149 lines
4.5 KiB
C#
149 lines
4.5 KiB
C#
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using InnovEnergy.Lib.Protocols.Modbus.Conversions;
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using InnovEnergy.Lib.Utils;
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namespace InnovEnergy.Lib.Devices.Battery48TL;
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public static class BatteryDataParser
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{
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public static Decimal ParseDecimal(this ModbusRegisters data, Int32 register, Decimal scaleFactor = 1.0m, Double offset = 0.0)
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{
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var value = data[register].ConvertTo<Int32>(); // widen to 32bit signed
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if (value >= 0x8000)
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value -= 0x10000; // Fiamm stores their integers signed AND with sign-offset @#%^&!
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return (Decimal)(value + offset) * scaleFactor;
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}
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internal static Decimal ReadCurrent(this ModbusRegisters data)
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{
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return ParseDecimal(data, register: 1001, scaleFactor: 0.01m, offset: -10000);
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}
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internal static Decimal ReadVoltage(this ModbusRegisters data)
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{
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return ParseDecimal(data, register: 1000, scaleFactor: 0.01m);
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}
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internal static Boolean ParseBool(this ModbusRegisters data, Int32 baseRegister, Int16 bit)
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{
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var x = bit / 16;
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var y = bit % 16;
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var value = (UInt32)data[baseRegister + x];
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return (value & (1 << y)) > 0;
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}
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internal static LedState ParseLedState(this ModbusRegisters data, Int32 register, LedColor led)
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{
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var lo = ParseBool(data, register, (led.ConvertTo<Int16>() * 2).ConvertTo<Int16>());
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var hi = ParseBool(data, register, (led.ConvertTo<Int16>() * 2 + 1).ConvertTo<Int16>());
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if (hi)
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{
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if (lo)
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{
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return LedState.BlinkingFast;
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}
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else
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{
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return LedState.BlinkingSlow;
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}
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}
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else
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{
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if (lo)
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{
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return LedState.On;
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}
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else
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{
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return LedState.Off;
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}
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}
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}
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internal static String ParseRegisters(this ModbusRegisters data, Int32 register, Int16 count)
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{
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var container = "";
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var start = register;
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var end = register + count;
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for (var i = start; i < end; i++)
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{
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var binary = Convert.ToString(data[register], 2);
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container += binary.PadLeft(16, '0');
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}
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return container;
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}
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internal static Boolean ParseEocReached(this ModbusRegisters data)
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{
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return ParseLedState(data, 1005, LedColor.Green) == LedState.On &&
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ParseLedState(data, 1005, LedColor.Amber) == LedState.Off &&
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ParseLedState(data, 1005, LedColor.Blue) == LedState.Off;
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}
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internal static Boolean ParseBatteryCold(this ModbusRegisters data)
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{
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return ParseLedState(data, 1005, LedColor.Green) >= LedState.BlinkingSlow &&
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ParseLedState(data, 1005, LedColor.Blue) >= LedState.BlinkingSlow;
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}
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private static Decimal CalcPowerLimitImposedByVoltageLimit(Decimal v,Decimal i,Decimal vLimit,Decimal rInt)
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{
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var dv = vLimit - v;
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var di = dv / rInt;
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var pLimit = vLimit * (i + di);
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return pLimit;
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}
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private static Decimal CalcPowerLimitImposedByCurrentLimit(Decimal v, Decimal i, Decimal iLimit, Decimal rInt)
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{
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var di = iLimit - i;
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var dv = di * rInt;
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var pLimit = iLimit * (v + dv);
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return pLimit;
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}
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internal static Decimal CalcMaxChargePower(this ModbusRegisters data)
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{
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var v = ReadVoltage(data);
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var i = ReadCurrent(data);
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var pLimits = new[]
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{
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CalcPowerLimitImposedByVoltageLimit(v, i, Constants.VMax, Constants.RIntMin),
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CalcPowerLimitImposedByVoltageLimit(v, i, Constants.VMax, Constants.RIntMax),
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CalcPowerLimitImposedByCurrentLimit(v, i, Constants.IMax, Constants.RIntMin),
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CalcPowerLimitImposedByCurrentLimit(v, i, Constants.IMax, Constants.RIntMax)
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};
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var pLimit = pLimits.Min();
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return Math.Max(pLimit, 0);
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}
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internal static Decimal CalcMaxDischargePower(this ModbusRegisters data)
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{
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var v = ReadVoltage(data);
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var i = ReadCurrent(data);
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var pLimits = new[]
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{
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CalcPowerLimitImposedByVoltageLimit(v, i, Constants.VMin, Constants.RIntMin),
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CalcPowerLimitImposedByVoltageLimit(v, i, Constants.VMin, Constants.RIntMax),
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CalcPowerLimitImposedByCurrentLimit(v, i, -Constants.IMax, Constants.RIntMin),
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CalcPowerLimitImposedByCurrentLimit(v, i, -Constants.IMax, Constants.RIntMax)
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};
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var pLimit = pLimits.Max();
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return Math.Min(pLimit, 0);
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}
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}
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