Introduce CombinedStatus
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@ -1,51 +1,53 @@
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using InnovEnergy.Lib.Devices.Battery48TL;
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using InnovEnergy.Lib.StatusApi;
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using InnovEnergy.Lib.Units;
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using InnovEnergy.Lib.Units.Composite;
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using static InnovEnergy.Lib.Devices.Battery48TL.TemperatureState;
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namespace InnovEnergy.App.SaliMax.Controller;
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public class AvgBatteriesStatus
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public static class AvgBatteriesStatus
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{
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public Decimal Soc { get; set; }
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public Decimal Current { get; set; }
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public Decimal Voltage { get; set; }
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public Decimal Power { get; set; }
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public Decimal BusVoltage { get; set; }
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public Decimal BatteryTemperature { get; set; }
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public IReadOnlyList<String> Warnings { get; set; }
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public IReadOnlyList<String> Alarms { get; set; }
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public Boolean HeaterOn { get; set; }
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public Boolean EocReached { get; set; }
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public Boolean BatteryCold { get; set; }
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public Decimal MaxChargingPower { get; set; }
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public Decimal MaxDischargingPower { get; set; }
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public static AvgBatteriesStatus ReadBatteriesStatus(IReadOnlyList<Battery48TLStatus> batteriesStatus)
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public static CombinedStatus<Battery48TLStatus>? Combine(this IReadOnlyList<Battery48TLStatus> stati)
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{
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var soc = batteriesStatus.Any() ? batteriesStatus.Average(b => b.Soc) : 0;
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var current = batteriesStatus.Select(b => b.Dc.Current).Aggregate(0m,(a, b) => a + b);
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var voltage = batteriesStatus.Any() ? batteriesStatus.Average(b => b.Dc.Voltage) : 0;
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var power = batteriesStatus.Select(b => b.Dc.Power).Aggregate(0m,(a, b) => a + b);
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var busVoltage = batteriesStatus.Any() ? batteriesStatus.Average(b => b.BusVoltage): 0;
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var batteryTemperature = batteriesStatus.Any() ? batteriesStatus.Average(b => b.Temperature): 0;
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var heaterOn = batteriesStatus.Any() && batteriesStatus.Select(b => b.HeaterOn).Aggregate((a, b) => a | b);
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var eocReached = batteriesStatus.All(b => b.EocReached);
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var batteryCold = batteriesStatus.Any(b => b.BatteryCold);
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var maxChargingPower = batteriesStatus.Select(b => b.MaxChargingPower).Aggregate(0m, (a, b) => a + b);
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var maxDischargingPower = batteriesStatus.Select(b => b.MaxDischargingPower).Aggregate(0m, (a, b) => a + b);
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return new AvgBatteriesStatus
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var combined = stati.Count == 0
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? null
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: new Battery48TLStatus
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{
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Soc = soc,
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Current = current,
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Voltage = voltage,
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Power = power,
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BusVoltage = busVoltage,
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BatteryTemperature = batteryTemperature,
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HeaterOn = heaterOn,
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EocReached = eocReached,
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BatteryCold = batteryCold,
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MaxChargingPower = maxChargingPower,
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MaxDischargingPower = maxDischargingPower
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Soc = stati.Min(b => b.Soc),
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Temperature = stati.Average(b => b.Temperature),
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Dc = new DcBus
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{
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Voltage = stati.Average(b => b.Dc.Voltage),
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Current = stati.Sum(b => b.Dc.Current),
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},
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Alarms = stati.SelectMany(b => b.Alarms).Distinct().ToList(),
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Warnings = stati.SelectMany(b => b.Warnings).Distinct().ToList(),
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MaxChargingPower = stati.Sum(b => b.MaxChargingPower),
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MaxDischargingPower = stati.Sum(b => b.MaxDischargingPower),
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Heating = stati.Any(b => b.Heating),
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AmberLed = LedState.Off, // not used for combined battery
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BlueLed = LedState.Off,
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RedLed = LedState.Off,
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GreenLed = LedState.Off,
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CellsVoltage = stati.Average(b => b.CellsVoltage),
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ConnectedToDc = stati.Any(b => b.ConnectedToDc),
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TemperatureState = stati.Any(b => b.TemperatureState == OperatingTemperature) // TODO: revisit when we have the overheated state
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? OperatingTemperature
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: Cold,
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};
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return new CombinedStatus<Battery48TLStatus>
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{
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Combined = combined!,
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Children = stati
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};
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}
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}
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@ -5,6 +5,7 @@ using InnovEnergy.Lib.Devices.Battery48TL;
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using InnovEnergy.Lib.Devices.EmuMeter;
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using InnovEnergy.Lib.Devices.Trumpf.TruConvertAc;
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using InnovEnergy.Lib.Devices.Trumpf.TruConvertDc;
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using InnovEnergy.Lib.StatusApi;
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namespace InnovEnergy.App.SaliMax.Controller;
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@ -12,8 +13,8 @@ public record StatusRecord
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{
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public TruConvertAcStatus? InverterStatus { get; init; }
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public TruConvertDcStatus? DcDcStatus { get; init; }
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public Battery48TLStatus[]? BatteriesStatus { get; set; } = Array.Empty<Battery48TLStatus>(); // TODO remove static
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public AvgBatteriesStatus? AvgBatteriesStatus { get; init; }
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public CombinedStatus<Battery48TLStatus>? BatteriesStatus { get; init; }
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public EmuMeterStatus? GridMeterStatus { get; init; }
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public SaliMaxRelayStatus? SaliMaxRelayStatus { get; init; }
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public AmptStatus? AmptStatus { get; init; }
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@ -13,6 +13,7 @@ using InnovEnergy.Lib.Devices.EmuMeter;
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using InnovEnergy.Lib.Devices.Trumpf.TruConvertAc;
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using InnovEnergy.Lib.Devices.Trumpf.TruConvertDc;
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using InnovEnergy.Lib.Time.Unix;
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using InnovEnergy.Lib.Utils;
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#pragma warning disable IL2026
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@ -41,6 +42,18 @@ internal static class Program
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{
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Console.WriteLine("Starting SaliMax");
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var batteryNodes = new Byte[] { 2, 3 };
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var batteryTty = "/dev/ttyUSB0";
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var relaysIp = "10.0.1.1";
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var truConvertAcIp = "10.0.2.1";
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var truConvertDcIp = "10.0.3.1";
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var gridMeterIp = "10.0.4.1";
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var internalMeter = "10.0.4.2";
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var amptIp = "10.0.5.1";
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var s3Config = new S3Config
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{
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Bucket = "saliomameiringen",
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@ -62,33 +75,33 @@ internal static class Program
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var firstBattery48TlDevice =Battery48TlDevice.Fake();;
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var salimaxConfig = new SalimaxConfig();
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#else
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#if BatteriesAllowed
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var firstBattery48TlDevice = new Battery48TlDevice("/dev/ttyUSB0", 2);
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var secondBattery48TlDevice = new Battery48TlDevice("/dev/ttyUSB0", 3);
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#endif
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var inverterDevice = new TruConvertAcDevice("192.168.1.2");
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var dcDcDevice = new TruConvertDcDevice("192.168.1.3");
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var gridMeterDevice = new EmuMeterDevice("192.168.1.241");
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var acInToAcOutMeterDevice = new EmuMeterDevice("192.168.1.241"); // TODO: use real device
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var amptDevice = new AmptCommunicationUnit("192.168.1.249");
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var saliMaxRelaysDevice = new SaliMaxRelaysDevice("192.168.1.242");
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var batteries = batteryNodes.Select(n => new Battery48TlDevice(batteryTty, n)).ToList();
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var inverterDevice = new TruConvertAcDevice(truConvertAcIp);
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var dcDcDevice = new TruConvertDcDevice(truConvertDcIp);
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var gridMeterDevice = new EmuMeterDevice(gridMeterIp);
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var acInToAcOutMeterDevice = new EmuMeterDevice(internalMeter); // TODO: use real device
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var amptDevice = new AmptCommunicationUnit(amptIp);
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var saliMaxRelaysDevice = new SaliMaxRelaysDevice(relaysIp);
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var salimaxConfig = new SalimaxConfig();
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#endif
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// This is will be always add manually ? or do we need to read devices automatically in a range of IP @
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#if BatteriesAllowed
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var battery48TlDevices = new[] { firstBattery48TlDevice, secondBattery48TlDevice };
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#endif
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var dcDcDevices = new[] { dcDcDevice };
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var inverterDevices = new[] { inverterDevice};
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StatusRecord ReadStatus()
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{
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#if BatteriesAllowed
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var combinedBatteryStatus = batteries
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.Select(b => b.ReadStatus())
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.NotNull()
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.ToList()
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.Combine();
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var battery48TlStatusArray = battery48TlDevices.Select(b => b.ReadStatus()).NotNull().ToArray();
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#endif
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// var dcDcStatusArray = dcDcDevices.Select(b => b.ReadStatus()).NotNull().ToArray();
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// var inverterStatusArray = inverterDevices.Select(b => b.ReadStatus()).NotNull().ToArray();
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@ -96,14 +109,8 @@ internal static class Program
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{
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InverterStatus = inverterDevice.ReadStatus(),
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DcDcStatus = dcDcDevice.ReadStatus(),
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#if BatteriesAllowed
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BatteriesStatus = battery48TlStatusArray,
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AvgBatteriesStatus = AvgBatteriesStatus.ReadBatteriesStatus(battery48TlStatusArray),
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#else
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BatteriesStatus = null,
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AvgBatteriesStatus = null,
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#endif
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BatteriesStatus = combinedBatteryStatus,
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AcInToAcOutMeterStatus = acInToAcOutMeterDevice.ReadStatus(),
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GridMeterStatus = gridMeterDevice.ReadStatus(),
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SaliMaxRelayStatus = saliMaxRelaysDevice.ReadStatus(),
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@ -0,0 +1,43 @@
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#!/bin/bash
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host=ie-entwicklung@10.2.3.115
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tunnel() {
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name=$1
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ip=$2
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rPort=$3
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lPort=$4
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echo -n "localhost:$lPort $name "
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ssh -nNTL "$lPort:$ip:$rPort" "$host" 2> /dev/null &
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until nc -vz 127.0.0.1 $lPort 2> /dev/null
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do
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echo -n .
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sleep 0.3
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done
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echo "ok"
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}
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echo ""
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tunnel "Trumpf Inverter (http) " 10.0.2.1 80 8001
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tunnel "Trumpf DCDC (http) " 10.0.3.1 80 8002
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tunnel "Ext Emu Meter (http) " 10.0.4.1 80 8003
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tunnel "Int Emu Meter (http) " 10.0.4.2 80 8004
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tunnel "AMPT (http) " 10.0.5.1 8080 8005
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tunnel "Trumpf Inverter (modbus)" 10.0.2.1 502 5001
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tunnel "Trumpf DCDC (modbus) " 10.0.3.1 502 5002
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tunnel "Ext Emu Meter (modbus) " 10.0.4.1 502 5003
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tunnel "Int Emu Meter " 10.0.4.2 502 5004
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tunnel "AMPT (modbus) " 10.0.5.1 502 5005
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echo
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echo "press any key to close the tunnels ..."
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read -r -n 1 -s
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kill $(jobs -p)
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echo "done"
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@ -1,5 +1,6 @@
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using InnovEnergy.Lib.Protocols.Modbus.Clients;
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using InnovEnergy.Lib.Protocols.Modbus.Connections;
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using static InnovEnergy.Lib.Devices.Battery48TL.Constants;
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namespace InnovEnergy.Lib.Devices.Battery48TL;
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@ -10,10 +11,10 @@ public class Battery48TlDevice
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public Battery48TlDevice(String device, Byte nodeId)
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{
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var serialConnection = new ModbusSerialConnection(device,
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Constants.BaudRate,
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Constants.Parity,
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Constants.DataBits,
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Constants.StopBits,
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BaudRate,
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Parity,
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DataBits,
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StopBits,
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Constants.Timeout);
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Modbus = new ModbusRtuClient(serialConnection, nodeId);
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@ -34,7 +35,7 @@ public class Battery48TlDevice
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try
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{
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return Modbus
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.ReadInputRegisters(Constants.BaseAddress, Constants.NoOfRegisters)
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.ReadInputRegisters(BaseAddress, NoOfRegisters)
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.ParseBatteryStatus();
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}
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catch (Exception e)
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@ -13,4 +13,3 @@ public record BatteryStatus : IDcConnection
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public Percent Soc { get; init; }
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public Temperature Temperature { get; init; }
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}
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@ -0,0 +1,12 @@
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namespace InnovEnergy.Lib.StatusApi;
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#pragma warning disable CS8618
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public record CombinedStatus<T>
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{
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public T Combined { get; init; }
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public IReadOnlyList<T> Children { get; init; }
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public Boolean Available => Children.Any();
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}
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