Merge branch 'main' of https://git.innov.energy/Innovenergy/git_trunk
This commit is contained in:
commit
ba9b134f07
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@ -5,20 +5,20 @@ namespace InnovEnergy.App.SaliMax;
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public class CustomLogger : ILogger
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{
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private readonly String _logFilePath;
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private readonly Int64 _maxFileSizeBytes;
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private readonly Int32 _maxLogFileCount;
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private Int64 _currentFileSizeBytes;
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private readonly String _LogFilePath;
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private readonly Int64 _MaxFileSizeBytes;
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private readonly Int32 _MaxLogFileCount;
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private Int64 _CurrentFileSizeBytes;
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public CustomLogger(String logFilePath, Int64 maxFileSizeBytes, Int32 maxLogFileCount)
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{
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_logFilePath = logFilePath;
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_maxFileSizeBytes = maxFileSizeBytes;
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_maxLogFileCount = maxLogFileCount;
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_currentFileSizeBytes = File.Exists(logFilePath) ? new FileInfo(logFilePath).Length : 0;
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_LogFilePath = logFilePath;
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_MaxFileSizeBytes = maxFileSizeBytes;
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_MaxLogFileCount = maxLogFileCount;
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_CurrentFileSizeBytes = File.Exists(logFilePath) ? new FileInfo(logFilePath).Length : 0;
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}
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public IDisposable BeginScope<TState>(TState state)
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public IDisposable? BeginScope<TState>(TState state) where TState : notnull
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{
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throw new NotImplementedException();
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}
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@ -33,35 +33,34 @@ public class CustomLogger : ILogger
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var logMessage = formatter(state, exception!);
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// Check the file size and rotate the log file if necessary
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if (_currentFileSizeBytes + logMessage.Length >= _maxFileSizeBytes)
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if (_CurrentFileSizeBytes + logMessage.Length >= _MaxFileSizeBytes)
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{
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RotateLogFile();
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_currentFileSizeBytes = 0;
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_CurrentFileSizeBytes = 0;
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}
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// Write the log message to the file
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File.AppendAllText(_logFilePath, logMessage + Environment.NewLine);
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_currentFileSizeBytes += logMessage.Length;
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File.AppendAllText(_LogFilePath, logMessage + Environment.NewLine);
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_CurrentFileSizeBytes += logMessage.Length;
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}
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private void RotateLogFile()
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{
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// Check the log file count and delete the oldest file if necessary
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var logFileDir = Path.GetDirectoryName(_logFilePath)!;
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var logFileExt = Path.GetExtension(_logFilePath);
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var logFileBaseName = Path.GetFileNameWithoutExtension(_logFilePath);
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var logFileDir = Path.GetDirectoryName(_LogFilePath)!;
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var logFileExt = Path.GetExtension(_LogFilePath);
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var logFileBaseName = Path.GetFileNameWithoutExtension(_LogFilePath);
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var logFiles = Directory.GetFiles(logFileDir, $"{logFileBaseName}_*{logFileExt}")
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var logFiles = Directory
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.GetFiles(logFileDir, $"{logFileBaseName}_*{logFileExt}")
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.OrderBy(file => file)
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.ToList();
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if (logFiles.Count >= _maxLogFileCount)
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{
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if (logFiles.Count >= _MaxLogFileCount)
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File.Delete(logFiles.First());
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}
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// Rename the current log file with a timestamp
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var logFileBackupPath = Path.Combine(logFileDir, $"{logFileBaseName}_{UnixTime.Now}{logFileExt}");
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File.Move(_logFilePath, logFileBackupPath);
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File.Move(_LogFilePath, logFileBackupPath);
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}
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}
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@ -241,11 +241,11 @@ internal static class Program
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// Voltage Measurement Values
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//var inverterVoltage = new Voltage [(Int32)s.AcDc.Ac.L1.Voltage, (Int32)s.AcDc.Ac.L2.Voltage, (Int32)s.AcDc.Ac.L3.Voltage];
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//var dcLinkVoltage = s.DcDc.Dc.Link.Voltage;
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var dc48Voltage = s.DcDc.Dc.Battery.Voltage;
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var batteryVoltage = s.Battery.Dc.Voltage;
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var batterySoc = s.Battery.Soc;
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var batteryCurrent = s.Battery.Dc.Current;
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var batteryTemp = s.Battery.Temperature;
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var dc48Voltage = s.DcDc.Dc.Battery.Voltage.ToDisplayString();
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var batteryVoltage = s.Battery.Dc.Voltage.ToDisplayString();
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var batterySoc = s.Battery.Soc.ToDisplayString();
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var batteryCurrent = s.Battery.Dc.Current.ToDisplayString();
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var batteryTemp = s.Battery.Temperature.ToDisplayString();
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var gridBusColumn = ColumnBox("Pv", "Grid Bus", "Load" , gridVoltageByPhase , gridLoadPower);
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var islandBusColumn = ColumnBox("Pv", "Island Bus", "Load" , inverterPowerByPhase, islandLoadPower);
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@ -260,10 +260,10 @@ internal static class Program
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var gridBox = TextBlock.AlignLeft(gridPowerByPhase).TitleBox("Grid");
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var inverterBox = TextBlock.AlignLeft(inverterPowerByAcDc).TitleBox("Inverter");
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var dcDcBox = TextBlock.AlignLeft(dc48Voltage).TitleBox("DC/DC");
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var batteryAvgBox = TextBlock.AlignLeft(batteryVoltage.ToDisplayString(),
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batterySoc.ToDisplayString(),
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batteryCurrent.ToDisplayString(),
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batteryTemp.ToDisplayString())
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var batteryAvgBox = TextBlock.AlignLeft(batteryVoltage,
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batterySoc,
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batteryCurrent,
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batteryTemp)
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.TitleBox("Battery");
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@ -1,5 +1,5 @@
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<Project Sdk="Microsoft.NET.Sdk">
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<Import Project="../../InnovEnergy.Lib.props"/>
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<Import Project="../../InnovEnergy.Lib.props" />
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<PropertyGroup>
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<RootNamespace>InnovEnergy.Lib.Devices.AMPT</RootNamespace>
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@ -8,11 +8,7 @@
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<ItemGroup>
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<ProjectReference Include="../../Protocols/Modbus/Modbus.csproj" />
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<ProjectReference Include="../../Utils/Utils.csproj" />
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<ProjectReference Include="../../StatusApi/StatusApi.csproj" />
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</ItemGroup>
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<ItemGroup>
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<PackageReference Include="DecimalMath.DecimalEx" Version="1.0.2" />
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<ProjectReference Include="../../Units/Units.csproj" />
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</ItemGroup>
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</Project>
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@ -1,28 +0,0 @@
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using InnovEnergy.Lib.Protocols.Modbus.Channels;
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using InnovEnergy.Lib.Protocols.Modbus.Clients;
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using InnovEnergy.Lib.Units;
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using InnovEnergy.Lib.Utils;
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namespace InnovEnergy.Lib.Devices.AMPT;
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public static class Program
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{
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public static Task Main(string[] args)
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{
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var ch = new TcpChannel("localhost", 5005);
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var cl = new ModbusTcpClient(ch, 1);
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var d = new AmptDevices(cl);
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while (true)
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{
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AmptStatus x = d.Read();
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x.ToCsv().WriteLine();
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//Console.WriteLine(x);
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}
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//Console.WriteLine(x);
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}
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}
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@ -1,20 +0,0 @@
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using InnovEnergy.Lib.Units;
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using InnovEnergy.Lib.Utils;
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namespace InnovEnergy.Lib.Devices.Adam6360D;
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public static class Program
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{
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public static Task Main(String[] args)
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{
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var d = new Adam6360DDevice("localhost", 2, 5006);
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while (true)
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{
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var x = d.Read();
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x.ToCsv().WriteLine();
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}
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}
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}
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@ -1,35 +0,0 @@
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using InnovEnergy.Lib.Protocols.Modbus.Channels;
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using InnovEnergy.Lib.Units;
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using InnovEnergy.Lib.Utils;
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using static InnovEnergy.Lib.Devices.Battery48TL.Battery48TlDevice;
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namespace InnovEnergy.Lib.Devices.Battery48TL;
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public static class Program
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{
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public static Task Main(string[] args)
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{
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var host = new SshHost("10.2.3.115", "ie-entwicklung");
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var channel = new RemoteSerialChannel(host, "ttyUSB0", BaudRate, Parity, DataBits, StopBits);
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var nodes = new Byte[] { 2 };
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var devices = nodes
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.Select(n => new Battery48TlDevice(channel, n))
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.ToList();
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var d = new Battery48TlDevices(devices);
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//var options = new JsonSerializerOptions { WriteIndented = true, Converters = { new JsonStringEnumConverter() }};
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while (true)
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{
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var x = d.Read();
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x.ToCsv().WriteLine();
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//(x, options).Apply(JsonSerializer.Serialize).WriteLine();
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}
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}
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}
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@ -1,24 +0,0 @@
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using InnovEnergy.Lib.Protocols.Modbus.Channels;
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using InnovEnergy.Lib.Protocols.Modbus.Clients;
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using InnovEnergy.Lib.Units;
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using InnovEnergy.Lib.Utils;
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namespace InnovEnergy.Lib.Devices.EmuMeter;
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public static class Program
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{
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public static Task Main(string[] args)
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{
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var ch = new TcpChannel("localhost", 5004);
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var cl = new ModbusTcpClient(ch, 1);
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var d = new EmuMeterDevice(cl);
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while (true)
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{
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var x = d.Read();
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x.ToCsv().WriteLine();
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}
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}
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}
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@ -1,61 +0,0 @@
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// using InnovEnergy.Lib.Devices.Trumpf.SystemControl;
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// using InnovEnergy.Lib.Devices.Trumpf.SystemControl.DataTypes;
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// using InnovEnergy.Lib.Units;
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// using InnovEnergy.Lib.Utils;
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//
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// namespace InnovEnergy.Lib.Devices.Trumpf.TruConvertAc;
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//
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// // TODO :remove
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//
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// public static class Program
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// {
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// public static void Main(String[] args)
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// {
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// var sc = new SystemControlDevice("localhost", 5001);
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// var acDc1 = sc.AcDcSlave(1);
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// var acDc2 = sc.AcDcSlave(2);
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//
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//
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// while (true)
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// {
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// "================================================".WriteLine();
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//
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// var r = sc.Read();
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//
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// Console.WriteLine(DateTime.Now);
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// r.ToString().Replace(",", "\n").Replace(" {", "\n").WriteLine("\n");
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//
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// var c = r with
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// {
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// UseSlaveIdForAddressing = true,
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// ReferenceFrame = ReferenceFrame.Consumer,
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// GridType = GridType.GridTied400V50Hz,
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// SystemConfig = SystemConfig.AcDcAndDcDc,
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// CommunicationTimeout = null,
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// SlaveErrorHandling = SlaveErrorHandling.Relaxed,
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// SubSlaveErrorHandling = SubSlaveErrorHandling.Off
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// };
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//
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// sc.Write(c);
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//
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// var s1 = acDc1.Read();
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//
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// s1.ToCsv().Replace(",", "\n").Replace(" {", "\n").WriteLine("\n");
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//
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//
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// s1.ResetAlarmsAndWarnings = true;
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// s1.PowerStageEnable = true;
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//
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// acDc1.Write(s1);
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//
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// var s2 = acDc2.Read();
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//
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//
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// s2.ToString().Replace(",", "\n").Replace(" {", "\n").WriteLine("\n");
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//
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// acDc2.Write(s2 with { ResetAlarmsAndWarnings = true, PowerStageEnable = true });
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// }
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//
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//
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// }
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// }
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