changed modbus communication
moved from all requests at the same time to one request after each other through state machine
This commit is contained in:
254
PLC/PLC.tmc
254
PLC/PLC.tmc
File diff suppressed because one or more lines are too long
@@ -36,6 +36,9 @@ VAR
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// Current state
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_iState : INT := 0;
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// current state for cyclic data read
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_iStateCyclicData : INT := 0;
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// State for startup state machine
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_iStateStartup : INT := 0;
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@@ -82,7 +85,7 @@ VAR
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_fbReadACValues : FB_MBReadRegs;
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// Time for polling for current dc values and check for inverter error
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_timPollingDelay : TIME := T#1S;
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_timPollingDelay : TIME := T#500MS;
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// Time for setting the current power
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_timSetPowerDelay : TIME := T#250MS;
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@@ -149,9 +152,6 @@ VAR
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// Current PCU state and alarm messages
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_stPCUState : ST_KACU_PCU;
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// Current PCU cabinet temperature
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_iCabTemp : INT;
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// Current PCU state and alarm messages
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_stPCUStateDebug : ST_KACU_PCU;
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@@ -355,7 +355,7 @@ CASE _iState OF
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// => 10% = 1000
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// Writing a register with scaling factor = value / (10^SF)
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//_iWSetPct := LREAL_TO_INT((_rPowerInternal*100)/(_rWMax * EXPT(10,-2)));
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_iWSetPct := REAL_TO_INT((_rPowerInternal*100) / (_rWMax * EXPT(10,_iWSetPctSF)));
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_iWSetPct := LREAL_TO_INT((_rPowerInternal*100) / (_rWMax * EXPT(10,_iWSetPctSF)));
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ELSE
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_iWSetPct := 0;
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END_IF
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@@ -466,118 +466,217 @@ END_IF
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// Fetch cyclic data with polling timer
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_tonPollingTimer(IN := TRUE, PT := _timPollingDelay);
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// Write requested state
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_fbWriteRequestedState(
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sIPAddr:= sInverterIPAddr,
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nTCPPort:= 502,
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nUnitID:= 16#01,
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nMBAddr:= REQUESTED_STATE_REGISTER,
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nValue:= INT_TO_WORD(_eRequestedState),
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bExecute:= _tonPollingTimer.Q AND (NOT _fbWriteRequestedState.bBusy),
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tTimeout:= _tTimeoutPolling,
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bBusy=> ,
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bError=> ,
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nErrId=> );
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CASE _iStateCyclicData OF
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0: // init state
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IF _tonPollingTimer.Q THEN
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_tonPollingTimer(IN := FALSE);
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_iStateCyclicData := 10;
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END_IF
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IF (NOT _fbWriteRequestedState.bBusy) THEN
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IF _fbWriteRequestedState.bError THEN
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_iCurrentErrorCountWRS := _iCurrentErrorCountWRS + 1;
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_iErrorCountWRS := _iErrorCountWRS + 1;
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_iErrorIDWRS := _fbWriteRequestedState.nErrId;
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ELSE
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_iCurrentErrorCountWRS := 0;
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END_IF
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END_IF
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// Write current power command
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_fbWritePowerCommand(
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sIPAddr:= sInverterIPAddr,
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nTCPPort:= 502,
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nUnitID:= 16#01,
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nQuantity := 1,
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nMBAddr:= W_SET_PCT,
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cbLength := SIZEOF(_iWSetPct),
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pSrcAddr:= ADR(_iWSetPct),
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bExecute:= _tonPollingTimer.Q AND (NOT _fbWritePowerCommand.bBusy),
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tTimeout:= _tTimeoutPolling,
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bBusy=> ,
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bError=> ,
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nErrId=> );
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IF (NOT _fbWritePowerCommand.bBusy) THEN
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IF _fbWritePowerCommand.bError THEN
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_iCurrentErrorCountWPC := _iCurrentErrorCountWPC + 1;
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_iErrorCountWPC := _iErrorCountWPC + 1;
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_iErrorIDWPC := _fbWritePowerCommand.nErrId;
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ELSE
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_iCurrentErrorCountWPC := 0;
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END_IF
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END_IF
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10: // Write requested state
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_fbWriteRequestedState(
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sIPAddr:= sInverterIPAddr,
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nTCPPort:= 502,
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nUnitID:= 16#01,
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nMBAddr:= REQUESTED_STATE_REGISTER,
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nValue:= INT_TO_WORD(_eRequestedState),
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bExecute:= TRUE,
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tTimeout:= _tTimeoutPolling,
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bBusy=> ,
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bError=> ,
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nErrId=> );
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IF (NOT _fbWriteRequestedState.bBusy) THEN
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_fbWriteRequestedState(bExecute := FALSE);
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_iStateCyclicData := 20;
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IF _fbWriteRequestedState.bError THEN
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_iCurrentErrorCountWRS := _iCurrentErrorCountWRS + 1;
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_iErrorCountWRS := _iErrorCountWRS + 1;
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_iErrorIDWRS := _fbWriteRequestedState.nErrId;
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ELSE
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_iCurrentErrorCountWRS := 0;
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END_IF
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END_IF
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20: // Write current power command
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_fbWritePowerCommand(
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sIPAddr:= sInverterIPAddr,
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nTCPPort:= 502,
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nUnitID:= 16#01,
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nQuantity := 1,
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nMBAddr:= W_SET_PCT,
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cbLength := SIZEOF(_iWSetPct),
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pSrcAddr:= ADR(_iWSetPct),
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bExecute:= TRUE,
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tTimeout:= _tTimeoutPolling,
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bBusy=> ,
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bError=> ,
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nErrId=> );
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IF (NOT _fbWritePowerCommand.bBusy) THEN
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_fbWritePowerCommand(bExecute := FALSE);
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_iStateCyclicData := 30;
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IF _fbWritePowerCommand.bError THEN
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_iCurrentErrorCountWPC := _iCurrentErrorCountWPC + 1;
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_iErrorCountWPC := _iErrorCountWPC + 1;
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_iErrorIDWPC := _fbWritePowerCommand.nErrId;
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ELSE
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_iCurrentErrorCountWPC := 0;
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END_IF
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END_IF
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30: // Read current state
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_fbReadCurrentState(
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sIPAddr:= sInverterIPAddr,
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nTCPPort:= 502,
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nUnitID:= 16#01,
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nQuantity:= 1,
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nMBAddr:= CURRENT_STATE_REGISTER,
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cbLength:= SIZEOF(_eCurrentState),
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pDestAddr:= ADR(_eCurrentState),
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bExecute:= TRUE,
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tTimeout:= _tTimeoutPolling,
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bBusy=> ,
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bError=> ,
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nErrId=> ,
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cbRead=> );
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IF (NOT _fbReadCurrentState.bBusy) THEN
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_fbReadCurrentState(bExecute := FALSE);
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_iStateCyclicData := 40;
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IF _fbReadCurrentState.bError THEN
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_iCurrentErrorCountRCS := _iCurrentErrorCountRCS + 1;
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_iErrorCountRCS := _iErrorCountRCS + 1;
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_iErrorIDRCS := _fbReadCurrentState.nErrId;
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ELSE
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_iCurrentErrorCountRCS := 0;
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END_IF
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END_IF
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40: // Read current pcu status
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_fbReadPCUState(
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sIPAddr:= sInverterIPAddr,
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nTCPPort:= 502,
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nUnitID:= 16#01,
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nQuantity:= 2,
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nMBAddr:= PCU_STATUS_START_REGISTER,
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cbLength:= SIZEOF(_stPCUState),
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pDestAddr:= ADR(_stPCUState),
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bExecute:= TRUE,
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tTimeout:= _tTimeoutPolling,
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bBusy=> ,
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bError=> ,
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nErrId=> ,
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cbRead=> );
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IF (NOT _fbReadPCUState.bBusy) THEN
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_fbReadPCUState(bExecute := FALSE);
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_iStateCyclicData := 50;
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IF _fbReadPCUState.bError THEN
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_iCurrentErrorCountRPCUS := _iCurrentErrorCountRPCUS + 1;
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_iErrorCountRPCUS := _iErrorCountRPCUS + 1;
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_iErrorIDRPCUS := _fbReadPCUState.nErrId;
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IF _iCurrentErrorCountRPCUS >= GVL_CONFIG.udiMaxConsecutiveInvError THEN
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_xErrorCyclicData := TRUE;
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END_IF
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ELSE
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_iCurrentErrorCountRPCUS := 0;
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END_IF
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END_IF
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50: // Read current dc values
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_fbReadDCValues(
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sIPAddr:= sInverterIPAddr,
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nTCPPort:= 502,
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nUnitID:= 16#01, // 16#FF for Modbus TCP
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nQuantity:= 6,
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nMBAddr:= DC_VALUES_START_REGISTER,
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cbLength:= SIZEOF(_awCurrentDCValues),
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pDestAddr:= ADR(_awCurrentDCValues),
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bExecute:= TRUE,
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tTimeout:= _tTimeoutPolling,
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bBusy=> ,
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bError=> ,
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nErrId=> ,
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cbRead=> );
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// Check if reading modbus register is done
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IF (NOT _fbReadDCValues.bBusy) THEN
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_fbReadDCValues(bExecute := FALSE);
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_iStateCyclicData := 60;
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// If there was no error and the converter has no error continue
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IF (NOT _fbReadDCValues.bError) THEN
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stCurrentValues.rActDCCurrent := LREAL_TO_REAL(WORD_TO_INT(_awCurrentDCValues[0]) * EXPT(10,WORD_TO_INT(_awCurrentDCValues[1])));
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stCurrentValues.rActDCVoltage := LREAL_TO_REAL(WORD_TO_UINT(_awCurrentDCValues[2]) * EXPT(10,WORD_TO_INT(_awCurrentDCValues[3])));
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stCurrentValues.rActDCPower := LREAL_TO_REAL(WORD_TO_INT(_awCurrentDCValues[4]) * EXPT(10,WORD_TO_INT(_awCurrentDCValues[5])));
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ELSE
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// Dont throw comm error here because this is just
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// informational data and not process critical
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stCurrentValues.rActDCCurrent := 0.0;
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stCurrentValues.rActDCVoltage := 0.0;
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stCurrentValues.rActDCPower := 0.0;
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_iErrorCountRDCV := _iErrorCountRDCV + 1;
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_iErrorIDRDCV := _fbReadDCValues.nErrId;
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END_IF
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END_IF
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60: // Read current ac values
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_fbReadACValues(
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sIPAddr:= sInverterIPAddr,
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nTCPPort:= 502,
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nUnitID:= 16#01, // 16#FF for Modbus TCP
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nQuantity:= 22,
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nMBAddr:= AC_VALUES_START_REGISTER,
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cbLength:= SIZEOF(_awCurrentACValues),
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pDestAddr:= ADR(_awCurrentACValues),
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bExecute:= TRUE,
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tTimeout:= _tTimeoutPolling,
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bBusy=> ,
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bError=> ,
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nErrId=> ,
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cbRead=> );
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// Check if reading mudbus register is done
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IF (NOT _fbReadACValues.bBusy) THEN
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_fbReadACValues(bExecute := FALSE);
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_iStateCyclicData := 0;
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// If there was no error and the converter has no error continue
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IF (NOT _fbReadACValues.bError) THEN
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stCurrentValues.rActACCurrent := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[0]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[4])));
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stCurrentValues.rActtACPhaseACurrent := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[1]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[4])));
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stCurrentValues.rActtACPhaseBCurrent := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[2]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[4])));
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stCurrentValues.rActtACPhaseCCurrent := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[3]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[4])));
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stCurrentValues.rActACPower := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[12]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[13])));
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stCurrentValues.rActACFreq := LREAL_TO_REAL(WORD_TO_UINT(_awCurrentACValues[14]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[15])));
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stCurrentValues.rActApparentPower := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[16]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[17])));
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stCurrentValues.rActReactivePower := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[18]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[19])));
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stCurrentValues.rActPowerFactor := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[20]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[21])));
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ELSE
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// Dont throw comm error here because this is just
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// informational data and not process critical
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stCurrentValues.rActACCurrent := 0.0;
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stCurrentValues.rActtACPhaseACurrent := 0.0;
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stCurrentValues.rActtACPhaseBCurrent := 0.0;
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stCurrentValues.rActtACPhaseCCurrent := 0.0;
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stCurrentValues.rActACPower := 0.0;
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stCurrentValues.rActACFreq := 0.0;
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stCurrentValues.rActApparentPower := 0.0;
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stCurrentValues.rActReactivePower := 0.0;
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stCurrentValues.rActPowerFactor := 0.0;
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_iErrorCountRACV := _iErrorCountRACV + 1;
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_iErrorIDRACV := _fbReadACValues.nErrId;
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END_IF
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END_IF
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END_CASE
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// Read current state
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_fbReadCurrentState(
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sIPAddr:= sInverterIPAddr,
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nTCPPort:= 502,
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nUnitID:= 16#01,
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nQuantity:= 1,
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nMBAddr:= CURRENT_STATE_REGISTER,
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cbLength:= SIZEOF(_eCurrentState),
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pDestAddr:= ADR(_eCurrentState),
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bExecute:= _tonPollingTimer.Q AND (NOT _fbReadCurrentState.bBusy),
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tTimeout:= _tTimeoutPolling,
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bBusy=> ,
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bError=> ,
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nErrId=> ,
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cbRead=> );
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IF (NOT _fbReadCurrentState.bBusy) THEN
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IF _fbReadCurrentState.bError THEN
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_iCurrentErrorCountRCS := _iCurrentErrorCountRCS + 1;
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_iErrorCountRCS := _iErrorCountRCS + 1;
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_iErrorIDRCS := _fbReadCurrentState.nErrId;
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ELSE
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_iCurrentErrorCountRCS := 0;
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END_IF
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END_IF
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// evaluate inverter state
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IF _eCurrentState = E_KACO_CURRENT_STATE.GRID_CONNECTED OR _eCurrentState = E_KACO_CURRENT_STATE.THROTTLED THEN
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xActive := TRUE;
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ELSE
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xActive := FALSE;
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END_IF
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// Read current pcu status
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_fbReadPCUState(
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sIPAddr:= sInverterIPAddr,
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nTCPPort:= 502,
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nUnitID:= 16#01,
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nQuantity:= 2,
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nMBAddr:= PCU_STATUS_START_REGISTER,
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cbLength:= SIZEOF(_stPCUState),
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pDestAddr:= ADR(_stPCUState),
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bExecute:= _tonPollingTimer.Q AND (NOT _fbReadPCUState.bBusy),
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tTimeout:= _tTimeoutPolling,
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bBusy=> ,
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bError=> ,
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nErrId=> ,
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cbRead=> );
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IF (NOT _fbReadPCUState.bBusy) THEN
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IF _fbReadPCUState.bError THEN
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_iCurrentErrorCountRPCUS := _iCurrentErrorCountRPCUS + 1;
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_iErrorCountRPCUS := _iErrorCountRPCUS + 1;
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_iErrorIDRPCUS := _fbReadPCUState.nErrId;
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IF _iCurrentErrorCountRPCUS >= GVL_CONFIG.udiMaxConsecutiveInvError THEN
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_xErrorCyclicData := TRUE;
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END_IF
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ELSE
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_iCurrentErrorCountRPCUS := 0;
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END_IF
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END_IF
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// evaluate inverter errors
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IF ((_stPCUState.ePCUState = E_KACO_PCU_STATE.ERROR) OR (_stPCUState.ePCUError <> E_KACO_PCU_ERROR.NO_EVENT)) AND (_stPCUState.ePCUError <> 11) THEN
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// ignore undervoltage error when not enabled
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_stPCUStateDebug := _stPCUState;
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@@ -595,87 +694,7 @@ IF _eCurrentState = E_KACO_CURRENT_STATE.FAULT AND xReleasePower THEN
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_xErrorInverter := TRUE;
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END_IF
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// Read current dc values
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_fbReadDCValues(
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sIPAddr:= sInverterIPAddr,
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nTCPPort:= 502,
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nUnitID:= 16#01, // 16#FF for Modbus TCP
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nQuantity:= 6,
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nMBAddr:= DC_VALUES_START_REGISTER,
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cbLength:= SIZEOF(_awCurrentDCValues),
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pDestAddr:= ADR(_awCurrentDCValues),
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bExecute:= _tonPollingTimer.Q AND (NOT _fbReadDCValues.bBusy),
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tTimeout:= _tTimeoutPolling,
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bBusy=> ,
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bError=> ,
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nErrId=> ,
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cbRead=> );
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// Check if reading modbus register is done
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IF (NOT _fbReadDCValues.bBusy) THEN
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// If there was no error and the converter has no error continue
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IF (NOT _fbReadDCValues.bError) THEN
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stCurrentValues.rActDCCurrent := LREAL_TO_REAL(WORD_TO_INT(_awCurrentDCValues[0]) * EXPT(10,WORD_TO_INT(_awCurrentDCValues[1])));
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stCurrentValues.rActDCVoltage := LREAL_TO_REAL(WORD_TO_UINT(_awCurrentDCValues[2]) * EXPT(10,WORD_TO_INT(_awCurrentDCValues[3])));
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stCurrentValues.rActDCPower := LREAL_TO_REAL(WORD_TO_INT(_awCurrentDCValues[4]) * EXPT(10,WORD_TO_INT(_awCurrentDCValues[5])));
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ELSE
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// Dont throw comm error here because this is just
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// informational data and not process critical
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stCurrentValues.rActDCCurrent := 0.0;
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stCurrentValues.rActDCVoltage := 0.0;
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stCurrentValues.rActDCPower := 0.0;
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_iErrorCountRDCV := _iErrorCountRDCV + 1;
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_iErrorIDRDCV := _fbReadDCValues.nErrId;
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END_IF
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END_IF
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// Read current ac values
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_fbReadACValues(
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sIPAddr:= sInverterIPAddr,
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nTCPPort:= 502,
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nUnitID:= 16#01, // 16#FF for Modbus TCP
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nQuantity:= 22,
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nMBAddr:= AC_VALUES_START_REGISTER,
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cbLength:= SIZEOF(_awCurrentACValues),
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pDestAddr:= ADR(_awCurrentACValues),
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bExecute:= _tonPollingTimer.Q AND (NOT _fbReadACValues.bBusy),
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tTimeout:= _tTimeoutPolling,
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bBusy=> ,
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bError=> ,
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nErrId=> ,
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cbRead=> );
|
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// Check if reading mudbus register is done
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IF (NOT _fbReadACValues.bBusy) THEN
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// If there was no error and the converter has no error continue
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IF (NOT _fbReadACValues.bError) THEN
|
||||
stCurrentValues.rActACCurrent := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[0]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[4])));
|
||||
stCurrentValues.rActtACPhaseACurrent := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[1]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[4])));
|
||||
stCurrentValues.rActtACPhaseBCurrent := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[2]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[4])));
|
||||
stCurrentValues.rActtACPhaseCCurrent := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[3]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[4])));
|
||||
stCurrentValues.rActACPower := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[12]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[13])));
|
||||
stCurrentValues.rActACFreq := LREAL_TO_REAL(WORD_TO_UINT(_awCurrentACValues[14]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[15])));
|
||||
stCurrentValues.rActApparentPower := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[16]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[17])));
|
||||
stCurrentValues.rActReactivePower := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[18]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[19])));
|
||||
stCurrentValues.rActPowerFactor := LREAL_TO_REAL(WORD_TO_INT(_awCurrentACValues[20]) * EXPT(10,WORD_TO_INT(_awCurrentACValues[21])));
|
||||
ELSE
|
||||
// Dont throw comm error here because this is just
|
||||
// informational data and not process critical
|
||||
stCurrentValues.rActACCurrent := 0.0;
|
||||
stCurrentValues.rActtACPhaseACurrent := 0.0;
|
||||
stCurrentValues.rActtACPhaseBCurrent := 0.0;
|
||||
stCurrentValues.rActtACPhaseCCurrent := 0.0;
|
||||
stCurrentValues.rActACPower := 0.0;
|
||||
stCurrentValues.rActACFreq := 0.0;
|
||||
stCurrentValues.rActApparentPower := 0.0;
|
||||
stCurrentValues.rActReactivePower := 0.0;
|
||||
stCurrentValues.rActPowerFactor := 0.0;
|
||||
_iErrorCountRACV := _iErrorCountRACV + 1;
|
||||
_iErrorIDRACV := _fbReadACValues.nErrId;
|
||||
END_IF
|
||||
END_IF
|
||||
|
||||
// evaluate modbus errors
|
||||
IF _iCurrentErrorCountRPCUS >= GVL_CONFIG.udiMaxConsecutiveInvError OR
|
||||
_iCurrentErrorCountRCS >= GVL_CONFIG.udiMaxConsecutiveInvError OR
|
||||
_iCurrentErrorCountWPC >= GVL_CONFIG.udiMaxConsecutiveInvError OR
|
||||
@@ -702,11 +721,6 @@ END_IF
|
||||
|
||||
IF _fbCyclicDataAlarm.eConfirmationState = TcEventConfirmationState.WaitForConfirmation AND xReset THEN
|
||||
_fbCyclicDataAlarm.Confirm(0);
|
||||
END_IF
|
||||
|
||||
// Reset polling timer
|
||||
IF _tonPollingTimer.Q THEN
|
||||
_tonPollingTimer(IN := FALSE);
|
||||
END_IF]]></ST>
|
||||
</Implementation>
|
||||
</Action>
|
||||
@@ -786,7 +800,9 @@ END_VAR
|
||||
<Implementation>
|
||||
<ST><![CDATA[_sName := Name;
|
||||
|
||||
_fbErrorInverterAlarm.ipArguments.Clear().AddString(_sName);]]></ST>
|
||||
_fbErrorInverterAlarm.ipArguments.Clear().AddString(_sName);
|
||||
_fbCyclicDataAlarm.ipArguments.Clear().AddString(_sName);
|
||||
_fbHeartBeatAlarm.ipArguments.Clear().AddString(_sName);]]></ST>
|
||||
</Implementation>
|
||||
</Set>
|
||||
</Property>
|
||||
|
||||
@@ -263,7 +263,7 @@
|
||||
</System>
|
||||
<Plc>
|
||||
<Project GUID="{9AE64910-5EB2-4866-93FD-EFE059C38C36}" Name="PLC" PrjFilePath="PLC\PLC.plcproj" TmcFilePath="PLC\PLC.tmc" ReloadTmc="true" AmsPort="851" FileArchiveSettings="#x000e" CopyTmcToTarget="true" CopyTpyToTarget="false" SymbolicMapping="true">
|
||||
<Instance Id="#x08502000" TcSmClass="TComPlcObjDef" KeepUnrestoredLinks="2" TmcHash="{3B474192-ABB3-08F3-5793-A53CD21DF750}" TmcPath="PLC\PLC.tmc">
|
||||
<Instance Id="#x08502000" TcSmClass="TComPlcObjDef" KeepUnrestoredLinks="2" TmcHash="{B0096793-1726-0903-97E7-B7D9EB7ED965}" TmcPath="PLC\PLC.tmc">
|
||||
<Name>PLC Instance</Name>
|
||||
<CLSID ClassFactory="TcPlc30">{08500001-0000-0000-F000-000000000064}</CLSID>
|
||||
<Vars VarGrpType="2" AreaNo="1">
|
||||
|
||||
Reference in New Issue
Block a user