 inverters here:
                            const modbusID = [1];
                            // On which Modbus-ID can we reach the power meter? (via Sun2000!)
                            const powerMeterID = 0;
                            
                            // Connect to modbus client
                            ConnectModbus();
                            
                            // These register spaces need to be read:
                            const registerSpacesToReadContinuously = [[37100, 114], [32000, 116]];
                            var registerSpacesToReadContinuouslyPtr = 0;
                            
                            var globalDataBuffer = new Array(1);
                            globalDataBuffer[0] = new Array(50000); // not optimized....
                            
                            // ---------------------------------------------------------------
                            // Some helper functions:
                            function ReadUnsignedInt16(array) {
                                var value = array[0];    
                                return value;
                            }
                            
                            function ReadUnsignedInt32(array) {
                                var value = array[0] * 256 * 256 + array[1];    
                                return value;
                            }
                            
                            function ReadSignedInt16(array) {
                                var value = 0;
                                if (array[0] > 32767)
                                    value = array[0] - 65535; 
                                else
                                    value = array[0];
                            
                                return value;
                            }
                            function ReadSignedInt32(array) {
                                var value = 0;
                                for (var i = 0; i < 2; i++) {
                                    value = (value << 16) | array[i];
                                }
                                return value;
                            }
                            function GetU16(dataarray, index) {
                                var value = ReadUnsignedInt16(dataarray.slice(index, index+1));
                                return value;
                            }
                            
                            function GetU32(dataarray, index) {
                                var value = ReadUnsignedInt32(dataarray.slice(index, index+2));
                                return value;
                            }
                            
                            function GetI16(dataarray, index) {
                                var value = ReadSignedInt16(dataarray.slice(index, index+1));
                                return value;
                            }
                            
                            function GetI32(dataarray, index) {
                                var value = ReadSignedInt32(dataarray.slice(index, index+2));
                                return value;
                            }
                            
                            function GetString(dataarray, index, length) {
                                var shortarray = dataarray.slice(index, index+length);
                                var bytearray = [];
                                for(var i = 0; i < length; i++) {
                                    bytearray.push(dataarray[index+i] >> 8);
                                    bytearray.push(dataarray[index+i] & 0xff);
                                }       
                                var value =  String.fromCharCode.apply(null, bytearray);    
                                return value;
                            }
                            
                            function GetZeroTerminatedString(dataarray, index, length) {
                                var shortarray = dataarray.slice(index, index+length);
                                var bytearray = [];
                                for(var i = 0; i < length; i++) {
                                    bytearray.push(dataarray[index+i] >> 8);
                                    bytearray.push(dataarray[index+i] & 0xff);
                                }       
                                var value =  String.fromCharCode.apply(null, bytearray);    
                                var value2 = new String(value).trim();
                                return value2;
                            }
                            
                            // Funktion zum Herstellen einer Modbus-Verbindung
                            function ConnectModbus() {
                                console.log("Init connection to: " + modbusHost +":" + modbusPort);
                                // set requests parameters
                                client.setTimeout (10000);
                                // try to connect
                                client.connectTCP (modbusHost, { port: modbusPort })
                                    .then(function()
                                    {
                                        console.log("Connected, wait for reading...");
                                    })
                                    .catch(function(e)
                                    {
                                        console.log(e);
                                    });
                            }
                            
                            // Funktion zum Anlegen und Beschreiben eines Datenpunkts
                            function ForceSetState(objectname, value, options) {
                                if(!existsState("javascript.0." + objectname))      createState(objectname, value, options);
                                else                                                setState(objectname, value);
                            }  
                            // ---------------------------------------------------------------
                            // Functions to map registers into ioBreaker objects:
                            function ProcessPowerMeterStatus() {       
                                ForceSetState("Solarpower.Huawei.Meter.Status",                     GetU16(globalDataBuffer[powerMeterID], 37100),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Meter.VoltageL1",                  GetI32(globalDataBuffer[powerMeterID], 37101) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Meter.VoltageL2",                  GetI32(globalDataBuffer[powerMeterID], 37103) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Meter.VoltageL3",                  GetI32(globalDataBuffer[powerMeterID], 37105) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Meter.CurrentL1",                  GetI32(globalDataBuffer[powerMeterID], 37107) / 100,    {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Meter.CurrentL2",                  GetI32(globalDataBuffer[powerMeterID], 37109) / 100,    {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Meter.CurrentL3",                  GetI32(globalDataBuffer[powerMeterID], 37111) / 100,    {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Meter.ActivePower",                GetI32(globalDataBuffer[powerMeterID], 37113) / 1,      {name: "", unit: "W"});
                                ForceSetState("Solarpower.Huawei.Meter.ReactivePower",              GetI32(globalDataBuffer[powerMeterID], 37115) / 1,      {name: "", unit: "Var"});
                                ForceSetState("Solarpower.Huawei.Meter.PowerFactor",                GetI16(globalDataBuffer[powerMeterID], 37117) / 1000,   {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Meter.GridFrequency",              GetI16(globalDataBuffer[powerMeterID], 37118) / 100,    {name: "", unit: "Hz"});
                                ForceSetState("Solarpower.Huawei.Meter.PositiveActiveEnergy",       GetI32(globalDataBuffer[powerMeterID], 37119) / 100,    {name: "", unit: "kWh"});
                                ForceSetState("Solarpower.Huawei.Meter.ReverseActiveEnergy",        GetI32(globalDataBuffer[powerMeterID], 37121) / 100,    {name: "", unit: "kWh"});
                                ForceSetState("Solarpower.Huawei.Meter.AccumulatedReactivePower",   GetI32(globalDataBuffer[powerMeterID], 37123) / 100,    {name: "", unit: "kVarh"});
                                //ForceSetState("Solarpower.Huawei.Meter.MeterType",                  GetU16(globalDataBuffer[powerMeterID], 37125),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Meter.VoltageL1-L2",               GetI32(globalDataBuffer[powerMeterID], 37126) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Meter.VoltageL2-L3",               GetI32(globalDataBuffer[powerMeterID], 37128) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Meter.VoltageL3-L1",               GetI32(globalDataBuffer[powerMeterID], 37130) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Meter.ActivePowerL1",              GetI32(globalDataBuffer[powerMeterID], 37132) / 1,      {name: "", unit: "W"});
                                ForceSetState("Solarpower.Huawei.Meter.ActivePowerL2",              GetI32(globalDataBuffer[powerMeterID], 37134) / 1,      {name: "", unit: "W"});
                                ForceSetState("Solarpower.Huawei.Meter.ActivePowerL3",              GetI32(globalDataBuffer[powerMeterID], 37136) / 1,      {name: "", unit: "W"});
                                //ForceSetState("Solarpower.Huawei.Meter.MeterModel",                 GetU16(globalDataBuffer[powerMeterID], 37138),          {name: "", unit: ""});
                            }
                            
                            function ProcessInverterStatus(id) {
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".State1",                   GetU16(globalDataBuffer[id-1], 32000),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".State2",                   GetU16(globalDataBuffer[id-1], 32002),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".State3",                   GetU32(globalDataBuffer[id-1], 32003),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm1",                   GetU16(globalDataBuffer[id-1], 32008),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm2",                   GetU16(globalDataBuffer[id-1], 32009),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm3",                   GetU16(globalDataBuffer[id-1], 32010),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Voltage",         GetI16(globalDataBuffer[id-1], 32016) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Current",         GetI16(globalDataBuffer[id-1], 32017) / 100,    {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Voltage",         GetI16(globalDataBuffer[id-1], 32018) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Current",         GetI16(globalDataBuffer[id-1], 32019) / 100,    {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Voltage",         GetI16(globalDataBuffer[id-1], 32020) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Current",         GetI16(globalDataBuffer[id-1], 32021) / 100,    {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Voltage",         GetI16(globalDataBuffer[id-1], 32022) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Current",         GetI16(globalDataBuffer[id-1], 32023) / 100,    {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".InputPower",               GetI32(globalDataBuffer[id-1], 32064) / 1000,   {name: "", unit: "kW"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1-L2_Voltage",       GetU16(globalDataBuffer[id-1], 32066) / 10,     {name: "", unit: "V"});      
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2-L3_Voltage",       GetU16(globalDataBuffer[id-1], 32067) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3-L1_Voltage",       GetU16(globalDataBuffer[id-1], 32068) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Voltage",          GetU16(globalDataBuffer[id-1], 32069) / 10,     {name: "", unit: "V"});                              
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Voltage",          GetU16(globalDataBuffer[id-1], 32070) / 10,     {name: "", unit: "V"});                                                  
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Voltage",          GetU16(globalDataBuffer[id-1], 32071) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Current",          GetI32(globalDataBuffer[id-1], 32072) / 1000,   {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Current",          GetI32(globalDataBuffer[id-1], 32074) / 1000,   {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Current",          GetI32(globalDataBuffer[id-1], 32076) / 1000,   {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".PeakActivePowerDay",       GetI32(globalDataBuffer[id-1], 32078) / 1000,   {name: "", unit: "kW"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".ActivePower",              GetI32(globalDataBuffer[id-1], 32080) / 1000,   {name: "", unit: "kW"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".ReactivePower",            GetI32(globalDataBuffer[id-1], 32082) / 1000,   {name: "", unit: "kVar"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".PowerFactor",              GetI16(globalDataBuffer[id-1], 32084) / 1000,   {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".GridFrequency",            GetU16(globalDataBuffer[id-1], 32085) / 100,    {name: "", unit: "Hz"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Efficiency",               GetU16(globalDataBuffer[id-1], 32086) / 100,    {name: "", unit: "%"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".InternalTemperature",      GetI16(globalDataBuffer[id-1], 32087) / 10,     {name: "", unit: "°C"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".InsulationResistance",     GetU16(globalDataBuffer[id-1], 32088) / 1000,   {name: "", unit: "MOhm"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".DeviceStatus",             GetU16(globalDataBuffer[id-1], 32089),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".FaultCode",                GetU16(globalDataBuffer[id-1], 32090),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".StartupTime",              String(new Date(GetU32(globalDataBuffer[id-1], 32091)*1000)),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".ShutdownTime",             String(new Date(GetU32(globalDataBuffer[id-1], 32093)*1000)),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".AccomulatedEnergyYield",   GetU32(globalDataBuffer[id-1], 32106),          {name: "", unit: "kWh"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".DailyEnergyYield",         GetU32(globalDataBuffer[id-1], 32114),          {name: "", unit: "kWh"});
                            }
                            
                            function ReadRegisterSpace(id, address, length) {
                                client.setID(modbusID[id-1]);
                                client.readHoldingRegisters(address, length, function(err, data) {
                                    if (err) {
                                        console.warn("Error received reading address " + address + " from id: " + modbusID[id-1] + " with error: " + modbusErrorMessages[err.modbusCode]); 
                                    }
                                    else
                                    {   
                                        console.debug("Read data from id/address " + modbusID[id-1] + "/" + address + "\nData is: " + data.data);
                                        for(var i = 0; i < length; i++)  {
                                            globalDataBuffer[id-1][address+i] = data.data[i];
                                        } 
                                    }
                                });
                            }
                            
                            function ProcessData() {
                                //console.log("Processing new data...");
                                for(var i = 1; i <= modbusID.length; i++) {
                                    //ProcessDeviceInfo(i);
                                    ProcessInverterStatus(i);
                                    //processBattery(i);
                                    //processInverterPowerAdjustments(i);
                                    //processOptimizers(i); 
                                }    
                                ProcessPowerMeterStatus();
                                //console.log("Processing done!");
                            }
                            
                            
                            // -------------------------------------------------------------------
                            // This is the main function triggering a  read via modbus-tcp every two seconds.
                            // Processing of data is triggered as soon as one complete set of registers is copied.
                            var triggerprocessing = 0; 
                            var currentinverter = 1;
                            
                            
                            setInterval(function() {
                                    if (!client.isOpen){
                                        ConnectModbus();
                                    }
                                    if(triggerprocessing == 1) {
                                    triggerprocessing = 0;
                                    ProcessData();        
                                    }      
                               
                                //console.log("Triggering read of inverter " + currentinverter + " at address " + registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0] + " with length " +  registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]);
                                ReadRegisterSpace(currentinverter, registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0], registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]); 
                                registerSpacesToReadContinuouslyPtr++;               
                                if(registerSpacesToReadContinuouslyPtr >= registerSpacesToReadContinuously.length) {
                                    registerSpacesToReadContinuouslyPtr = 0;
                                    currentinverter++
                                    if(currentinverter > modbusID.length){
                                        currentinverter = 1;  
                                        triggerprocessing = 1;                    
                                    }
                                }     
                            }, 3000);
                            
                            J Offline
                            J Offline
                            juggi1962
                            schrieb am zuletzt editiert von
                            #69

                            @alex-warkentin sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

                            @juggi1962 Poste mal die Logs, wenn der Fehler auftritt

                            Hier ist das Script, was ich für mich angepasst habe. Achtung! Ich habe die Batterie und andere für mich uninteressante Sachen rausgeschmissen und die Namen von Variablen und Funktionen angepasst. Für die Neuverbindung nach Verbindungsabbruch brauchst du die Zeilen 18 - 27 , 107-122 und 235 -237

                            // License: Beerware! Do what ever you like with this, but I'm not liable for anything that you do with it.
                            // If you like this code, feel free to buy me a beer ...
                            // Have fun with it! der Kachel
                            // @ts-ignore
                            var modbusRTU = require("modbus-serial");
                            var client = new modbusRTU();
                            
                            var modbusErrorMessages = [
                                "Unknown error",
                                "Illegal function (device does not support this read/write function)",
                                "Illegal data address (register not supported by device)",
                                "Illegal data value (value cannot be written to this register)",
                                "Slave device failure (device reports internal error)",
                                "Acknowledge (requested data will be available later)",
                                "Slave device busy (retry request again later)"
                            ];
                            
                            // Enter your inverter modbus IP and port here:
                            const modbusHost = "000.000.000.000";
                            const modbusPort = 502;
                            // Enter the Modbus-IDs of your Sun2000 inverters here:
                            const modbusID = [1];
                            // On which Modbus-ID can we reach the power meter? (via Sun2000!)
                            const powerMeterID = 0;
                            
                            // Connect to modbus client
                            ConnectModbus();
                            
                            // These register spaces need to be read:
                            const registerSpacesToReadContinuously = [[37100, 114], [32000, 116]];
                            var registerSpacesToReadContinuouslyPtr = 0;
                            
                            var globalDataBuffer = new Array(1);
                            globalDataBuffer[0] = new Array(50000); // not optimized....
                            
                            // ---------------------------------------------------------------
                            // Some helper functions:
                            function ReadUnsignedInt16(array) {
                                var value = array[0];    
                                return value;
                            }
                            
                            function ReadUnsignedInt32(array) {
                                var value = array[0] * 256 * 256 + array[1];    
                                return value;
                            }
                            
                            function ReadSignedInt16(array) {
                                var value = 0;
                                if (array[0] > 32767)
                                    value = array[0] - 65535; 
                                else
                                    value = array[0];
                            
                                return value;
                            }
                            function ReadSignedInt32(array) {
                                var value = 0;
                                for (var i = 0; i < 2; i++) {
                                    value = (value << 16) | array[i];
                                }
                                return value;
                            }
                            function GetU16(dataarray, index) {
                                var value = ReadUnsignedInt16(dataarray.slice(index, index+1));
                                return value;
                            }
                            
                            function GetU32(dataarray, index) {
                                var value = ReadUnsignedInt32(dataarray.slice(index, index+2));
                                return value;
                            }
                            
                            function GetI16(dataarray, index) {
                                var value = ReadSignedInt16(dataarray.slice(index, index+1));
                                return value;
                            }
                            
                            function GetI32(dataarray, index) {
                                var value = ReadSignedInt32(dataarray.slice(index, index+2));
                                return value;
                            }
                            
                            function GetString(dataarray, index, length) {
                                var shortarray = dataarray.slice(index, index+length);
                                var bytearray = [];
                                for(var i = 0; i < length; i++) {
                                    bytearray.push(dataarray[index+i] >> 8);
                                    bytearray.push(dataarray[index+i] & 0xff);
                                }       
                                var value =  String.fromCharCode.apply(null, bytearray);    
                                return value;
                            }
                            
                            function GetZeroTerminatedString(dataarray, index, length) {
                                var shortarray = dataarray.slice(index, index+length);
                                var bytearray = [];
                                for(var i = 0; i < length; i++) {
                                    bytearray.push(dataarray[index+i] >> 8);
                                    bytearray.push(dataarray[index+i] & 0xff);
                                }       
                                var value =  String.fromCharCode.apply(null, bytearray);    
                                var value2 = new String(value).trim();
                                return value2;
                            }
                            
                            // Funktion zum Herstellen einer Modbus-Verbindung
                            function ConnectModbus() {
                                console.log("Init connection to: " + modbusHost +":" + modbusPort);
                                // set requests parameters
                                client.setTimeout (10000);
                                // try to connect
                                client.connectTCP (modbusHost, { port: modbusPort })
                                    .then(function()
                                    {
                                        console.log("Connected, wait for reading...");
                                    })
                                    .catch(function(e)
                                    {
                                        console.log(e);
                                    });
                            }
                            
                            // Funktion zum Anlegen und Beschreiben eines Datenpunkts
                            function ForceSetState(objectname, value, options) {
                                if(!existsState("javascript.0." + objectname))      createState(objectname, value, options);
                                else                                                setState(objectname, value);
                            }  
                            // ---------------------------------------------------------------
                            // Functions to map registers into ioBreaker objects:
                            function ProcessPowerMeterStatus() {       
                                ForceSetState("Solarpower.Huawei.Meter.Status",                     GetU16(globalDataBuffer[powerMeterID], 37100),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Meter.VoltageL1",                  GetI32(globalDataBuffer[powerMeterID], 37101) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Meter.VoltageL2",                  GetI32(globalDataBuffer[powerMeterID], 37103) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Meter.VoltageL3",                  GetI32(globalDataBuffer[powerMeterID], 37105) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Meter.CurrentL1",                  GetI32(globalDataBuffer[powerMeterID], 37107) / 100,    {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Meter.CurrentL2",                  GetI32(globalDataBuffer[powerMeterID], 37109) / 100,    {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Meter.CurrentL3",                  GetI32(globalDataBuffer[powerMeterID], 37111) / 100,    {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Meter.ActivePower",                GetI32(globalDataBuffer[powerMeterID], 37113) / 1,      {name: "", unit: "W"});
                                ForceSetState("Solarpower.Huawei.Meter.ReactivePower",              GetI32(globalDataBuffer[powerMeterID], 37115) / 1,      {name: "", unit: "Var"});
                                ForceSetState("Solarpower.Huawei.Meter.PowerFactor",                GetI16(globalDataBuffer[powerMeterID], 37117) / 1000,   {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Meter.GridFrequency",              GetI16(globalDataBuffer[powerMeterID], 37118) / 100,    {name: "", unit: "Hz"});
                                ForceSetState("Solarpower.Huawei.Meter.PositiveActiveEnergy",       GetI32(globalDataBuffer[powerMeterID], 37119) / 100,    {name: "", unit: "kWh"});
                                ForceSetState("Solarpower.Huawei.Meter.ReverseActiveEnergy",        GetI32(globalDataBuffer[powerMeterID], 37121) / 100,    {name: "", unit: "kWh"});
                                ForceSetState("Solarpower.Huawei.Meter.AccumulatedReactivePower",   GetI32(globalDataBuffer[powerMeterID], 37123) / 100,    {name: "", unit: "kVarh"});
                                //ForceSetState("Solarpower.Huawei.Meter.MeterType",                  GetU16(globalDataBuffer[powerMeterID], 37125),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Meter.VoltageL1-L2",               GetI32(globalDataBuffer[powerMeterID], 37126) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Meter.VoltageL2-L3",               GetI32(globalDataBuffer[powerMeterID], 37128) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Meter.VoltageL3-L1",               GetI32(globalDataBuffer[powerMeterID], 37130) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Meter.ActivePowerL1",              GetI32(globalDataBuffer[powerMeterID], 37132) / 1,      {name: "", unit: "W"});
                                ForceSetState("Solarpower.Huawei.Meter.ActivePowerL2",              GetI32(globalDataBuffer[powerMeterID], 37134) / 1,      {name: "", unit: "W"});
                                ForceSetState("Solarpower.Huawei.Meter.ActivePowerL3",              GetI32(globalDataBuffer[powerMeterID], 37136) / 1,      {name: "", unit: "W"});
                                //ForceSetState("Solarpower.Huawei.Meter.MeterModel",                 GetU16(globalDataBuffer[powerMeterID], 37138),          {name: "", unit: ""});
                            }
                            
                            function ProcessInverterStatus(id) {
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".State1",                   GetU16(globalDataBuffer[id-1], 32000),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".State2",                   GetU16(globalDataBuffer[id-1], 32002),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".State3",                   GetU32(globalDataBuffer[id-1], 32003),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm1",                   GetU16(globalDataBuffer[id-1], 32008),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm2",                   GetU16(globalDataBuffer[id-1], 32009),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm3",                   GetU16(globalDataBuffer[id-1], 32010),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Voltage",         GetI16(globalDataBuffer[id-1], 32016) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Current",         GetI16(globalDataBuffer[id-1], 32017) / 100,    {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Voltage",         GetI16(globalDataBuffer[id-1], 32018) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Current",         GetI16(globalDataBuffer[id-1], 32019) / 100,    {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Voltage",         GetI16(globalDataBuffer[id-1], 32020) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Current",         GetI16(globalDataBuffer[id-1], 32021) / 100,    {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Voltage",         GetI16(globalDataBuffer[id-1], 32022) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Current",         GetI16(globalDataBuffer[id-1], 32023) / 100,    {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".InputPower",               GetI32(globalDataBuffer[id-1], 32064) / 1000,   {name: "", unit: "kW"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1-L2_Voltage",       GetU16(globalDataBuffer[id-1], 32066) / 10,     {name: "", unit: "V"});      
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2-L3_Voltage",       GetU16(globalDataBuffer[id-1], 32067) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3-L1_Voltage",       GetU16(globalDataBuffer[id-1], 32068) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Voltage",          GetU16(globalDataBuffer[id-1], 32069) / 10,     {name: "", unit: "V"});                              
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Voltage",          GetU16(globalDataBuffer[id-1], 32070) / 10,     {name: "", unit: "V"});                                                  
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Voltage",          GetU16(globalDataBuffer[id-1], 32071) / 10,     {name: "", unit: "V"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Current",          GetI32(globalDataBuffer[id-1], 32072) / 1000,   {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Current",          GetI32(globalDataBuffer[id-1], 32074) / 1000,   {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Current",          GetI32(globalDataBuffer[id-1], 32076) / 1000,   {name: "", unit: "A"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".PeakActivePowerDay",       GetI32(globalDataBuffer[id-1], 32078) / 1000,   {name: "", unit: "kW"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".ActivePower",              GetI32(globalDataBuffer[id-1], 32080) / 1000,   {name: "", unit: "kW"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".ReactivePower",            GetI32(globalDataBuffer[id-1], 32082) / 1000,   {name: "", unit: "kVar"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".PowerFactor",              GetI16(globalDataBuffer[id-1], 32084) / 1000,   {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".GridFrequency",            GetU16(globalDataBuffer[id-1], 32085) / 100,    {name: "", unit: "Hz"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".Efficiency",               GetU16(globalDataBuffer[id-1], 32086) / 100,    {name: "", unit: "%"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".InternalTemperature",      GetI16(globalDataBuffer[id-1], 32087) / 10,     {name: "", unit: "°C"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".InsulationResistance",     GetU16(globalDataBuffer[id-1], 32088) / 1000,   {name: "", unit: "MOhm"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".DeviceStatus",             GetU16(globalDataBuffer[id-1], 32089),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".FaultCode",                GetU16(globalDataBuffer[id-1], 32090),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".StartupTime",              String(new Date(GetU32(globalDataBuffer[id-1], 32091)*1000)),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".ShutdownTime",             String(new Date(GetU32(globalDataBuffer[id-1], 32093)*1000)),          {name: "", unit: ""});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".AccomulatedEnergyYield",   GetU32(globalDataBuffer[id-1], 32106),          {name: "", unit: "kWh"});
                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".DailyEnergyYield",         GetU32(globalDataBuffer[id-1], 32114),          {name: "", unit: "kWh"});
                            }
                            
                            function ReadRegisterSpace(id, address, length) {
                                client.setID(modbusID[id-1]);
                                client.readHoldingRegisters(address, length, function(err, data) {
                                    if (err) {
                                        console.warn("Error received reading address " + address + " from id: " + modbusID[id-1] + " with error: " + modbusErrorMessages[err.modbusCode]); 
                                    }
                                    else
                                    {   
                                        console.debug("Read data from id/address " + modbusID[id-1] + "/" + address + "\nData is: " + data.data);
                                        for(var i = 0; i < length; i++)  {
                                            globalDataBuffer[id-1][address+i] = data.data[i];
                                        } 
                                    }
                                });
                            }
                            
                            function ProcessData() {
                                //console.log("Processing new data...");
                                for(var i = 1; i <= modbusID.length; i++) {
                                    //ProcessDeviceInfo(i);
                                    ProcessInverterStatus(i);
                                    //processBattery(i);
                                    //processInverterPowerAdjustments(i);
                                    //processOptimizers(i); 
                                }    
                                ProcessPowerMeterStatus();
                                //console.log("Processing done!");
                            }
                            
                            
                            // -------------------------------------------------------------------
                            // This is the main function triggering a  read via modbus-tcp every two seconds.
                            // Processing of data is triggered as soon as one complete set of registers is copied.
                            var triggerprocessing = 0; 
                            var currentinverter = 1;
                            
                            
                            setInterval(function() {
                                    if (!client.isOpen){
                                        ConnectModbus();
                                    }
                                    if(triggerprocessing == 1) {
                                    triggerprocessing = 0;
                                    ProcessData();        
                                    }      
                               
                                //console.log("Triggering read of inverter " + currentinverter + " at address " + registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0] + " with length " +  registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]);
                                ReadRegisterSpace(currentinverter, registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0], registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]); 
                                registerSpacesToReadContinuouslyPtr++;               
                                if(registerSpacesToReadContinuouslyPtr >= registerSpacesToReadContinuously.length) {
                                    registerSpacesToReadContinuouslyPtr = 0;
                                    currentinverter++
                                    if(currentinverter > modbusID.length){
                                        currentinverter = 1;  
                                        triggerprocessing = 1;                    
                                    }
                                }     
                            }, 3000);
                            

                            So der Fehler ist wieder da, die Freude hat nicht lange angehalten.
                            Hier die Logs vom Fehler, nach Neustart des Skrips läufts wieder :-(

                            
                            
                            javascript.0
                            2023-03-06 10:27:26.845	warn	script.js.Neu.PV_Anlage.Modbus_Huawei_Sun2000_neu: Error received reading address 32000 from id: 1 with error: undefined
                            
                            javascript.0
                            2023-03-06 10:27:23.846	warn	script.js.Neu.PV_Anlage.Modbus_Huawei_Sun2000_neu: Error received reading address 37100 from id: 1 with error: undefined
                            
                            javascript.0
                            2023-03-06 10:27:20.841	warn	script.js.Neu.PV_Anlage.Modbus_Huawei_Sun2000_neu: Error received reading address 32000 from id: 1 with error: undefined
                            
                            javascript.0
                            2023-03-06 10:27:17.842	warn	script.js.Neu.PV_Anlage.Modbus_Huawei_Sun2000_neu: Error received reading address 37100 from id: 1 with error: undefined
                            
                            javascript.0
                            2023-03-06 10:27:14.840	warn	script.js.Neu.PV_Anlage.Modbus_Huawei_Sun2000_neu: Error received reading address 32000 from id: 1 with error: undefined
                            
                            javascript.0
                            2023-03-06 10:27:11.842	warn	script.js.Neu.PV_Anlage.Modbus_Huawei_Sun2000_neu: Error received reading address 37100 from id: 1 with error: undefined
                            
                            javascript.0
                            2023-03-06 10:27:08.839	warn	script.js.Neu.PV_Anlage.Modbus_Huawei_Sun2000_neu: Error received reading address 32000 from id: 1 with error: undefined
                            
                            javascript.0
                            2023-03-06 10:27:05.841	warn	script.js.Neu.PV_Anlage.Modbus_Huawei_Sun2000_neu: Error received reading address 37100 from id: 1 with error: undefined
                            
                            javascript.0
                            2023-03-06 10:27:02.838	warn	script.js.Neu.PV_Anlage.Modbus_Huawei_Sun2000_neu: Error received reading address 32000 from id: 1 with error: undefined
                            
                            javascript.0
                            2023-03-06 10:26:59.839	warn	script.js.Neu.PV_Anlage.Modbus_Huawei_Sun2000_neu: Error received reading address 37100 from id: 1 with error: undefined
                            
                            javascript.0
                            2023-03-06 10:26:56.837	warn	script.js.Neu.PV_Anlage.Modbus_Huawei_Sun2000_neu: Error received reading address 32000 from id: 1 with error: undefined
                            
                            javascript.0
                            2023-03-06 10:26:53.840	warn	script.js.Neu.PV_Anlage.Modbus_Huawei_Sun2000_neu: Error received reading address 37100 from id: 1 with error: undefined
                            
                            1 Antwort Letzte Antwort
                            0
                            • J juggi1962

                              @juggi1962 sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

                              @alex-warkentin sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

                              @juggi1962 Poste mal die Logs, wenn der Fehler auftritt

                              Hier ist das Script, was ich für mich angepasst habe. Achtung! Ich habe die Batterie und andere für mich uninteressante Sachen rausgeschmissen und die Namen von Variablen und Funktionen angepasst. Für die Neuverbindung nach Verbindungsabbruch brauchst du die Zeilen 18 - 27 , 107-122 und 235 -237

                              // License: Beerware! Do what ever you like with this, but I'm not liable for anything that you do with it.
                              // If you like this code, feel free to buy me a beer ...
                              // Have fun with it! der Kachel
                              // @ts-ignore
                              var modbusRTU = require("modbus-serial");
                              var client = new modbusRTU();
                              
                              var modbusErrorMessages = [
                                  "Unknown error",
                                  "Illegal function (device does not support this read/write function)",
                                  "Illegal data address (register not supported by device)",
                                  "Illegal data value (value cannot be written to this register)",
                                  "Slave device failure (device reports internal error)",
                                  "Acknowledge (requested data will be available later)",
                                  "Slave device busy (retry request again later)"
                              ];
                              
                              // Enter your inverter modbus IP and port here:
                              const modbusHost = "000.000.000.000";
                              const modbusPort = 502;
                              // Enter the Modbus-IDs of your Sun2000 inverters here:
                              const modbusID = [1];
                              // On which Modbus-ID can we reach the power meter? (via Sun2000!)
                              const powerMeterID = 0;
                              
                              // Connect to modbus client
                              ConnectModbus();
                              
                              // These register spaces need to be read:
                              const registerSpacesToReadContinuously = [[37100, 114], [32000, 116]];
                              var registerSpacesToReadContinuouslyPtr = 0;
                              
                              var globalDataBuffer = new Array(1);
                              globalDataBuffer[0] = new Array(50000); // not optimized....
                              
                              // ---------------------------------------------------------------
                              // Some helper functions:
                              function ReadUnsignedInt16(array) {
                                  var value = array[0];    
                                  return value;
                              }
                              
                              function ReadUnsignedInt32(array) {
                                  var value = array[0] * 256 * 256 + array[1];    
                                  return value;
                              }
                              
                              function ReadSignedInt16(array) {
                                  var value = 0;
                                  if (array[0] > 32767)
                                      value = array[0] - 65535; 
                                  else
                                      value = array[0];
                              
                                  return value;
                              }
                              function ReadSignedInt32(array) {
                                  var value = 0;
                                  for (var i = 0; i < 2; i++) {
                                      value = (value << 16) | array[i];
                                  }
                                  return value;
                              }
                              function GetU16(dataarray, index) {
                                  var value = ReadUnsignedInt16(dataarray.slice(index, index+1));
                                  return value;
                              }
                              
                              function GetU32(dataarray, index) {
                                  var value = ReadUnsignedInt32(dataarray.slice(index, index+2));
                                  return value;
                              }
                              
                              function GetI16(dataarray, index) {
                                  var value = ReadSignedInt16(dataarray.slice(index, index+1));
                                  return value;
                              }
                              
                              function GetI32(dataarray, index) {
                                  var value = ReadSignedInt32(dataarray.slice(index, index+2));
                                  return value;
                              }
                              
                              function GetString(dataarray, index, length) {
                                  var shortarray = dataarray.slice(index, index+length);
                                  var bytearray = [];
                                  for(var i = 0; i < length; i++) {
                                      bytearray.push(dataarray[index+i] >> 8);
                                      bytearray.push(dataarray[index+i] & 0xff);
                                  }       
                                  var value =  String.fromCharCode.apply(null, bytearray);    
                                  return value;
                              }
                              
                              function GetZeroTerminatedString(dataarray, index, length) {
                                  var shortarray = dataarray.slice(index, index+length);
                                  var bytearray = [];
                                  for(var i = 0; i < length; i++) {
                                      bytearray.push(dataarray[index+i] >> 8);
                                      bytearray.push(dataarray[index+i] & 0xff);
                                  }       
                                  var value =  String.fromCharCode.apply(null, bytearray);    
                                  var value2 = new String(value).trim();
                                  return value2;
                              }
                              
                              // Funktion zum Herstellen einer Modbus-Verbindung
                              function ConnectModbus() {
                                  console.log("Init connection to: " + modbusHost +":" + modbusPort);
                                  // set requests parameters
                                  client.setTimeout (10000);
                                  // try to connect
                                  client.connectTCP (modbusHost, { port: modbusPort })
                                      .then(function()
                                      {
                                          console.log("Connected, wait for reading...");
                                      })
                                      .catch(function(e)
                                      {
                                          console.log(e);
                                      });
                              }
                              
                              // Funktion zum Anlegen und Beschreiben eines Datenpunkts
                              function ForceSetState(objectname, value, options) {
                                  if(!existsState("javascript.0." + objectname))      createState(objectname, value, options);
                                  else                                                setState(objectname, value);
                              }  
                              // ---------------------------------------------------------------
                              // Functions to map registers into ioBreaker objects:
                              function ProcessPowerMeterStatus() {       
                                  ForceSetState("Solarpower.Huawei.Meter.Status",                     GetU16(globalDataBuffer[powerMeterID], 37100),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Meter.VoltageL1",                  GetI32(globalDataBuffer[powerMeterID], 37101) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Meter.VoltageL2",                  GetI32(globalDataBuffer[powerMeterID], 37103) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Meter.VoltageL3",                  GetI32(globalDataBuffer[powerMeterID], 37105) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Meter.CurrentL1",                  GetI32(globalDataBuffer[powerMeterID], 37107) / 100,    {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Meter.CurrentL2",                  GetI32(globalDataBuffer[powerMeterID], 37109) / 100,    {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Meter.CurrentL3",                  GetI32(globalDataBuffer[powerMeterID], 37111) / 100,    {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Meter.ActivePower",                GetI32(globalDataBuffer[powerMeterID], 37113) / 1,      {name: "", unit: "W"});
                                  ForceSetState("Solarpower.Huawei.Meter.ReactivePower",              GetI32(globalDataBuffer[powerMeterID], 37115) / 1,      {name: "", unit: "Var"});
                                  ForceSetState("Solarpower.Huawei.Meter.PowerFactor",                GetI16(globalDataBuffer[powerMeterID], 37117) / 1000,   {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Meter.GridFrequency",              GetI16(globalDataBuffer[powerMeterID], 37118) / 100,    {name: "", unit: "Hz"});
                                  ForceSetState("Solarpower.Huawei.Meter.PositiveActiveEnergy",       GetI32(globalDataBuffer[powerMeterID], 37119) / 100,    {name: "", unit: "kWh"});
                                  ForceSetState("Solarpower.Huawei.Meter.ReverseActiveEnergy",        GetI32(globalDataBuffer[powerMeterID], 37121) / 100,    {name: "", unit: "kWh"});
                                  ForceSetState("Solarpower.Huawei.Meter.AccumulatedReactivePower",   GetI32(globalDataBuffer[powerMeterID], 37123) / 100,    {name: "", unit: "kVarh"});
                                  //ForceSetState("Solarpower.Huawei.Meter.MeterType",                  GetU16(globalDataBuffer[powerMeterID], 37125),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Meter.VoltageL1-L2",               GetI32(globalDataBuffer[powerMeterID], 37126) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Meter.VoltageL2-L3",               GetI32(globalDataBuffer[powerMeterID], 37128) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Meter.VoltageL3-L1",               GetI32(globalDataBuffer[powerMeterID], 37130) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Meter.ActivePowerL1",              GetI32(globalDataBuffer[powerMeterID], 37132) / 1,      {name: "", unit: "W"});
                                  ForceSetState("Solarpower.Huawei.Meter.ActivePowerL2",              GetI32(globalDataBuffer[powerMeterID], 37134) / 1,      {name: "", unit: "W"});
                                  ForceSetState("Solarpower.Huawei.Meter.ActivePowerL3",              GetI32(globalDataBuffer[powerMeterID], 37136) / 1,      {name: "", unit: "W"});
                                  //ForceSetState("Solarpower.Huawei.Meter.MeterModel",                 GetU16(globalDataBuffer[powerMeterID], 37138),          {name: "", unit: ""});
                              }
                              
                              function ProcessInverterStatus(id) {
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".State1",                   GetU16(globalDataBuffer[id-1], 32000),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".State2",                   GetU16(globalDataBuffer[id-1], 32002),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".State3",                   GetU32(globalDataBuffer[id-1], 32003),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm1",                   GetU16(globalDataBuffer[id-1], 32008),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm2",                   GetU16(globalDataBuffer[id-1], 32009),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm3",                   GetU16(globalDataBuffer[id-1], 32010),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Voltage",         GetI16(globalDataBuffer[id-1], 32016) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Current",         GetI16(globalDataBuffer[id-1], 32017) / 100,    {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Voltage",         GetI16(globalDataBuffer[id-1], 32018) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Current",         GetI16(globalDataBuffer[id-1], 32019) / 100,    {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Voltage",         GetI16(globalDataBuffer[id-1], 32020) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Current",         GetI16(globalDataBuffer[id-1], 32021) / 100,    {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Voltage",         GetI16(globalDataBuffer[id-1], 32022) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Current",         GetI16(globalDataBuffer[id-1], 32023) / 100,    {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".InputPower",               GetI32(globalDataBuffer[id-1], 32064) / 1000,   {name: "", unit: "kW"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1-L2_Voltage",       GetU16(globalDataBuffer[id-1], 32066) / 10,     {name: "", unit: "V"});      
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2-L3_Voltage",       GetU16(globalDataBuffer[id-1], 32067) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3-L1_Voltage",       GetU16(globalDataBuffer[id-1], 32068) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Voltage",          GetU16(globalDataBuffer[id-1], 32069) / 10,     {name: "", unit: "V"});                              
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Voltage",          GetU16(globalDataBuffer[id-1], 32070) / 10,     {name: "", unit: "V"});                                                  
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Voltage",          GetU16(globalDataBuffer[id-1], 32071) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Current",          GetI32(globalDataBuffer[id-1], 32072) / 1000,   {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Current",          GetI32(globalDataBuffer[id-1], 32074) / 1000,   {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Current",          GetI32(globalDataBuffer[id-1], 32076) / 1000,   {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".PeakActivePowerDay",       GetI32(globalDataBuffer[id-1], 32078) / 1000,   {name: "", unit: "kW"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".ActivePower",              GetI32(globalDataBuffer[id-1], 32080) / 1000,   {name: "", unit: "kW"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".ReactivePower",            GetI32(globalDataBuffer[id-1], 32082) / 1000,   {name: "", unit: "kVar"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".PowerFactor",              GetI16(globalDataBuffer[id-1], 32084) / 1000,   {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".GridFrequency",            GetU16(globalDataBuffer[id-1], 32085) / 100,    {name: "", unit: "Hz"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Efficiency",               GetU16(globalDataBuffer[id-1], 32086) / 100,    {name: "", unit: "%"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".InternalTemperature",      GetI16(globalDataBuffer[id-1], 32087) / 10,     {name: "", unit: "°C"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".InsulationResistance",     GetU16(globalDataBuffer[id-1], 32088) / 1000,   {name: "", unit: "MOhm"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".DeviceStatus",             GetU16(globalDataBuffer[id-1], 32089),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".FaultCode",                GetU16(globalDataBuffer[id-1], 32090),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".StartupTime",              String(new Date(GetU32(globalDataBuffer[id-1], 32091)*1000)),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".ShutdownTime",             String(new Date(GetU32(globalDataBuffer[id-1], 32093)*1000)),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".AccomulatedEnergyYield",   GetU32(globalDataBuffer[id-1], 32106),          {name: "", unit: "kWh"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".DailyEnergyYield",         GetU32(globalDataBuffer[id-1], 32114),          {name: "", unit: "kWh"});
                              }
                              
                              function ReadRegisterSpace(id, address, length) {
                                  client.setID(modbusID[id-1]);
                                  client.readHoldingRegisters(address, length, function(err, data) {
                                      if (err) {
                                          console.warn("Error received reading address " + address + " from id: " + modbusID[id-1] + " with error: " + modbusErrorMessages[err.modbusCode]); 
                                      }
                                      else
                                      {   
                                          console.debug("Read data from id/address " + modbusID[id-1] + "/" + address + "\nData is: " + data.data);
                                          for(var i = 0; i < length; i++)  {
                                              globalDataBuffer[id-1][address+i] = data.data[i];
                                          } 
                                      }
                                  });
                              }
                              
                              function ProcessData() {
                                  //console.log("Processing new data...");
                                  for(var i = 1; i <= modbusID.length; i++) {
                                      //ProcessDeviceInfo(i);
                                      ProcessInverterStatus(i);
                                      //processBattery(i);
                                      //processInverterPowerAdjustments(i);
                                      //processOptimizers(i); 
                                  }    
                                  ProcessPowerMeterStatus();
                                  //console.log("Processing done!");
                              }
                              
                              
                              // -------------------------------------------------------------------
                              // This is the main function triggering a  read via modbus-tcp every two seconds.
                              // Processing of data is triggered as soon as one complete set of registers is copied.
                              var triggerprocessing = 0; 
                              var currentinverter = 1;
                              
                              
                              setInterval(function() {
                                      if (!client.isOpen){
                                          ConnectModbus();
                                      }
                                      if(triggerprocessing == 1) {
                                      triggerprocessing = 0;
                                      ProcessData();        
                                      }      
                                 
                                  //console.log("Triggering read of inverter " + currentinverter + " at address " + registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0] + " with length " +  registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]);
                                  ReadRegisterSpace(currentinverter, registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0], registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]); 
                                  registerSpacesToReadContinuouslyPtr++;               
                                  if(registerSpacesToReadContinuouslyPtr >= registerSpacesToReadContinuously.length) {
                                      registerSpacesToReadContinuouslyPtr = 0;
                                      currentinverter++
                                      if(currentinverter > modbusID.length){
                                          currentinverter = 1;  
                                          triggerprocessing = 1;                    
                                      }
                                  }     
                              }, 3000);
                              

                              Super Danke.
                              Hab eh keine Batterie. Werde es gleich testen.
                              Gruß Jürgen

                              Guten Morgen soweit läuft es mal, aber kann es sein, dass bei
                              Solarpower Huawei Inverter 1 AccomulatedEnergyYield und
                              Solarpower.Huawei.Inverter.1.DailyEnergyYield
                              das Komma fehlt, denn der Tägliche Ertrag wäre schön aber nicht war :-)
                              kann man das irgend wie ändern?

                              Alex WarkentinA Offline
                              Alex WarkentinA Offline
                              Alex Warkentin
                              schrieb am zuletzt editiert von
                              #70

                              @juggi1962 said in Huawei Sun2000 & ioBroker via JS script funktioniert:

                              @juggi1962 sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

                              @alex-warkentin sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

                              @juggi1962 Poste mal die Logs, wenn der Fehler auftritt

                              Hier ist das Script, was ich für mich angepasst habe. Achtung! Ich habe die Batterie und andere für mich uninteressante Sachen rausgeschmissen und die Namen von Variablen und Funktionen angepasst. Für die Neuverbindung nach Verbindungsabbruch brauchst du die Zeilen 18 - 27 , 107-122 und 235 -237

                              // License: Beerware! Do what ever you like with this, but I'm not liable for anything that you do with it.
                              // If you like this code, feel free to buy me a beer ...
                              // Have fun with it! der Kachel
                              // @ts-ignore
                              var modbusRTU = require("modbus-serial");
                              var client = new modbusRTU();
                              
                              var modbusErrorMessages = [
                                  "Unknown error",
                                  "Illegal function (device does not support this read/write function)",
                                  "Illegal data address (register not supported by device)",
                                  "Illegal data value (value cannot be written to this register)",
                                  "Slave device failure (device reports internal error)",
                                  "Acknowledge (requested data will be available later)",
                                  "Slave device busy (retry request again later)"
                              ];
                              
                              // Enter your inverter modbus IP and port here:
                              const modbusHost = "000.000.000.000";
                              const modbusPort = 502;
                              // Enter the Modbus-IDs of your Sun2000 inverters here:
                              const modbusID = [1];
                              // On which Modbus-ID can we reach the power meter? (via Sun2000!)
                              const powerMeterID = 0;
                              
                              // Connect to modbus client
                              ConnectModbus();
                              
                              // These register spaces need to be read:
                              const registerSpacesToReadContinuously = [[37100, 114], [32000, 116]];
                              var registerSpacesToReadContinuouslyPtr = 0;
                              
                              var globalDataBuffer = new Array(1);
                              globalDataBuffer[0] = new Array(50000); // not optimized....
                              
                              // ---------------------------------------------------------------
                              // Some helper functions:
                              function ReadUnsignedInt16(array) {
                                  var value = array[0];    
                                  return value;
                              }
                              
                              function ReadUnsignedInt32(array) {
                                  var value = array[0] * 256 * 256 + array[1];    
                                  return value;
                              }
                              
                              function ReadSignedInt16(array) {
                                  var value = 0;
                                  if (array[0] > 32767)
                                      value = array[0] - 65535; 
                                  else
                                      value = array[0];
                              
                                  return value;
                              }
                              function ReadSignedInt32(array) {
                                  var value = 0;
                                  for (var i = 0; i < 2; i++) {
                                      value = (value << 16) | array[i];
                                  }
                                  return value;
                              }
                              function GetU16(dataarray, index) {
                                  var value = ReadUnsignedInt16(dataarray.slice(index, index+1));
                                  return value;
                              }
                              
                              function GetU32(dataarray, index) {
                                  var value = ReadUnsignedInt32(dataarray.slice(index, index+2));
                                  return value;
                              }
                              
                              function GetI16(dataarray, index) {
                                  var value = ReadSignedInt16(dataarray.slice(index, index+1));
                                  return value;
                              }
                              
                              function GetI32(dataarray, index) {
                                  var value = ReadSignedInt32(dataarray.slice(index, index+2));
                                  return value;
                              }
                              
                              function GetString(dataarray, index, length) {
                                  var shortarray = dataarray.slice(index, index+length);
                                  var bytearray = [];
                                  for(var i = 0; i < length; i++) {
                                      bytearray.push(dataarray[index+i] >> 8);
                                      bytearray.push(dataarray[index+i] & 0xff);
                                  }       
                                  var value =  String.fromCharCode.apply(null, bytearray);    
                                  return value;
                              }
                              
                              function GetZeroTerminatedString(dataarray, index, length) {
                                  var shortarray = dataarray.slice(index, index+length);
                                  var bytearray = [];
                                  for(var i = 0; i < length; i++) {
                                      bytearray.push(dataarray[index+i] >> 8);
                                      bytearray.push(dataarray[index+i] & 0xff);
                                  }       
                                  var value =  String.fromCharCode.apply(null, bytearray);    
                                  var value2 = new String(value).trim();
                                  return value2;
                              }
                              
                              // Funktion zum Herstellen einer Modbus-Verbindung
                              function ConnectModbus() {
                                  console.log("Init connection to: " + modbusHost +":" + modbusPort);
                                  // set requests parameters
                                  client.setTimeout (10000);
                                  // try to connect
                                  client.connectTCP (modbusHost, { port: modbusPort })
                                      .then(function()
                                      {
                                          console.log("Connected, wait for reading...");
                                      })
                                      .catch(function(e)
                                      {
                                          console.log(e);
                                      });
                              }
                              
                              // Funktion zum Anlegen und Beschreiben eines Datenpunkts
                              function ForceSetState(objectname, value, options) {
                                  if(!existsState("javascript.0." + objectname))      createState(objectname, value, options);
                                  else                                                setState(objectname, value);
                              }  
                              // ---------------------------------------------------------------
                              // Functions to map registers into ioBreaker objects:
                              function ProcessPowerMeterStatus() {       
                                  ForceSetState("Solarpower.Huawei.Meter.Status",                     GetU16(globalDataBuffer[powerMeterID], 37100),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Meter.VoltageL1",                  GetI32(globalDataBuffer[powerMeterID], 37101) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Meter.VoltageL2",                  GetI32(globalDataBuffer[powerMeterID], 37103) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Meter.VoltageL3",                  GetI32(globalDataBuffer[powerMeterID], 37105) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Meter.CurrentL1",                  GetI32(globalDataBuffer[powerMeterID], 37107) / 100,    {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Meter.CurrentL2",                  GetI32(globalDataBuffer[powerMeterID], 37109) / 100,    {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Meter.CurrentL3",                  GetI32(globalDataBuffer[powerMeterID], 37111) / 100,    {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Meter.ActivePower",                GetI32(globalDataBuffer[powerMeterID], 37113) / 1,      {name: "", unit: "W"});
                                  ForceSetState("Solarpower.Huawei.Meter.ReactivePower",              GetI32(globalDataBuffer[powerMeterID], 37115) / 1,      {name: "", unit: "Var"});
                                  ForceSetState("Solarpower.Huawei.Meter.PowerFactor",                GetI16(globalDataBuffer[powerMeterID], 37117) / 1000,   {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Meter.GridFrequency",              GetI16(globalDataBuffer[powerMeterID], 37118) / 100,    {name: "", unit: "Hz"});
                                  ForceSetState("Solarpower.Huawei.Meter.PositiveActiveEnergy",       GetI32(globalDataBuffer[powerMeterID], 37119) / 100,    {name: "", unit: "kWh"});
                                  ForceSetState("Solarpower.Huawei.Meter.ReverseActiveEnergy",        GetI32(globalDataBuffer[powerMeterID], 37121) / 100,    {name: "", unit: "kWh"});
                                  ForceSetState("Solarpower.Huawei.Meter.AccumulatedReactivePower",   GetI32(globalDataBuffer[powerMeterID], 37123) / 100,    {name: "", unit: "kVarh"});
                                  //ForceSetState("Solarpower.Huawei.Meter.MeterType",                  GetU16(globalDataBuffer[powerMeterID], 37125),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Meter.VoltageL1-L2",               GetI32(globalDataBuffer[powerMeterID], 37126) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Meter.VoltageL2-L3",               GetI32(globalDataBuffer[powerMeterID], 37128) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Meter.VoltageL3-L1",               GetI32(globalDataBuffer[powerMeterID], 37130) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Meter.ActivePowerL1",              GetI32(globalDataBuffer[powerMeterID], 37132) / 1,      {name: "", unit: "W"});
                                  ForceSetState("Solarpower.Huawei.Meter.ActivePowerL2",              GetI32(globalDataBuffer[powerMeterID], 37134) / 1,      {name: "", unit: "W"});
                                  ForceSetState("Solarpower.Huawei.Meter.ActivePowerL3",              GetI32(globalDataBuffer[powerMeterID], 37136) / 1,      {name: "", unit: "W"});
                                  //ForceSetState("Solarpower.Huawei.Meter.MeterModel",                 GetU16(globalDataBuffer[powerMeterID], 37138),          {name: "", unit: ""});
                              }
                              
                              function ProcessInverterStatus(id) {
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".State1",                   GetU16(globalDataBuffer[id-1], 32000),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".State2",                   GetU16(globalDataBuffer[id-1], 32002),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".State3",                   GetU32(globalDataBuffer[id-1], 32003),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm1",                   GetU16(globalDataBuffer[id-1], 32008),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm2",                   GetU16(globalDataBuffer[id-1], 32009),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm3",                   GetU16(globalDataBuffer[id-1], 32010),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Voltage",         GetI16(globalDataBuffer[id-1], 32016) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Current",         GetI16(globalDataBuffer[id-1], 32017) / 100,    {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Voltage",         GetI16(globalDataBuffer[id-1], 32018) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Current",         GetI16(globalDataBuffer[id-1], 32019) / 100,    {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Voltage",         GetI16(globalDataBuffer[id-1], 32020) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Current",         GetI16(globalDataBuffer[id-1], 32021) / 100,    {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Voltage",         GetI16(globalDataBuffer[id-1], 32022) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Current",         GetI16(globalDataBuffer[id-1], 32023) / 100,    {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".InputPower",               GetI32(globalDataBuffer[id-1], 32064) / 1000,   {name: "", unit: "kW"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1-L2_Voltage",       GetU16(globalDataBuffer[id-1], 32066) / 10,     {name: "", unit: "V"});      
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2-L3_Voltage",       GetU16(globalDataBuffer[id-1], 32067) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3-L1_Voltage",       GetU16(globalDataBuffer[id-1], 32068) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Voltage",          GetU16(globalDataBuffer[id-1], 32069) / 10,     {name: "", unit: "V"});                              
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Voltage",          GetU16(globalDataBuffer[id-1], 32070) / 10,     {name: "", unit: "V"});                                                  
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Voltage",          GetU16(globalDataBuffer[id-1], 32071) / 10,     {name: "", unit: "V"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Current",          GetI32(globalDataBuffer[id-1], 32072) / 1000,   {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Current",          GetI32(globalDataBuffer[id-1], 32074) / 1000,   {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Current",          GetI32(globalDataBuffer[id-1], 32076) / 1000,   {name: "", unit: "A"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".PeakActivePowerDay",       GetI32(globalDataBuffer[id-1], 32078) / 1000,   {name: "", unit: "kW"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".ActivePower",              GetI32(globalDataBuffer[id-1], 32080) / 1000,   {name: "", unit: "kW"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".ReactivePower",            GetI32(globalDataBuffer[id-1], 32082) / 1000,   {name: "", unit: "kVar"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".PowerFactor",              GetI16(globalDataBuffer[id-1], 32084) / 1000,   {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".GridFrequency",            GetU16(globalDataBuffer[id-1], 32085) / 100,    {name: "", unit: "Hz"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".Efficiency",               GetU16(globalDataBuffer[id-1], 32086) / 100,    {name: "", unit: "%"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".InternalTemperature",      GetI16(globalDataBuffer[id-1], 32087) / 10,     {name: "", unit: "°C"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".InsulationResistance",     GetU16(globalDataBuffer[id-1], 32088) / 1000,   {name: "", unit: "MOhm"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".DeviceStatus",             GetU16(globalDataBuffer[id-1], 32089),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".FaultCode",                GetU16(globalDataBuffer[id-1], 32090),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".StartupTime",              String(new Date(GetU32(globalDataBuffer[id-1], 32091)*1000)),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".ShutdownTime",             String(new Date(GetU32(globalDataBuffer[id-1], 32093)*1000)),          {name: "", unit: ""});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".AccomulatedEnergyYield",   GetU32(globalDataBuffer[id-1], 32106),          {name: "", unit: "kWh"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".DailyEnergyYield",         GetU32(globalDataBuffer[id-1], 32114),          {name: "", unit: "kWh"});
                              }
                              
                              function ReadRegisterSpace(id, address, length) {
                                  client.setID(modbusID[id-1]);
                                  client.readHoldingRegisters(address, length, function(err, data) {
                                      if (err) {
                                          console.warn("Error received reading address " + address + " from id: " + modbusID[id-1] + " with error: " + modbusErrorMessages[err.modbusCode]); 
                                      }
                                      else
                                      {   
                                          console.debug("Read data from id/address " + modbusID[id-1] + "/" + address + "\nData is: " + data.data);
                                          for(var i = 0; i < length; i++)  {
                                              globalDataBuffer[id-1][address+i] = data.data[i];
                                          } 
                                      }
                                  });
                              }
                              
                              function ProcessData() {
                                  //console.log("Processing new data...");
                                  for(var i = 1; i <= modbusID.length; i++) {
                                      //ProcessDeviceInfo(i);
                                      ProcessInverterStatus(i);
                                      //processBattery(i);
                                      //processInverterPowerAdjustments(i);
                                      //processOptimizers(i); 
                                  }    
                                  ProcessPowerMeterStatus();
                                  //console.log("Processing done!");
                              }
                              
                              
                              // -------------------------------------------------------------------
                              // This is the main function triggering a  read via modbus-tcp every two seconds.
                              // Processing of data is triggered as soon as one complete set of registers is copied.
                              var triggerprocessing = 0; 
                              var currentinverter = 1;
                              
                              
                              setInterval(function() {
                                      if (!client.isOpen){
                                          ConnectModbus();
                                      }
                                      if(triggerprocessing == 1) {
                                      triggerprocessing = 0;
                                      ProcessData();        
                                      }      
                                 
                                  //console.log("Triggering read of inverter " + currentinverter + " at address " + registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0] + " with length " +  registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]);
                                  ReadRegisterSpace(currentinverter, registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0], registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]); 
                                  registerSpacesToReadContinuouslyPtr++;               
                                  if(registerSpacesToReadContinuouslyPtr >= registerSpacesToReadContinuously.length) {
                                      registerSpacesToReadContinuouslyPtr = 0;
                                      currentinverter++
                                      if(currentinverter > modbusID.length){
                                          currentinverter = 1;  
                                          triggerprocessing = 1;                    
                                      }
                                  }     
                              }, 3000);
                              

                              Super Danke.
                              Hab eh keine Batterie. Werde es gleich testen.
                              Gruß Jürgen

                              Guten Morgen soweit läuft es mal, aber kann es sein, dass bei
                              Solarpower Huawei Inverter 1 AccomulatedEnergyYield und
                              Solarpower.Huawei.Inverter.1.DailyEnergyYield
                              das Komma fehlt, denn der Tägliche Ertrag wäre schön aber nicht war :-)
                              kann man das irgend wie ändern?

                              Diese Werte habe ich mir noch gar nicht angeschaut. Hier fehlt im Script (Zeilen 193 und 194) tatsächlich der Multiplikator.

                              ForceSetState("Solarpower.Huawei.Inverter." + id + ".AccomulatedEnergyYield",   GetU32(globalDataBuffer[id-1], 32106) / 100,          {name: "", unit: "kWh"});
                                  ForceSetState("Solarpower.Huawei.Inverter." + id + ".DailyEnergyYield",         GetU32(globalDataBuffer[id-1], 32114) / 100,          {name: "", unit: "kWh"});
                              

                              Zu deinem Hauptproblem: Ich bin mir aktuell nicht ganz sicher, ob die Wiederverbindung im Script korrekt funktioniert. Ich habe bisher nur das Netzwerkkabel des ioBrokers für 10 Sekunden gezogen und das machte ihm nichts aus. Aber die Meldung, die bei einer neuen Verbindung geloggt werden sollten, kamen nicht. Daher kann es gut sein, dass client.isOpen vielleicht gar nicht so funktioniert wie erhofft.

                              J 1 Antwort Letzte Antwort
                              0
                              • Alex WarkentinA Alex Warkentin

                                @juggi1962 said in Huawei Sun2000 & ioBroker via JS script funktioniert:

                                @juggi1962 sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

                                @alex-warkentin sagte in Huawei Sun2000 & ioBroker via JS script funktioniert:

                                @juggi1962 Poste mal die Logs, wenn der Fehler auftritt

                                Hier ist das Script, was ich für mich angepasst habe. Achtung! Ich habe die Batterie und andere für mich uninteressante Sachen rausgeschmissen und die Namen von Variablen und Funktionen angepasst. Für die Neuverbindung nach Verbindungsabbruch brauchst du die Zeilen 18 - 27 , 107-122 und 235 -237

                                // License: Beerware! Do what ever you like with this, but I'm not liable for anything that you do with it.
                                // If you like this code, feel free to buy me a beer ...
                                // Have fun with it! der Kachel
                                // @ts-ignore
                                var modbusRTU = require("modbus-serial");
                                var client = new modbusRTU();
                                
                                var modbusErrorMessages = [
                                    "Unknown error",
                                    "Illegal function (device does not support this read/write function)",
                                    "Illegal data address (register not supported by device)",
                                    "Illegal data value (value cannot be written to this register)",
                                    "Slave device failure (device reports internal error)",
                                    "Acknowledge (requested data will be available later)",
                                    "Slave device busy (retry request again later)"
                                ];
                                
                                // Enter your inverter modbus IP and port here:
                                const modbusHost = "000.000.000.000";
                                const modbusPort = 502;
                                // Enter the Modbus-IDs of your Sun2000 inverters here:
                                const modbusID = [1];
                                // On which Modbus-ID can we reach the power meter? (via Sun2000!)
                                const powerMeterID = 0;
                                
                                // Connect to modbus client
                                ConnectModbus();
                                
                                // These register spaces need to be read:
                                const registerSpacesToReadContinuously = [[37100, 114], [32000, 116]];
                                var registerSpacesToReadContinuouslyPtr = 0;
                                
                                var globalDataBuffer = new Array(1);
                                globalDataBuffer[0] = new Array(50000); // not optimized....
                                
                                // ---------------------------------------------------------------
                                // Some helper functions:
                                function ReadUnsignedInt16(array) {
                                    var value = array[0];    
                                    return value;
                                }
                                
                                function ReadUnsignedInt32(array) {
                                    var value = array[0] * 256 * 256 + array[1];    
                                    return value;
                                }
                                
                                function ReadSignedInt16(array) {
                                    var value = 0;
                                    if (array[0] > 32767)
                                        value = array[0] - 65535; 
                                    else
                                        value = array[0];
                                
                                    return value;
                                }
                                function ReadSignedInt32(array) {
                                    var value = 0;
                                    for (var i = 0; i < 2; i++) {
                                        value = (value << 16) | array[i];
                                    }
                                    return value;
                                }
                                function GetU16(dataarray, index) {
                                    var value = ReadUnsignedInt16(dataarray.slice(index, index+1));
                                    return value;
                                }
                                
                                function GetU32(dataarray, index) {
                                    var value = ReadUnsignedInt32(dataarray.slice(index, index+2));
                                    return value;
                                }
                                
                                function GetI16(dataarray, index) {
                                    var value = ReadSignedInt16(dataarray.slice(index, index+1));
                                    return value;
                                }
                                
                                function GetI32(dataarray, index) {
                                    var value = ReadSignedInt32(dataarray.slice(index, index+2));
                                    return value;
                                }
                                
                                function GetString(dataarray, index, length) {
                                    var shortarray = dataarray.slice(index, index+length);
                                    var bytearray = [];
                                    for(var i = 0; i < length; i++) {
                                        bytearray.push(dataarray[index+i] >> 8);
                                        bytearray.push(dataarray[index+i] & 0xff);
                                    }       
                                    var value =  String.fromCharCode.apply(null, bytearray);    
                                    return value;
                                }
                                
                                function GetZeroTerminatedString(dataarray, index, length) {
                                    var shortarray = dataarray.slice(index, index+length);
                                    var bytearray = [];
                                    for(var i = 0; i < length; i++) {
                                        bytearray.push(dataarray[index+i] >> 8);
                                        bytearray.push(dataarray[index+i] & 0xff);
                                    }       
                                    var value =  String.fromCharCode.apply(null, bytearray);    
                                    var value2 = new String(value).trim();
                                    return value2;
                                }
                                
                                // Funktion zum Herstellen einer Modbus-Verbindung
                                function ConnectModbus() {
                                    console.log("Init connection to: " + modbusHost +":" + modbusPort);
                                    // set requests parameters
                                    client.setTimeout (10000);
                                    // try to connect
                                    client.connectTCP (modbusHost, { port: modbusPort })
                                        .then(function()
                                        {
                                            console.log("Connected, wait for reading...");
                                        })
                                        .catch(function(e)
                                        {
                                            console.log(e);
                                        });
                                }
                                
                                // Funktion zum Anlegen und Beschreiben eines Datenpunkts
                                function ForceSetState(objectname, value, options) {
                                    if(!existsState("javascript.0." + objectname))      createState(objectname, value, options);
                                    else                                                setState(objectname, value);
                                }  
                                // ---------------------------------------------------------------
                                // Functions to map registers into ioBreaker objects:
                                function ProcessPowerMeterStatus() {       
                                    ForceSetState("Solarpower.Huawei.Meter.Status",                     GetU16(globalDataBuffer[powerMeterID], 37100),          {name: "", unit: ""});
                                    ForceSetState("Solarpower.Huawei.Meter.VoltageL1",                  GetI32(globalDataBuffer[powerMeterID], 37101) / 10,     {name: "", unit: "V"});
                                    ForceSetState("Solarpower.Huawei.Meter.VoltageL2",                  GetI32(globalDataBuffer[powerMeterID], 37103) / 10,     {name: "", unit: "V"});
                                    ForceSetState("Solarpower.Huawei.Meter.VoltageL3",                  GetI32(globalDataBuffer[powerMeterID], 37105) / 10,     {name: "", unit: "V"});
                                    ForceSetState("Solarpower.Huawei.Meter.CurrentL1",                  GetI32(globalDataBuffer[powerMeterID], 37107) / 100,    {name: "", unit: "A"});
                                    ForceSetState("Solarpower.Huawei.Meter.CurrentL2",                  GetI32(globalDataBuffer[powerMeterID], 37109) / 100,    {name: "", unit: "A"});
                                    ForceSetState("Solarpower.Huawei.Meter.CurrentL3",                  GetI32(globalDataBuffer[powerMeterID], 37111) / 100,    {name: "", unit: "A"});
                                    ForceSetState("Solarpower.Huawei.Meter.ActivePower",                GetI32(globalDataBuffer[powerMeterID], 37113) / 1,      {name: "", unit: "W"});
                                    ForceSetState("Solarpower.Huawei.Meter.ReactivePower",              GetI32(globalDataBuffer[powerMeterID], 37115) / 1,      {name: "", unit: "Var"});
                                    ForceSetState("Solarpower.Huawei.Meter.PowerFactor",                GetI16(globalDataBuffer[powerMeterID], 37117) / 1000,   {name: "", unit: ""});
                                    ForceSetState("Solarpower.Huawei.Meter.GridFrequency",              GetI16(globalDataBuffer[powerMeterID], 37118) / 100,    {name: "", unit: "Hz"});
                                    ForceSetState("Solarpower.Huawei.Meter.PositiveActiveEnergy",       GetI32(globalDataBuffer[powerMeterID], 37119) / 100,    {name: "", unit: "kWh"});
                                    ForceSetState("Solarpower.Huawei.Meter.ReverseActiveEnergy",        GetI32(globalDataBuffer[powerMeterID], 37121) / 100,    {name: "", unit: "kWh"});
                                    ForceSetState("Solarpower.Huawei.Meter.AccumulatedReactivePower",   GetI32(globalDataBuffer[powerMeterID], 37123) / 100,    {name: "", unit: "kVarh"});
                                    //ForceSetState("Solarpower.Huawei.Meter.MeterType",                  GetU16(globalDataBuffer[powerMeterID], 37125),          {name: "", unit: ""});
                                    ForceSetState("Solarpower.Huawei.Meter.VoltageL1-L2",               GetI32(globalDataBuffer[powerMeterID], 37126) / 10,     {name: "", unit: "V"});
                                    ForceSetState("Solarpower.Huawei.Meter.VoltageL2-L3",               GetI32(globalDataBuffer[powerMeterID], 37128) / 10,     {name: "", unit: "V"});
                                    ForceSetState("Solarpower.Huawei.Meter.VoltageL3-L1",               GetI32(globalDataBuffer[powerMeterID], 37130) / 10,     {name: "", unit: "V"});
                                    ForceSetState("Solarpower.Huawei.Meter.ActivePowerL1",              GetI32(globalDataBuffer[powerMeterID], 37132) / 1,      {name: "", unit: "W"});
                                    ForceSetState("Solarpower.Huawei.Meter.ActivePowerL2",              GetI32(globalDataBuffer[powerMeterID], 37134) / 1,      {name: "", unit: "W"});
                                    ForceSetState("Solarpower.Huawei.Meter.ActivePowerL3",              GetI32(globalDataBuffer[powerMeterID], 37136) / 1,      {name: "", unit: "W"});
                                    //ForceSetState("Solarpower.Huawei.Meter.MeterModel",                 GetU16(globalDataBuffer[powerMeterID], 37138),          {name: "", unit: ""});
                                }
                                
                                function ProcessInverterStatus(id) {
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".State1",                   GetU16(globalDataBuffer[id-1], 32000),          {name: "", unit: ""});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".State2",                   GetU16(globalDataBuffer[id-1], 32002),          {name: "", unit: ""});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".State3",                   GetU32(globalDataBuffer[id-1], 32003),          {name: "", unit: ""});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm1",                   GetU16(globalDataBuffer[id-1], 32008),          {name: "", unit: ""});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm2",                   GetU16(globalDataBuffer[id-1], 32009),          {name: "", unit: ""});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".Alarm3",                   GetU16(globalDataBuffer[id-1], 32010),          {name: "", unit: ""});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Voltage",         GetI16(globalDataBuffer[id-1], 32016) / 10,     {name: "", unit: "V"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.1_Current",         GetI16(globalDataBuffer[id-1], 32017) / 100,    {name: "", unit: "A"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Voltage",         GetI16(globalDataBuffer[id-1], 32018) / 10,     {name: "", unit: "V"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.2_Current",         GetI16(globalDataBuffer[id-1], 32019) / 100,    {name: "", unit: "A"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Voltage",         GetI16(globalDataBuffer[id-1], 32020) / 10,     {name: "", unit: "V"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.3_Current",         GetI16(globalDataBuffer[id-1], 32021) / 100,    {name: "", unit: "A"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Voltage",         GetI16(globalDataBuffer[id-1], 32022) / 10,     {name: "", unit: "V"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".String.4_Current",         GetI16(globalDataBuffer[id-1], 32023) / 100,    {name: "", unit: "A"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".InputPower",               GetI32(globalDataBuffer[id-1], 32064) / 1000,   {name: "", unit: "kW"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1-L2_Voltage",       GetU16(globalDataBuffer[id-1], 32066) / 10,     {name: "", unit: "V"});      
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2-L3_Voltage",       GetU16(globalDataBuffer[id-1], 32067) / 10,     {name: "", unit: "V"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3-L1_Voltage",       GetU16(globalDataBuffer[id-1], 32068) / 10,     {name: "", unit: "V"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Voltage",          GetU16(globalDataBuffer[id-1], 32069) / 10,     {name: "", unit: "V"});                              
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Voltage",          GetU16(globalDataBuffer[id-1], 32070) / 10,     {name: "", unit: "V"});                                                  
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Voltage",          GetU16(globalDataBuffer[id-1], 32071) / 10,     {name: "", unit: "V"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L1_Current",          GetI32(globalDataBuffer[id-1], 32072) / 1000,   {name: "", unit: "A"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L2_Current",          GetI32(globalDataBuffer[id-1], 32074) / 1000,   {name: "", unit: "A"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".Grid.L3_Current",          GetI32(globalDataBuffer[id-1], 32076) / 1000,   {name: "", unit: "A"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".PeakActivePowerDay",       GetI32(globalDataBuffer[id-1], 32078) / 1000,   {name: "", unit: "kW"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".ActivePower",              GetI32(globalDataBuffer[id-1], 32080) / 1000,   {name: "", unit: "kW"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".ReactivePower",            GetI32(globalDataBuffer[id-1], 32082) / 1000,   {name: "", unit: "kVar"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".PowerFactor",              GetI16(globalDataBuffer[id-1], 32084) / 1000,   {name: "", unit: ""});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".GridFrequency",            GetU16(globalDataBuffer[id-1], 32085) / 100,    {name: "", unit: "Hz"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".Efficiency",               GetU16(globalDataBuffer[id-1], 32086) / 100,    {name: "", unit: "%"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".InternalTemperature",      GetI16(globalDataBuffer[id-1], 32087) / 10,     {name: "", unit: "°C"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".InsulationResistance",     GetU16(globalDataBuffer[id-1], 32088) / 1000,   {name: "", unit: "MOhm"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".DeviceStatus",             GetU16(globalDataBuffer[id-1], 32089),          {name: "", unit: ""});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".FaultCode",                GetU16(globalDataBuffer[id-1], 32090),          {name: "", unit: ""});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".StartupTime",              String(new Date(GetU32(globalDataBuffer[id-1], 32091)*1000)),          {name: "", unit: ""});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".ShutdownTime",             String(new Date(GetU32(globalDataBuffer[id-1], 32093)*1000)),          {name: "", unit: ""});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".AccomulatedEnergyYield",   GetU32(globalDataBuffer[id-1], 32106),          {name: "", unit: "kWh"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".DailyEnergyYield",         GetU32(globalDataBuffer[id-1], 32114),          {name: "", unit: "kWh"});
                                }
                                
                                function ReadRegisterSpace(id, address, length) {
                                    client.setID(modbusID[id-1]);
                                    client.readHoldingRegisters(address, length, function(err, data) {
                                        if (err) {
                                            console.warn("Error received reading address " + address + " from id: " + modbusID[id-1] + " with error: " + modbusErrorMessages[err.modbusCode]); 
                                        }
                                        else
                                        {   
                                            console.debug("Read data from id/address " + modbusID[id-1] + "/" + address + "\nData is: " + data.data);
                                            for(var i = 0; i < length; i++)  {
                                                globalDataBuffer[id-1][address+i] = data.data[i];
                                            } 
                                        }
                                    });
                                }
                                
                                function ProcessData() {
                                    //console.log("Processing new data...");
                                    for(var i = 1; i <= modbusID.length; i++) {
                                        //ProcessDeviceInfo(i);
                                        ProcessInverterStatus(i);
                                        //processBattery(i);
                                        //processInverterPowerAdjustments(i);
                                        //processOptimizers(i); 
                                    }    
                                    ProcessPowerMeterStatus();
                                    //console.log("Processing done!");
                                }
                                
                                
                                // -------------------------------------------------------------------
                                // This is the main function triggering a  read via modbus-tcp every two seconds.
                                // Processing of data is triggered as soon as one complete set of registers is copied.
                                var triggerprocessing = 0; 
                                var currentinverter = 1;
                                
                                
                                setInterval(function() {
                                        if (!client.isOpen){
                                            ConnectModbus();
                                        }
                                        if(triggerprocessing == 1) {
                                        triggerprocessing = 0;
                                        ProcessData();        
                                        }      
                                   
                                    //console.log("Triggering read of inverter " + currentinverter + " at address " + registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0] + " with length " +  registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]);
                                    ReadRegisterSpace(currentinverter, registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0], registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]); 
                                    registerSpacesToReadContinuouslyPtr++;               
                                    if(registerSpacesToReadContinuouslyPtr >= registerSpacesToReadContinuously.length) {
                                        registerSpacesToReadContinuouslyPtr = 0;
                                        currentinverter++
                                        if(currentinverter > modbusID.length){
                                            currentinverter = 1;  
                                            triggerprocessing = 1;                    
                                        }
                                    }     
                                }, 3000);
                                

                                Super Danke.
                                Hab eh keine Batterie. Werde es gleich testen.
                                Gruß Jürgen

                                Guten Morgen soweit läuft es mal, aber kann es sein, dass bei
                                Solarpower Huawei Inverter 1 AccomulatedEnergyYield und
                                Solarpower.Huawei.Inverter.1.DailyEnergyYield
                                das Komma fehlt, denn der Tägliche Ertrag wäre schön aber nicht war :-)
                                kann man das irgend wie ändern?

                                Diese Werte habe ich mir noch gar nicht angeschaut. Hier fehlt im Script (Zeilen 193 und 194) tatsächlich der Multiplikator.

                                ForceSetState("Solarpower.Huawei.Inverter." + id + ".AccomulatedEnergyYield",   GetU32(globalDataBuffer[id-1], 32106) / 100,          {name: "", unit: "kWh"});
                                    ForceSetState("Solarpower.Huawei.Inverter." + id + ".DailyEnergyYield",         GetU32(globalDataBuffer[id-1], 32114) / 100,          {name: "", unit: "kWh"});
                                

                                Zu deinem Hauptproblem: Ich bin mir aktuell nicht ganz sicher, ob die Wiederverbindung im Script korrekt funktioniert. Ich habe bisher nur das Netzwerkkabel des ioBrokers für 10 Sekunden gezogen und das machte ihm nichts aus. Aber die Meldung, die bei einer neuen Verbindung geloggt werden sollten, kamen nicht. Daher kann es gut sein, dass client.isOpen vielleicht gar nicht so funktioniert wie erhofft.

                                J Offline
                                J Offline
                                juggi1962
                                schrieb am zuletzt editiert von
                                #71

                                @alex-warkentin
                                Danke für deine Bemühungen und für die Richtigstellung der Multiplikatoren :+1:
                                Kannst du das mit dem client.isOpen vielleicht testen und verbessern, das wäre echt super.
                                Ich kenne mich leider mit JS gar nicht aus.
                                Danke im Voraus, Gruß Jürgen

                                Alex WarkentinA 2 Antworten Letzte Antwort
                                0
                                • J juggi1962

                                  @alex-warkentin
                                  Danke für deine Bemühungen und für die Richtigstellung der Multiplikatoren :+1:
                                  Kannst du das mit dem client.isOpen vielleicht testen und verbessern, das wäre echt super.
                                  Ich kenne mich leider mit JS gar nicht aus.
                                  Danke im Voraus, Gruß Jürgen

                                  Alex WarkentinA Offline
                                  Alex WarkentinA Offline
                                  Alex Warkentin
                                  schrieb am zuletzt editiert von
                                  #72

                                  @juggi1962
                                  Ich bin aktuell beruflich ziemlich eingespannt, aber mich interessiert das auch. Ich werde das bei Gelegenheit mal genauer anschauen.

                                  1 Antwort Letzte Antwort
                                  0
                                  • J juggi1962

                                    @alex-warkentin
                                    Danke für deine Bemühungen und für die Richtigstellung der Multiplikatoren :+1:
                                    Kannst du das mit dem client.isOpen vielleicht testen und verbessern, das wäre echt super.
                                    Ich kenne mich leider mit JS gar nicht aus.
                                    Danke im Voraus, Gruß Jürgen

                                    Alex WarkentinA Offline
                                    Alex WarkentinA Offline
                                    Alex Warkentin
                                    schrieb am zuletzt editiert von
                                    #73

                                    @juggi1962 said in Huawei Sun2000 & ioBroker via JS script funktioniert:

                                    @alex-warkentin
                                    Danke für deine Bemühungen und für die Richtigstellung der Multiplikatoren :+1:
                                    Kannst du das mit dem client.isOpen vielleicht testen und verbessern, das wäre echt super.
                                    Ich kenne mich leider mit JS gar nicht aus.
                                    Danke im Voraus, Gruß Jürgen

                                    isOpen soll laut Doku eigentlich ein Funktion an. Wird aber als solche nicht zur Verfügung gestellt und ist sonst auch immer true. Probiere bitte dein Script mit folgendem Snippet ab Zeile 197 zu überschreiben. Nun frage ich den ErrorCode nach null ab und reconnecte dann.

                                    function ReadRegisterSpace(id, address, length) {
                                        client.setID(modbusID[id-1]);
                                        client.readHoldingRegisters(address, length, function(err, data) {
                                            if (err) {
                                                if (err.modbusCode == null) {
                                                    console.warn("Lost connection to client. Trying to reconnect...");
                                                    ConnectModbus();
                                                } 
                                                else console.warn("Error received reading address " + address + " from id: " + modbusID[id-1] + " with error: " + modbusErrorMessages[err.modbusCode]); 
                                            }
                                            else
                                            {   
                                                console.debug("Read data from id/address " + modbusID[id-1] + "/" + address + "\nData is: " + data.data);
                                                for(var i = 0; i < length; i++)  {
                                                    globalDataBuffer[id-1][address+i] = data.data[i];
                                                } 
                                            }
                                        });
                                    }
                                    
                                    function ProcessData() {
                                        //console.log("Processing new data...");
                                        for(var i = 1; i <= modbusID.length; i++) {
                                            ProcessInverterStatus(i);
                                        }    
                                        ProcessPowerMeterStatus();
                                        //console.log("Processing done!");
                                    }
                                    
                                    
                                    // -------------------------------------------------------------------
                                    // This is the main function triggering a  read via modbus-tcp every two seconds.
                                    // Processing of data is triggered as soon as one complete set of registers is copied.
                                    var triggerprocessing = 0; 
                                    var currentinverter = 1;
                                    
                                    
                                    setInterval(function() {
                                        if(triggerprocessing == 1) {
                                            triggerprocessing = 0;
                                            ProcessData();        
                                        }      
                                       
                                        //console.log("Triggering read of inverter " + currentinverter + " at address " + registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0] + " with length " +  registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]);
                                        ReadRegisterSpace(currentinverter, registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0], registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]); 
                                        registerSpacesToReadContinuouslyPtr++;               
                                        if(registerSpacesToReadContinuouslyPtr >= registerSpacesToReadContinuously.length) {
                                            registerSpacesToReadContinuouslyPtr = 0;
                                            currentinverter++
                                            if(currentinverter > modbusID.length){
                                                currentinverter = 1;  
                                                triggerprocessing = 1;                    
                                            }
                                        }     
                                    }, 3000);
                                    

                                    Du solltest aber trotzdem versuchen zu ergründen, warum die ständigen Verbindungsabbrüche kommen. Falls möglich vielleicht das Ethernet-Kabel tauschen.

                                    J 1 Antwort Letzte Antwort
                                    0
                                    • Alex WarkentinA Alex Warkentin

                                      @juggi1962 said in Huawei Sun2000 & ioBroker via JS script funktioniert:

                                      @alex-warkentin
                                      Danke für deine Bemühungen und für die Richtigstellung der Multiplikatoren :+1:
                                      Kannst du das mit dem client.isOpen vielleicht testen und verbessern, das wäre echt super.
                                      Ich kenne mich leider mit JS gar nicht aus.
                                      Danke im Voraus, Gruß Jürgen

                                      isOpen soll laut Doku eigentlich ein Funktion an. Wird aber als solche nicht zur Verfügung gestellt und ist sonst auch immer true. Probiere bitte dein Script mit folgendem Snippet ab Zeile 197 zu überschreiben. Nun frage ich den ErrorCode nach null ab und reconnecte dann.

                                      function ReadRegisterSpace(id, address, length) {
                                          client.setID(modbusID[id-1]);
                                          client.readHoldingRegisters(address, length, function(err, data) {
                                              if (err) {
                                                  if (err.modbusCode == null) {
                                                      console.warn("Lost connection to client. Trying to reconnect...");
                                                      ConnectModbus();
                                                  } 
                                                  else console.warn("Error received reading address " + address + " from id: " + modbusID[id-1] + " with error: " + modbusErrorMessages[err.modbusCode]); 
                                              }
                                              else
                                              {   
                                                  console.debug("Read data from id/address " + modbusID[id-1] + "/" + address + "\nData is: " + data.data);
                                                  for(var i = 0; i < length; i++)  {
                                                      globalDataBuffer[id-1][address+i] = data.data[i];
                                                  } 
                                              }
                                          });
                                      }
                                      
                                      function ProcessData() {
                                          //console.log("Processing new data...");
                                          for(var i = 1; i <= modbusID.length; i++) {
                                              ProcessInverterStatus(i);
                                          }    
                                          ProcessPowerMeterStatus();
                                          //console.log("Processing done!");
                                      }
                                      
                                      
                                      // -------------------------------------------------------------------
                                      // This is the main function triggering a  read via modbus-tcp every two seconds.
                                      // Processing of data is triggered as soon as one complete set of registers is copied.
                                      var triggerprocessing = 0; 
                                      var currentinverter = 1;
                                      
                                      
                                      setInterval(function() {
                                          if(triggerprocessing == 1) {
                                              triggerprocessing = 0;
                                              ProcessData();        
                                          }      
                                         
                                          //console.log("Triggering read of inverter " + currentinverter + " at address " + registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0] + " with length " +  registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]);
                                          ReadRegisterSpace(currentinverter, registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][0], registerSpacesToReadContinuously[registerSpacesToReadContinuouslyPtr][1]); 
                                          registerSpacesToReadContinuouslyPtr++;               
                                          if(registerSpacesToReadContinuouslyPtr >= registerSpacesToReadContinuously.length) {
                                              registerSpacesToReadContinuouslyPtr = 0;
                                              currentinverter++
                                              if(currentinverter > modbusID.length){
                                                  currentinverter = 1;  
                                                  triggerprocessing = 1;                    
                                              }
                                          }     
                                      }, 3000);
                                      

                                      Du solltest aber trotzdem versuchen zu ergründen, warum die ständigen Verbindungsabbrüche kommen. Falls möglich vielleicht das Ethernet-Kabel tauschen.

                                      J Offline
                                      J Offline
                                      juggi1962
                                      schrieb am zuletzt editiert von
                                      #74

                                      @alex-warkentin
                                      Hallo und noch mal danke für deine Bemühungen.
                                      Leider gibt es immer noch die selben Fehlermeldungen, bis jetzt immer mal einzelne,
                                      mal schauen ob es wieder dauerhaft wird.
                                      Ich habe jetzt für eine Stunde einen Ping laufen lassen und hatte beim Ping keine Abbrüche aber im Skript 10 Fehler.
                                      Lankabel wurde vorher gegen ein neues getauscht.
                                      Hmmmmm komisch :disappointed:

                                      Alex WarkentinA 1 Antwort Letzte Antwort
                                      0
                                      • J juggi1962

                                        @alex-warkentin
                                        Hallo und noch mal danke für deine Bemühungen.
                                        Leider gibt es immer noch die selben Fehlermeldungen, bis jetzt immer mal einzelne,
                                        mal schauen ob es wieder dauerhaft wird.
                                        Ich habe jetzt für eine Stunde einen Ping laufen lassen und hatte beim Ping keine Abbrüche aber im Skript 10 Fehler.
                                        Lankabel wurde vorher gegen ein neues getauscht.
                                        Hmmmmm komisch :disappointed:

                                        Alex WarkentinA Offline
                                        Alex WarkentinA Offline
                                        Alex Warkentin
                                        schrieb am zuletzt editiert von
                                        #75

                                        @juggi1962 said in Huawei Sun2000 & ioBroker via JS script funktioniert:

                                        @alex-warkentin
                                        Hallo und noch mal danke für deine Bemühungen.
                                        Leider gibt es immer noch die selben Fehlermeldungen, bis jetzt immer mal einzelne,
                                        mal schauen ob es wieder dauerhaft wird.
                                        Ich habe jetzt für eine Stunde einen Ping laufen lassen und hatte beim Ping keine Abbrüche aber im Skript 10 Fehler.
                                        Lankabel wurde vorher gegen ein neues getauscht.
                                        Hmmmmm komisch :disappointed:

                                        Naja, jetzt müsste die Fehlermeldung "Lost connection...." lauten. Und danach die Verbindung neu aufgebaut werden. Dann funktioniert das Script erwartungsgemäß.

                                        Wie ist es denn mit deiner ioBroker Hardware? Kann es sein, dass hier die Abbrüche stattfinden?

                                        J 1 Antwort Letzte Antwort
                                        0
                                        • Alex WarkentinA Alex Warkentin

                                          @juggi1962 said in Huawei Sun2000 & ioBroker via JS script funktioniert:

                                          @alex-warkentin
                                          Hallo und noch mal danke für deine Bemühungen.
                                          Leider gibt es immer noch die selben Fehlermeldungen, bis jetzt immer mal einzelne,
                                          mal schauen ob es wieder dauerhaft wird.
                                          Ich habe jetzt für eine Stunde einen Ping laufen lassen und hatte beim Ping keine Abbrüche aber im Skript 10 Fehler.
                                          Lankabel wurde vorher gegen ein neues getauscht.
                                          Hmmmmm komisch :disappointed:

                                          Naja, jetzt müsste die Fehlermeldung "Lost connection...." lauten. Und danach die Verbindung neu aufgebaut werden. Dann funktioniert das Script erwartungsgemäß.

                                          Wie ist es denn mit deiner ioBroker Hardware? Kann es sein, dass hier die Abbrüche stattfinden?

                                          J Offline
                                          J Offline
                                          juggi1962
                                          schrieb am zuletzt editiert von
                                          #76

                                          @alex-warkentin
                                          Die Fehlermeldung Lost connection... kommt nur wenn ich das LAN Kabel ziehe.
                                          Mein Raspberry und IoBroker laufen ohne Aussetzer.
                                          Diese Fehlermeldungen auch mit 32000 kommen immer mal wieder, hören aber dazwischen wieder auf.
                                          Gruß Jürgen.

                                          Error received reading address 37100 from id: 1 with error: undefined
                                          
                                          Alex WarkentinA 1 Antwort Letzte Antwort
                                          0
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