/// /// Copyright (c) 2019 Sensus Slovensko a.s. /// using System; using System.Collections.Generic; using log4net; using TBF.Boxes; using TBF.BenchControl.GenericDevices; namespace TBF.BenchControl.Elde.FlowMeterDewa { public class FlowMeter : ComponentBase, IFlowMeter { private static readonly ILog log = LogManager.GetLogger(typeof(FlowMeter)); public override string ToString() { return string.Format("FlowMeter({0})", Cfg.ToString(1)); } readonly FlowMeterCfg flowMeterCfg; readonly ControlBoardDev controlBoard; readonly IFlowMeter flowMeter1; readonly IFlowMeter flowMeter2; readonly IFlowMeter flowMeter3; readonly double nominalFlow; readonly double ltrPerPulse; readonly int flowMetersCount; readonly int flowMetersBitfield; public int Idx1 { get { return flowMetersBitfield; } } public double NominalFlow { get { return nominalFlow; } } public double LtrPerPulse { get { return ltrPerPulse; } } double[] refFreq; /// 0..sum, 1..I11, 2..I12, 3..I13 int[] refPulses; public double LtrPerPulseCorrected(double flow, int rangeIx) { log.DebugFormat("LtrPerPulseCorrected({0}, {1}) started", flow, rangeIx); refFreq[0] = controlBoard.ReferenceFreqs(0); refFreq[1] = controlBoard.ReferenceFreqs(1); refFreq[2] = controlBoard.ReferenceFreqs(2); refFreq[3] = controlBoard.ReferenceFreqs(3); log.DebugFormat("refFreq[] = ({0}, {1}, {2}, {3})", refFreq[0], refFreq[1], refFreq[2], refFreq[3]); refFreq[1] = refFreq[0] - refFreq[2] - refFreq[3]; refPulses[0] = controlBoard.EtPulses(0); refPulses[2] = controlBoard.EtPulses2; refPulses[3] = controlBoard.EtPulses3; refPulses[1] = refPulses[0] - refPulses[2] - refPulses[3]; log.DebugFormat("refPulses[] = ({0}, {1}, {2}, {3})", refPulses[0], refPulses[1], refPulses[2], refPulses[3]); double flow1, flow2, flow3; double contribution1, contribution2, contribution3; if (refFreq[0] != 0) { double ltrPerPulseCorrected = 0; if (flowMeter1 != null) { double ratio = (double)refPulses[flowMeter1.Idx1] / (double)refPulses[0]; flow1 = flow * ratio; contribution1 = flowMeter1.LtrPerPulseCorrected(flow1, rangeIx) * ratio; ltrPerPulseCorrected += contribution1; log.DebugFormat("flowmeter1 = {0}, flow1 = {1}, contribution1 = {2}", flowMeter1.Name, flow1, contribution1); } if (flowMeter2 != null) { double ratio = (double)refPulses[flowMeter2.Idx1] / (double)refPulses[0]; flow2 = flow * ratio; contribution2 = flowMeter2.LtrPerPulseCorrected(flow2, rangeIx) * ratio; ltrPerPulseCorrected += contribution2; log.DebugFormat("flowmeter2 = {0}, flow2 = {1}, contribution2 = {2}", flowMeter2.Name, flow2, contribution2); } if (flowMeter3 != null) { double ratio = (double)refPulses[flowMeter3.Idx1] / (double)refPulses[0]; flow3 = flow * ratio; contribution3 = flowMeter3.LtrPerPulseCorrected(flow3, rangeIx) * ratio; ltrPerPulseCorrected += contribution3; log.DebugFormat("flowmeter3 = {0}, flow3 = {1}, contribution3 = {2}", flowMeter3.Name, flow3, contribution3); } log.DebugFormat("LtrPerPulseCorrected() returns {0}", ltrPerPulseCorrected); return ltrPerPulseCorrected; } else { log.DebugFormat("LtrPerPulseCorrected() returns 1"); return 1; } } public bool RangeEnabled(int ix) { return flowMeterCfg.RangeEnabled(ix); } public double GetTempLo(int ix) { return flowMeterCfg.GetTempLo(ix); } public double GetTempHi(int ix) { return flowMeterCfg.GetTempHi(ix); } public double GetPressLo(int ix) { return flowMeterCfg.GetPressLo(ix); } public double GetPressHi(int ix) { return flowMeterCfg.GetPressHi(ix); } public FlowMeter() { refFreq = new double[4]; refPulses = new int[4]; } public FlowMeter(Generic.IComponentCfg cfg, IList components) : base(cfg) { flowMeterCfg = cfg as FlowMeterCfg; controlBoard = (ControlBoardDev)TbfComponents.FindComponent(cfg.ParentName, components); if (controlBoard == null) throw new Exception("Cannot find " + Name + " parent"); if (!string.IsNullOrEmpty(flowMeterCfg.Flowmeter1)) flowMeter1 = TbfComponents.FindComponent(flowMeterCfg.Flowmeter1, components) as IFlowMeter; if (!string.IsNullOrEmpty(flowMeterCfg.Flowmeter2)) flowMeter2 = TbfComponents.FindComponent(flowMeterCfg.Flowmeter2, components) as IFlowMeter; if (!string.IsNullOrEmpty(flowMeterCfg.Flowmeter3)) flowMeter3 = TbfComponents.FindComponent(flowMeterCfg.Flowmeter3, components) as IFlowMeter; nominalFlow = 0; flowMetersCount = 0; flowMetersBitfield = 0; if (flowMeter1 != null) { nominalFlow += flowMeter1.NominalFlow; flowMetersBitfield |= (8 << flowMeter1.Idx1); flowMetersCount++; } if (flowMeter2 != null) { nominalFlow += flowMeter2.NominalFlow; flowMetersBitfield |= (8 << flowMeter2.Idx1); flowMetersCount++; } if (flowMeter3 != null) { nominalFlow += flowMeter3.NominalFlow; flowMetersBitfield |= (8 << flowMeter3.Idx1); flowMetersCount++; } if (flowMetersCount == 0) throw new Exception("Missing flowmeters"); ltrPerPulse = nominalFlow / (flowMetersCount * 7200.0); /// Nominal freq. is flowMetersCount * 2000 Hz (2000, 4000 or 6000 Hz) refFreq = new double[4]; refPulses = new int[4]; log.Debug(this.ToString()); } public double ReadFlow() { return controlBoard.ReferenceFlow; } public double ReadFrequency() { return controlBoard.ReferenceFreq; } /// /// Events: FlowDone, Error /// /// Reference to a variable for the flow in Bar /// ReadFlowOp instance reference casted to IOperaton public IOperation ReadFlowOp(ref DoubleBox flow) { return new ReadFlowOp(this, controlBoard, ref flow); } /// /// Events: flowDone, Error /// /// Reference to a variable for the flow in Bar /// Event returned when measurement done /// ReadFlowOp instance reference casted to IOperaton public IOperation ReadFlowOp(ref DoubleBox flow, Event flowDone) { return new ReadFlowOp(this, controlBoard, ref flow, flowDone); } } }