Ampt V2
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using InnovEnergy.Lib.Protocols.Modbus.Clients;
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using InnovEnergy.Lib.Protocols.Modbus.Slaves;
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using InnovEnergy.Lib.Units.Composite;
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using InnovEnergy.Lib.Utils;
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namespace InnovEnergy.Lib.Devices.AMPT;
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public class AmptDevice
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{
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private readonly ModbusDevice<CommunicationUnitRegisters> _CommunicationUnit;
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private readonly IEnumerable<ModbusDevice<StringOptimizerRegisters>> _StringOptimizers;
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public AmptDevice(ModbusClient modbusClient)
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{
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_CommunicationUnit = new ModbusDevice<CommunicationUnitRegisters>(modbusClient);
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_StringOptimizers = StringOptimizers(modbusClient);
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}
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public AmptStatus? Read()
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{
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var cuStatus = _CommunicationUnit.Read();
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if (cuStatus.NumberOfStrings == 0)
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return default;
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var rs = _StringOptimizers
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.Take(cuStatus.NumberOfStrings)
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.Select(so => so.Read())
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.ToArray(cuStatus.NumberOfStrings);
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var busVoltage = rs.Average(r => r.Voltage);
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var busCurrent = rs.Sum(r => r.Current);
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var strings = rs.SelectMany(GetStrings).ToArray(rs.Length * 2);
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return new AmptStatus
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(
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Dc : DcBus.FromVoltageCurrent(busVoltage, busCurrent),
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Strings: strings
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);
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}
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private static IEnumerable<DcBus> GetStrings(StringOptimizerRegisters r)
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{
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yield return DcBus.FromVoltageCurrent(r.String1Voltage, r.String1Current);
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yield return DcBus.FromVoltageCurrent(r.String2Voltage, r.String2Current);
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}
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private static IEnumerable<ModbusDevice<StringOptimizerRegisters>> StringOptimizers(ModbusClient modbusClient)
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{
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var cache = new List<ModbusDevice<StringOptimizerRegisters>>();
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ModbusDevice<StringOptimizerRegisters> GetOptimizer(Int32 i)
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{
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if (i < cache.Count)
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return cache[i];
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var modbusDevice = new ModbusDevice<StringOptimizerRegisters>(modbusClient, i * 16);
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return modbusDevice.Apply(cache.Add);
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}
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return Enumerable
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.Range(0, Byte.MaxValue)
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.Select(GetOptimizer);
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}
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}
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@ -0,0 +1,100 @@
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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.Protocols.Modbus.Slaves;
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using InnovEnergy.Lib.Units.Composite;
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using InnovEnergy.Lib.Utils;
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namespace InnovEnergy.Lib.Devices.AMPT;
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public class AmptDevices
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{
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private readonly ModbusDevice<CommunicationUnitRegisters> _CommunicationUnit;
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private readonly IEnumerable<ModbusDevice<StringOptimizerRegisters>> _StringOptimizers;
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public AmptDevices(String hostname, UInt16 port = 502) : this(new TcpChannel(hostname, port))
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{
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}
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public AmptDevices(Channel transport) : this(new ModbusTcpClient(transport, 2))
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{
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}
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public AmptDevices(ModbusClient modbusClient)
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{
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_CommunicationUnit = new ModbusDevice<CommunicationUnitRegisters>(modbusClient);
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_StringOptimizers = StringOptimizers(modbusClient);
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}
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public AmptStatus Read()
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{
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CommunicationUnitRegisters? cuStatus = null;
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try
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{
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cuStatus = _CommunicationUnit.Read();
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}
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catch (Exception e)
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{
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Console.WriteLine(e);
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// TODO: log
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}
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// CommunicationUnit knows how many StringOptimizers are connected
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var nStringOptimizers = cuStatus?.NumberOfStringOptimizers ?? 0;
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// hardcoded: every SO has 2 strings (produced like this by AMPT)
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var nStrings = nStringOptimizers * 2;
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// read stati from optimizers
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var soStati = _StringOptimizers
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.Take(nStringOptimizers)
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.Select(so => so.Read())
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.ToArray(nStringOptimizers);
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// every SO has 2 strings but ONE Dc Link Connection
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// they are connected to a shared Dc Link, so Voltage seen by them should be approx the same.
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// voltages are averaged, currents added
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// TODO: alarm when we see substantially different voltages
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var busVoltage = nStringOptimizers == 0 ? 0 : soStati.Average(r => r.Voltage);
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var busCurrent = nStringOptimizers == 0 ? 0 : soStati.Sum (r => r.Current);
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var dc = DcBus.FromVoltageCurrent(busVoltage, busCurrent);
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// flatten the 2 strings of each SO into one array
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var strings = soStati.SelectMany(GetStrings).ToArray(nStrings);
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return new AmptStatus(dc, strings);
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}
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private static IEnumerable<DcBus> GetStrings(StringOptimizerRegisters r)
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{
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// hardcoded: every SO has 2 strings (produced like this by AMPT)
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yield return DcBus.FromVoltageCurrent(r.String1Voltage, r.String1Current);
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yield return DcBus.FromVoltageCurrent(r.String2Voltage, r.String2Current);
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}
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private static IEnumerable<ModbusDevice<StringOptimizerRegisters>> StringOptimizers(ModbusClient modbusClient)
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{
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var cache = new List<ModbusDevice<StringOptimizerRegisters>>();
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ModbusDevice<StringOptimizerRegisters> GetOptimizer(Int32 i)
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{
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if (i < cache.Count)
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return cache[i];
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var modbusDevice = new ModbusDevice<StringOptimizerRegisters>(modbusClient, i * 16);
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cache.Add(modbusDevice);
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return modbusDevice;
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}
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return Enumerable
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.Range(0, Byte.MaxValue)
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.Select(GetOptimizer);
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}
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}
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@ -3,4 +3,35 @@ using InnovEnergy.Lib.Units.Composite;
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namespace InnovEnergy.Lib.Devices.AMPT;
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public record AmptStatus(DcBus Dc, IReadOnlyList<DcBus> Strings) : IMppt;
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public class AmptStatus : IMppt
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{
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public AmptStatus(DcBus dc, IReadOnlyList<DcBus> strings)
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{
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Dc = dc;
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Strings = strings;
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}
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public DcBus Dc { get; }
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public IReadOnlyList<DcBus> Strings { get; }
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}
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// public static AmptStatus Parallel(IReadOnlyList<AmptStatus> stati)
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// {
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// if (stati.Count == 0)
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// {
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// return new AmptStatus
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// (
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// Dc: DcBus.FromVoltageCurrent(0, 0),
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// Strings: Array.Empty<DcBus>()
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// );
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// }
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//
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// var voltage = stati.Average(s => s.Dc.Voltage.Value);
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// var current = stati.Sum(s => s.Dc.Current.Value);
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// var dc = DcBus.FromVoltageCurrent(voltage, current);
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//
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// var strings = stati.SelectMany(s => s.Strings).ToList();
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//
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// return new AmptStatus(dc, strings);
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// }
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@ -14,5 +14,5 @@ public record CommunicationUnitRegisters
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[HoldingRegister<Int16>(74)] public Int16 VoltageScaleFactor { get; private set; }
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[HoldingRegister<Int16>(76)] public Int16 EnergyScaleFactor { get; private set; }
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[HoldingRegister(78)] public UInt16 NumberOfStrings { get; private set; }
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[HoldingRegister(78)] public UInt16 NumberOfStringOptimizers { get; private set; }
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}
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@ -1,6 +1,6 @@
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using System.Text.Json;
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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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{
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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 AmptDevice(cl);
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var d = new AmptDevices(cl);
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while (true)
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{
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var x = d.Read();
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AmptStatus x = d.Read();
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x.ToCsv().WriteLine();
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var options = new JsonSerializerOptions{WriteIndented = true};
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(x, options).Apply(JsonSerializer.Serialize).WriteLine();
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//Console.WriteLine(x);
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}
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