Implement CurrentLimiter and spare power mode
This commit is contained in:
@@ -101,41 +101,9 @@ namespace TestApp.Configuration
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ChargerDriver = Settings.DEFAULT_CHARGER_DRIVER,
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ChargerAddress = Settings.DEFAULT_CHARGER_ADDRESS,
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ChargerPort = Settings.DEFAULT_CHARGER_PORT,
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MaxCurrent = Settings.DEFAULT_MAX_CURRENT,
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MinNegativePower = Settings.DEFAULT_MIN_NEGATIVE_POWER,
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Mode = 1,
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ModeSettings = new ModeSettings[] {
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new ModeSettings
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{
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ProcessVariable = ProcessVariable.ActivePowerPositive,
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SetPoint = 32,
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NegativePid = new PidSetting() {
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KP = 0,
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KI = 1,
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KD = 0,
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},
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PositivePid = new PidSetting()
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{
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KP = 0,
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KI = 1,
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KD = 0,
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}
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},
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new ModeSettings
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{
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ProcessVariable = ProcessVariable.ActivePowerNegative,
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SetPoint = 100,
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NegativePid = new PidSetting() {
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KP = 0,
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KI = 1,
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KD = 0,
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},
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PositivePid = new PidSetting()
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{
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KP = 0,
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KI = 1,
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KD = 0,
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}
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},
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}
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};
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}
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@@ -5,207 +5,16 @@
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internal const string DEFAULT_CHARGER_DRIVER = "VestelEvc04";
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internal const string DEFAULT_CHARGER_ADDRESS = "192.168.178.100";
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internal const int DEFAULT_CHARGER_PORT = 512;
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internal const double DEFAULT_MAX_CURRENT = 32;
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internal const double DEFAULT_MIN_NEGATIVE_POWER = 100;
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public string? ChargerDriver { get; set; }
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public string? ChargerAddress { get; set; }
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public int? ChargerPort { get; set; }
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public double? MaxCurrent { get; set; }
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public double? MinNegativePower { get; set; }
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public int Mode { get; set; }
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public ModeSettings[]? ModeSettings { get; set; }
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}
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public class PidSetting {
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public double KP { get; set; }
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public double KI { get; set; }
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public double KD { get; set; }
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}
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public class ModeSettings {
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public ProcessVariable ProcessVariable { get; set; }
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public double SetPoint { get; set; }
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public PidSetting? PositivePid { get; set; }
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public PidSetting? NegativePid { get; set; }
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}
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public enum ProcessVariable
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{
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/// <summary>in W</summary>
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ActivePowerPositive,
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/// <summary>in Wh</summary>
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ActiveEnergyPositive,
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/// <summary>in W</summary>
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ActivePowerNegative,
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/// <summary>in Wh</summary>
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ActiveEnergyNegative,
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/// <summary>in var</summary>
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ReactivePowerPositive,
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/// <summary>in varh</summary>
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ReactiveEnergyPositive,
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/// <summary>in var</summary>
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ReactivePowerNegative,
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/// <summary>in varh</summary>
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ReactiveEnergyNegative,
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/// <summary>in VA</summary>
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ApparentPowerPositive,
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/// <summary>in VAh</summary>
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ApparentEnergyPositive,
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/// <summary>in VA</summary>
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ApparentPowerNegative,
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/// <summary>in VAh</summary>
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ApparentEnergyNegative,
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/// <summary>in -</summary>
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PowerFactor,
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/// <summary>in Hz</summary>
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SupplyFrequency,
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/// <summary>in W</summary>
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ActivePowerPositiveL1,
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/// <summary>in Wh</summary>
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ActiveEnergyPositiveL1,
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/// <summary>in W</summary>
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ActivePowerNegativeL1,
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/// <summary>in Wh</summary>
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ActiveEnergyNegativeL1,
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/// <summary>in var</summary>
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ReactivePowerPositiveL1,
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/// <summary>in varh</summary>
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ReactiveEnergyPositiveL1,
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/// <summary>in var</summary>
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ReactivePowerNegativeL1,
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/// <summary>in varh</summary>
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ReactiveEnergyNegativeL1,
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/// <summary>in VA</summary>
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ApparentPowerPositiveL1,
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/// <summary>in VAh</summary>
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ApparentEnergyPositiveL1,
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/// <summary>in VA</summary>
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ApparentPowerNegativeL1,
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/// <summary>in VAh</summary>
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ApparentEnergyNegativeL1,
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/// <summary>in A</summary>
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CurrentL1,
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/// <summary>in V</summary>
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VoltageL1,
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/// <summary>in -</summary>
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PowerFactorL1,
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/// <summary>in W</summary>
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ActivePowerPositiveL2,
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/// <summary>in Wh</summary>
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ActiveEnergyPositiveL2,
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/// <summary>in W</summary>
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ActivePowerNegativeL2,
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/// <summary>in Wh</summary>
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ActiveEnergyNegativeL2,
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/// <summary>in var</summary>
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ReactivePowerPositiveL2,
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/// <summary>in varh</summary>
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ReactiveEnergyPositiveL2,
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/// <summary>in var</summary>
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ReactivePowerNegativeL2,
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/// <summary>in varh</summary>
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ReactiveEnergyNegativeL2,
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/// <summary>in VA</summary>
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ApparentPowerPositiveL2,
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/// <summary>in VAh</summary>
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ApparentEnergyPositiveL2,
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/// <summary>in VA</summary>
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ApparentPowerNegativeL2,
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/// <summary>in VAh</summary>
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ApparentEnergyNegativeL2,
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/// <summary>in A</summary>
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CurrentL2,
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/// <summary>in V</summary>
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VoltageL2,
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/// <summary>in -</summary>
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PowerFactorL2,
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/// <summary>in W</summary>
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ActivePowerPositiveL3,
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/// <summary>in Wh</summary>
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ActiveEnergyPositiveL3,
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/// <summary>in W</summary>
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ActivePowerNegativeL3,
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/// <summary>in Wh</summary>
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ActiveEnergyNegativeL3,
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/// <summary>in var</summary>
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ReactivePowerPositiveL3,
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/// <summary>in varh</summary>
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ReactiveEnergyPositiveL3,
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/// <summary>in var</summary>
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ReactivePowerNegativeL3,
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/// <summary>in varh</summary>
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ReactiveEnergyNegativeL3,
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/// <summary>in VA</summary>
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ApparentPowerPositiveL3,
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/// <summary>in VAh</summary>
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ApparentEnergyPositiveL3,
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/// <summary>in VA</summary>
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ApparentPowerNegativeL3,
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/// <summary>in VAh</summary>
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ApparentEnergyNegativeL3,
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/// <summary>in A</summary>
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CurrentL3,
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/// <summary>in V</summary>
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VoltageL3,
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/// <summary>in -</summary>
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PowerFactorL3,
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}
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}
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67
TestApp/CurrentLimitter.cs
Normal file
67
TestApp/CurrentLimitter.cs
Normal file
@@ -0,0 +1,67 @@
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using TestApp.Configuration;
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using TestApp.Driver;
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namespace TestApp
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{
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internal class CurrentLimitter
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{
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private readonly ConfigurationManager _ConfigurationManager;
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private readonly EnergyManager _EnergyManager;
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public CurrentLimitter(ConfigurationManager configurationManager, EnergyManager energyManager)
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{
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_ConfigurationManager = configurationManager;
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_EnergyManager = energyManager;
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}
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public double GetLimitedCurrent(IChargerDriver chargerDriver, double current) {
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var maxCurrent = _ConfigurationManager.Settings.MaxCurrent ?? Settings.DEFAULT_MAX_CURRENT;
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var wallBoxCurrents = chargerDriver.GetCurrents();
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var measuredCurrents = _EnergyManager.GetCurrents();
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var maxWithoutCharger = GetMaximumCurrentWithoutWallBox(measuredCurrents, wallBoxCurrents);
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var freeCurrent = maxCurrent - maxWithoutCharger;
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if (freeCurrent < current) {
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return freeCurrent;
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} else
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{
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return current;
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}
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}
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private static double GetMaximumCurrentWithoutWallBox((double I1, double I2, double I3) measuredCurrent, (double I1, double I2, double I3) wallBoxCurrent)
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{
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return GetPermutations(wallBoxCurrent)
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.Where(wbc => IsValidCombinition(measuredCurrent, wbc))
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.Select(wbc => GetDifference(measuredCurrent, wbc))
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.Select(c => GetMax(c))
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.Max();
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}
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private static IEnumerable<(double I1, double I2, double I3)> GetPermutations((double I1, double I2, double I3) current) {
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yield return (current.I1, current.I2, current.I3);
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yield return (current.I1, current.I3, current.I2);
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yield return (current.I2, current.I3, current.I1);
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yield return (current.I2, current.I1, current.I3);
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yield return (current.I3, current.I1, current.I2);
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yield return (current.I3, current.I2, current.I1);
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}
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private static bool IsValidCombinition((double I1, double I2, double I3) measuredCurrent, (double I1, double I2, double I3) wallBoxCurrent) {
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if (measuredCurrent.I1 < wallBoxCurrent.I1) { return false; } // even this is not correct if a PV is generating power !
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if (measuredCurrent.I2 < wallBoxCurrent.I2) { return false; }
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if (measuredCurrent.I3 < wallBoxCurrent.I3) { return false; }
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return true;
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}
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private static (double I1, double I2, double I3) GetDifference((double I1, double I2, double I3) x, (double I1, double I2, double I3) y) {
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return (x.I1 - y.I1, x.I2 - y.I2, x.I3 - y.I3);
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}
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private static double GetMax((double I1, double I2, double I3) currents) {
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return Math.Max(Math.Max(currents.I1, currents.I2), currents.I3);
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}
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}
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}
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@@ -5,6 +5,8 @@
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string HostAddress { get; set; }
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int Port { get; set; }
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(double I1, double I2, double I3) GetCurrents();
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void SetLoadingCurrent(double value);
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}
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}
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@@ -1,4 +1,5 @@
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using NModbus;
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using System.ComponentModel.Design.Serialization;
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using System.Net.Sockets;
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namespace TestApp.Driver
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@@ -83,6 +84,21 @@ namespace TestApp.Driver
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}
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}
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public (double I1, double I2, double I3) GetCurrents()
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{
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if (_Modbus is null)
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{
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Connect();
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}
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if (_Modbus is null) { return (double.NaN, double.NaN, double.NaN); }
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var i1 = _Modbus.ReadHoldingRegisters(255, 1008, 1)[0];
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var i2 = _Modbus.ReadHoldingRegisters(255, 1010, 1)[0];
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var i3 = _Modbus.ReadHoldingRegisters(255, 1012, 1)[0];
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return (0.001 * i1, 0.001 * i2, 0.001 * i3);
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}
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public void SetLoadingCurrent(double value)
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{
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if (!_Running) { return; }
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182
TestApp/EMVariable.cs
Normal file
182
TestApp/EMVariable.cs
Normal file
@@ -0,0 +1,182 @@
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namespace TestApp
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{
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public enum EMVariable
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{
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/// <summary>in W</summary>
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ActivePowerPositive,
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/// <summary>in Wh</summary>
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ActiveEnergyPositive,
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/// <summary>in W</summary>
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ActivePowerNegative,
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/// <summary>in Wh</summary>
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ActiveEnergyNegative,
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/// <summary>in var</summary>
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ReactivePowerPositive,
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/// <summary>in varh</summary>
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ReactiveEnergyPositive,
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/// <summary>in var</summary>
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ReactivePowerNegative,
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/// <summary>in varh</summary>
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ReactiveEnergyNegative,
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/// <summary>in VA</summary>
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ApparentPowerPositive,
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/// <summary>in VAh</summary>
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ApparentEnergyPositive,
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/// <summary>in VA</summary>
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ApparentPowerNegative,
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/// <summary>in VAh</summary>
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ApparentEnergyNegative,
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/// <summary>in -</summary>
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PowerFactor,
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/// <summary>in Hz</summary>
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SupplyFrequency,
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/// <summary>in W</summary>
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ActivePowerPositiveL1,
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/// <summary>in Wh</summary>
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ActiveEnergyPositiveL1,
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/// <summary>in W</summary>
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ActivePowerNegativeL1,
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/// <summary>in Wh</summary>
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ActiveEnergyNegativeL1,
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/// <summary>in var</summary>
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ReactivePowerPositiveL1,
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/// <summary>in varh</summary>
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ReactiveEnergyPositiveL1,
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/// <summary>in var</summary>
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ReactivePowerNegativeL1,
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/// <summary>in varh</summary>
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ReactiveEnergyNegativeL1,
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/// <summary>in VA</summary>
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ApparentPowerPositiveL1,
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/// <summary>in VAh</summary>
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ApparentEnergyPositiveL1,
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/// <summary>in VA</summary>
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ApparentPowerNegativeL1,
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/// <summary>in VAh</summary>
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ApparentEnergyNegativeL1,
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/// <summary>in A</summary>
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CurrentL1,
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/// <summary>in V</summary>
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VoltageL1,
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/// <summary>in -</summary>
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PowerFactorL1,
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/// <summary>in W</summary>
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ActivePowerPositiveL2,
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/// <summary>in Wh</summary>
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ActiveEnergyPositiveL2,
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/// <summary>in W</summary>
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ActivePowerNegativeL2,
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/// <summary>in Wh</summary>
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ActiveEnergyNegativeL2,
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/// <summary>in var</summary>
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ReactivePowerPositiveL2,
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/// <summary>in varh</summary>
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ReactiveEnergyPositiveL2,
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/// <summary>in var</summary>
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ReactivePowerNegativeL2,
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/// <summary>in varh</summary>
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ReactiveEnergyNegativeL2,
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/// <summary>in VA</summary>
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ApparentPowerPositiveL2,
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/// <summary>in VAh</summary>
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ApparentEnergyPositiveL2,
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/// <summary>in VA</summary>
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ApparentPowerNegativeL2,
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/// <summary>in VAh</summary>
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ApparentEnergyNegativeL2,
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/// <summary>in A</summary>
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CurrentL2,
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/// <summary>in V</summary>
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VoltageL2,
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/// <summary>in -</summary>
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PowerFactorL2,
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/// <summary>in W</summary>
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ActivePowerPositiveL3,
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/// <summary>in Wh</summary>
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ActiveEnergyPositiveL3,
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/// <summary>in W</summary>
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ActivePowerNegativeL3,
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/// <summary>in Wh</summary>
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ActiveEnergyNegativeL3,
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/// <summary>in var</summary>
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ReactivePowerPositiveL3,
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/// <summary>in varh</summary>
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ReactiveEnergyPositiveL3,
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/// <summary>in var</summary>
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ReactivePowerNegativeL3,
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/// <summary>in varh</summary>
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ReactiveEnergyNegativeL3,
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/// <summary>in VA</summary>
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ApparentPowerPositiveL3,
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/// <summary>in VAh</summary>
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ApparentEnergyPositiveL3,
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/// <summary>in VA</summary>
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ApparentPowerNegativeL3,
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/// <summary>in VAh</summary>
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ApparentEnergyNegativeL3,
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/// <summary>in A</summary>
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CurrentL3,
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/// <summary>in V</summary>
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VoltageL3,
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/// <summary>in -</summary>
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PowerFactorL3,
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}
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}
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@@ -1,7 +1,6 @@
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using MQTTnet;
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using MQTTnet.Client;
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using System.Collections.Immutable;
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||||
using TestApp.Configuration;
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||||
namespace TestApp
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||||
{
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||||
@@ -79,67 +78,75 @@ namespace TestApp
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return factor * value;
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||||
}
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||||
public double GetValue(ProcessVariable processVariable) {
|
||||
return processVariable switch {
|
||||
ProcessVariable.ActivePowerPositive => GetValue(1099528667391UL, 0.001),
|
||||
ProcessVariable.ActiveEnergyPositive => GetValue(1099528929535UL, 0.001),
|
||||
ProcessVariable.ActivePowerNegative => GetValue(1099545444607UL, 0.001),
|
||||
ProcessVariable.ActiveEnergyNegative => GetValue(1099545706751UL, 0.001),
|
||||
ProcessVariable.ReactivePowerPositive => GetValue(1099562221823UL, 0.001),
|
||||
ProcessVariable.ReactiveEnergyPositive => GetValue(1099562483967UL, 0.001),
|
||||
ProcessVariable.ReactivePowerNegative => GetValue(1099578999039UL, 0.001),
|
||||
ProcessVariable.ReactiveEnergyNegative => GetValue(1099579261183UL, 0.001),
|
||||
ProcessVariable.ApparentPowerPositive => GetValue(1099662885119UL, 0.001),
|
||||
ProcessVariable.ApparentEnergyPositive => GetValue(1099663147263UL, 0.001),
|
||||
ProcessVariable.ApparentPowerNegative => GetValue(1099679662335UL, 0.001),
|
||||
ProcessVariable.ApparentEnergyNegative => GetValue(1099679924479UL, 0.001),
|
||||
ProcessVariable.PowerFactor => GetValue(1099729993983UL, 0.001),
|
||||
ProcessVariable.SupplyFrequency => GetValue(1099746771199UL, 0.001),
|
||||
ProcessVariable.ActivePowerPositiveL1 => GetValue(1099864211711UL, 0.001),
|
||||
ProcessVariable.ActiveEnergyPositiveL1 => GetValue(1099864473855UL, 0.001),
|
||||
ProcessVariable.ActivePowerNegativeL1 => GetValue(1099880988927UL, 0.001),
|
||||
ProcessVariable.ActiveEnergyNegativeL1 => GetValue(1099881251071UL, 0.001),
|
||||
ProcessVariable.ReactivePowerPositiveL1 => GetValue(1099897766143UL, 0.001),
|
||||
ProcessVariable.ReactiveEnergyPositiveL1 => GetValue(1099898028287UL, 0.001),
|
||||
ProcessVariable.ReactivePowerNegativeL1 => GetValue(1099914543359UL, 0.001),
|
||||
ProcessVariable.ReactiveEnergyNegativeL1 => GetValue(1099914805503UL, 0.001),
|
||||
ProcessVariable.ApparentPowerPositiveL1 => GetValue(1099998429439UL, 0.001),
|
||||
ProcessVariable.ApparentEnergyPositiveL1 => GetValue(1099998691583UL, 0.001),
|
||||
ProcessVariable.ApparentPowerNegativeL1 => GetValue(1100015206655UL, 0.001),
|
||||
ProcessVariable.ApparentEnergyNegativeL1 => GetValue(1100015468799UL, 0.001),
|
||||
ProcessVariable.CurrentL1 => GetValue(1100031983871UL, 0.001),
|
||||
ProcessVariable.VoltageL1 => GetValue(1100048761087UL, 0.001),
|
||||
ProcessVariable.PowerFactorL1 => GetValue(1100065538303UL, 0.001),
|
||||
ProcessVariable.ActivePowerPositiveL2 => GetValue(1100199756031UL, 0.001),
|
||||
ProcessVariable.ActiveEnergyPositiveL2 => GetValue(1100200018175UL, 0.001),
|
||||
ProcessVariable.ActivePowerNegativeL2 => GetValue(1100216533247UL, 0.001),
|
||||
ProcessVariable.ActiveEnergyNegativeL2 => GetValue(1100216795391UL, 0.001),
|
||||
ProcessVariable.ReactivePowerPositiveL2 => GetValue(1100233310463UL, 0.001),
|
||||
ProcessVariable.ReactiveEnergyPositiveL2 => GetValue(1100233572607UL, 0.001),
|
||||
ProcessVariable.ReactivePowerNegativeL2 => GetValue(1100250087679UL, 0.001),
|
||||
ProcessVariable.ReactiveEnergyNegativeL2 => GetValue(1100250349823UL, 0.001),
|
||||
ProcessVariable.ApparentPowerPositiveL2 => GetValue(1100333973759UL, 0.001),
|
||||
ProcessVariable.ApparentEnergyPositiveL2 => GetValue(1100334235903UL, 0.001),
|
||||
ProcessVariable.ApparentPowerNegativeL2 => GetValue(1100350750975UL, 0.001),
|
||||
ProcessVariable.ApparentEnergyNegativeL2 => GetValue(1100351013119UL, 0.001),
|
||||
ProcessVariable.CurrentL2 => GetValue(1100367528191UL, 0.001),
|
||||
ProcessVariable.VoltageL2 => GetValue(1100384305407UL, 0.001),
|
||||
ProcessVariable.PowerFactorL2 => GetValue(1100401082623UL, 0.001),
|
||||
ProcessVariable.ActivePowerPositiveL3 => GetValue(1100535300351UL, 0.001),
|
||||
ProcessVariable.ActiveEnergyPositiveL3 => GetValue(1100535562495UL, 0.001),
|
||||
ProcessVariable.ActivePowerNegativeL3 => GetValue(1100552077567UL, 0.001),
|
||||
ProcessVariable.ActiveEnergyNegativeL3 => GetValue(1100552339711UL, 0.001),
|
||||
ProcessVariable.ReactivePowerPositiveL3 => GetValue(1100568854783UL, 0.001),
|
||||
ProcessVariable.ReactiveEnergyPositiveL3 => GetValue(1100569116927UL, 0.001),
|
||||
ProcessVariable.ReactivePowerNegativeL3 => GetValue(1100585631999UL, 0.001),
|
||||
ProcessVariable.ReactiveEnergyNegativeL3 => GetValue(1100585894143UL, 0.001),
|
||||
ProcessVariable.ApparentPowerPositiveL3 => GetValue(1100669518079UL, 0.001),
|
||||
ProcessVariable.ApparentEnergyPositiveL3 => GetValue(1100669780223UL, 0.001),
|
||||
ProcessVariable.ApparentPowerNegativeL3 => GetValue(1100686295295UL, 0.001),
|
||||
ProcessVariable.ApparentEnergyNegativeL3 => GetValue(1100686557439UL, 0.001),
|
||||
ProcessVariable.CurrentL3 => GetValue(1100703072511UL, 0.001),
|
||||
ProcessVariable.VoltageL3 => GetValue(1100719849727UL, 0.001),
|
||||
ProcessVariable.PowerFactorL3 => GetValue(1100736626943UL, 0.001),
|
||||
public (double I1, double I2, double I3) GetCurrents() {
|
||||
return (
|
||||
GetValue(EMVariable.CurrentL1),
|
||||
GetValue(EMVariable.CurrentL2),
|
||||
GetValue(EMVariable.CurrentL3)
|
||||
);
|
||||
}
|
||||
|
||||
public double GetValue(EMVariable variable) {
|
||||
return variable switch {
|
||||
EMVariable.ActivePowerPositive => GetValue(1099528667391UL, 0.001),
|
||||
EMVariable.ActiveEnergyPositive => GetValue(1099528929535UL, 0.001),
|
||||
EMVariable.ActivePowerNegative => GetValue(1099545444607UL, 0.001),
|
||||
EMVariable.ActiveEnergyNegative => GetValue(1099545706751UL, 0.001),
|
||||
EMVariable.ReactivePowerPositive => GetValue(1099562221823UL, 0.001),
|
||||
EMVariable.ReactiveEnergyPositive => GetValue(1099562483967UL, 0.001),
|
||||
EMVariable.ReactivePowerNegative => GetValue(1099578999039UL, 0.001),
|
||||
EMVariable.ReactiveEnergyNegative => GetValue(1099579261183UL, 0.001),
|
||||
EMVariable.ApparentPowerPositive => GetValue(1099662885119UL, 0.001),
|
||||
EMVariable.ApparentEnergyPositive => GetValue(1099663147263UL, 0.001),
|
||||
EMVariable.ApparentPowerNegative => GetValue(1099679662335UL, 0.001),
|
||||
EMVariable.ApparentEnergyNegative => GetValue(1099679924479UL, 0.001),
|
||||
EMVariable.PowerFactor => GetValue(1099729993983UL, 0.001),
|
||||
EMVariable.SupplyFrequency => GetValue(1099746771199UL, 0.001),
|
||||
EMVariable.ActivePowerPositiveL1 => GetValue(1099864211711UL, 0.001),
|
||||
EMVariable.ActiveEnergyPositiveL1 => GetValue(1099864473855UL, 0.001),
|
||||
EMVariable.ActivePowerNegativeL1 => GetValue(1099880988927UL, 0.001),
|
||||
EMVariable.ActiveEnergyNegativeL1 => GetValue(1099881251071UL, 0.001),
|
||||
EMVariable.ReactivePowerPositiveL1 => GetValue(1099897766143UL, 0.001),
|
||||
EMVariable.ReactiveEnergyPositiveL1 => GetValue(1099898028287UL, 0.001),
|
||||
EMVariable.ReactivePowerNegativeL1 => GetValue(1099914543359UL, 0.001),
|
||||
EMVariable.ReactiveEnergyNegativeL1 => GetValue(1099914805503UL, 0.001),
|
||||
EMVariable.ApparentPowerPositiveL1 => GetValue(1099998429439UL, 0.001),
|
||||
EMVariable.ApparentEnergyPositiveL1 => GetValue(1099998691583UL, 0.001),
|
||||
EMVariable.ApparentPowerNegativeL1 => GetValue(1100015206655UL, 0.001),
|
||||
EMVariable.ApparentEnergyNegativeL1 => GetValue(1100015468799UL, 0.001),
|
||||
EMVariable.CurrentL1 => GetValue(1100031983871UL, 0.001),
|
||||
EMVariable.VoltageL1 => GetValue(1100048761087UL, 0.001),
|
||||
EMVariable.PowerFactorL1 => GetValue(1100065538303UL, 0.001),
|
||||
EMVariable.ActivePowerPositiveL2 => GetValue(1100199756031UL, 0.001),
|
||||
EMVariable.ActiveEnergyPositiveL2 => GetValue(1100200018175UL, 0.001),
|
||||
EMVariable.ActivePowerNegativeL2 => GetValue(1100216533247UL, 0.001),
|
||||
EMVariable.ActiveEnergyNegativeL2 => GetValue(1100216795391UL, 0.001),
|
||||
EMVariable.ReactivePowerPositiveL2 => GetValue(1100233310463UL, 0.001),
|
||||
EMVariable.ReactiveEnergyPositiveL2 => GetValue(1100233572607UL, 0.001),
|
||||
EMVariable.ReactivePowerNegativeL2 => GetValue(1100250087679UL, 0.001),
|
||||
EMVariable.ReactiveEnergyNegativeL2 => GetValue(1100250349823UL, 0.001),
|
||||
EMVariable.ApparentPowerPositiveL2 => GetValue(1100333973759UL, 0.001),
|
||||
EMVariable.ApparentEnergyPositiveL2 => GetValue(1100334235903UL, 0.001),
|
||||
EMVariable.ApparentPowerNegativeL2 => GetValue(1100350750975UL, 0.001),
|
||||
EMVariable.ApparentEnergyNegativeL2 => GetValue(1100351013119UL, 0.001),
|
||||
EMVariable.CurrentL2 => GetValue(1100367528191UL, 0.001),
|
||||
EMVariable.VoltageL2 => GetValue(1100384305407UL, 0.001),
|
||||
EMVariable.PowerFactorL2 => GetValue(1100401082623UL, 0.001),
|
||||
EMVariable.ActivePowerPositiveL3 => GetValue(1100535300351UL, 0.001),
|
||||
EMVariable.ActiveEnergyPositiveL3 => GetValue(1100535562495UL, 0.001),
|
||||
EMVariable.ActivePowerNegativeL3 => GetValue(1100552077567UL, 0.001),
|
||||
EMVariable.ActiveEnergyNegativeL3 => GetValue(1100552339711UL, 0.001),
|
||||
EMVariable.ReactivePowerPositiveL3 => GetValue(1100568854783UL, 0.001),
|
||||
EMVariable.ReactiveEnergyPositiveL3 => GetValue(1100569116927UL, 0.001),
|
||||
EMVariable.ReactivePowerNegativeL3 => GetValue(1100585631999UL, 0.001),
|
||||
EMVariable.ReactiveEnergyNegativeL3 => GetValue(1100585894143UL, 0.001),
|
||||
EMVariable.ApparentPowerPositiveL3 => GetValue(1100669518079UL, 0.001),
|
||||
EMVariable.ApparentEnergyPositiveL3 => GetValue(1100669780223UL, 0.001),
|
||||
EMVariable.ApparentPowerNegativeL3 => GetValue(1100686295295UL, 0.001),
|
||||
EMVariable.ApparentEnergyNegativeL3 => GetValue(1100686557439UL, 0.001),
|
||||
EMVariable.CurrentL3 => GetValue(1100703072511UL, 0.001),
|
||||
EMVariable.VoltageL3 => GetValue(1100719849727UL, 0.001),
|
||||
EMVariable.PowerFactorL3 => GetValue(1100736626943UL, 0.001),
|
||||
_ => double.NaN,
|
||||
};
|
||||
}
|
||||
|
||||
@@ -1,4 +1,5 @@
|
||||
using System.Reflection;
|
||||
using System.Runtime.CompilerServices;
|
||||
using TestApp.Configuration;
|
||||
using TestApp.Driver;
|
||||
|
||||
@@ -9,8 +10,7 @@ namespace TestApp
|
||||
private static ConfigurationManager _ConfigurationManager;
|
||||
private static IChargerDriver? _Driver;
|
||||
private static EnergyManager _EnergyManager;
|
||||
private static ProcessVariable _ProcessVariable;
|
||||
private static PidController _PidController;
|
||||
private static CurrentLimitter _CurrentLimitter;
|
||||
|
||||
|
||||
static async Task Main(string[] args)
|
||||
@@ -26,17 +26,24 @@ namespace TestApp
|
||||
}
|
||||
|
||||
_EnergyManager = await EnergyManager.Create();
|
||||
_CurrentLimitter = new CurrentLimitter(_ConfigurationManager, _EnergyManager);
|
||||
|
||||
while (true)
|
||||
{
|
||||
try
|
||||
{
|
||||
// TODO I1, I2, I3 von Wallbox mit I1-3 von Zähler per Kombinatorik max vom Haus ausrechnen
|
||||
// newLoadingCurrent = maxSicherung - maxHaus
|
||||
var measurement = _EnergyManager.GetValue(_ProcessVariable);
|
||||
var newLoadingCurrent = _PidController.Update(measurement);
|
||||
//if (newLoadingCurrent < 6) { newLoadingCurrent = 0; }
|
||||
_Driver?.SetLoadingCurrent(newLoadingCurrent);
|
||||
if (_Driver is null) {
|
||||
Thread.Sleep(1000);
|
||||
continue;
|
||||
}
|
||||
|
||||
var newCurrent = double.MaxValue;
|
||||
if (_ConfigurationManager.Settings.Mode == 2) {
|
||||
newCurrent = GetMode2LoadingCurrent();
|
||||
}
|
||||
|
||||
newCurrent = _CurrentLimitter.GetLimitedCurrent(_Driver, newCurrent);
|
||||
_Driver?.SetLoadingCurrent(newCurrent);
|
||||
} catch (Exception ex)
|
||||
{
|
||||
Console.WriteLine($"Error in main loop: {ex.Message}");
|
||||
@@ -45,10 +52,26 @@ namespace TestApp
|
||||
}
|
||||
}
|
||||
|
||||
private static double GetMode2LoadingCurrent()
|
||||
{
|
||||
var minNegativePower = _ConfigurationManager.Settings.MinNegativePower ?? Settings.DEFAULT_MIN_NEGATIVE_POWER;
|
||||
|
||||
var negativePower = _EnergyManager.GetValue(EMVariable.ActivePowerNegative);
|
||||
|
||||
if (negativePower < minNegativePower) { return 0; }
|
||||
|
||||
var sparePower = negativePower - minNegativePower;
|
||||
|
||||
var i1 = sparePower / _EnergyManager.GetValue(EMVariable.VoltageL1);
|
||||
var i2 = sparePower / _EnergyManager.GetValue(EMVariable.VoltageL2);
|
||||
var i3 = sparePower / _EnergyManager.GetValue(EMVariable.VoltageL3);
|
||||
|
||||
return Math.Min(Math.Min(i1, i2), i3);
|
||||
}
|
||||
|
||||
private static void OnSettingsChanged(object? sender, Settings settings)
|
||||
{
|
||||
UpdateDriverSettings(settings);
|
||||
UpdateControllerSettings(settings);
|
||||
}
|
||||
|
||||
private static void UpdateDriverSettings(Settings settings) {
|
||||
@@ -84,35 +107,5 @@ namespace TestApp
|
||||
_Driver.Port = settings.ChargerPort ?? Settings.DEFAULT_CHARGER_PORT;
|
||||
}
|
||||
|
||||
private static void UpdateControllerSettings(Settings settings)
|
||||
{
|
||||
var allModeSettings = settings.ModeSettings ?? Array.Empty<ModeSettings>();
|
||||
if (!allModeSettings.Any()) {
|
||||
allModeSettings = new ModeSettings[]{
|
||||
new ModeSettings() {
|
||||
ProcessVariable = ProcessVariable.ActivePowerPositive,
|
||||
SetPoint = 0,
|
||||
PositivePid = new PidSetting(),
|
||||
NegativePid = new PidSetting(),
|
||||
}
|
||||
};
|
||||
}
|
||||
|
||||
var mode = settings.Mode;
|
||||
if (mode < 0) { mode = 0; }
|
||||
if (mode >= allModeSettings.Length) { mode = allModeSettings.Length - 1; }
|
||||
|
||||
var modeSetting = allModeSettings[mode];
|
||||
|
||||
if (_ProcessVariable != modeSetting.ProcessVariable)
|
||||
{
|
||||
_PidController = new PidController();
|
||||
_ProcessVariable = modeSetting.ProcessVariable;
|
||||
}
|
||||
|
||||
_PidController.SetPoint = modeSetting.SetPoint;
|
||||
_PidController.PositiveSettings = modeSetting.PositivePid ?? new PidSetting();
|
||||
_PidController.NegativeSettings = modeSetting.NegativePid ?? new PidSetting();
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user