Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr Modelica_4.0.0_Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL.conf.json loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo", uses=false) [Timeout 180] "[:1:22-1:33:writable] Warning: Modelica only supports 32-bit signed integers! Transforming: 13743895347 into a real [:1:1-1:33:writable] Error: Class GC_set_max_heap_size not found in scope (looking for a function or record). Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo): time 0.0005178/0.0005178, allocations: 0 / 0, free: 0 / 0 " [Timeout remaining time 180] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo): time 0.0004049/0.0004049, allocations: 0 / 0, free: 0 / 0 " [Timeout remaining time 180] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.0.0+maint.om/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.0.0+maint.om/package.mo): time 0.3331/0.3331, allocations: 0 / 0, free: 0 / 0 " [Timeout remaining time 180] Using package Modelica with version 4.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.0.0+maint.om/package.mo) Using package Complex with version 4.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo) Using package ModelicaServices with version 4.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo) Running command: "" <> buildModelFMU(Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL,fileNamePrefix="Modelica_4_0_0_Modelica_Electrical_PowerConverters_Examples_ACAC_Dimmer_RL",fmuType="me_cs",version="3.0",platforms={"wasm"}) "" <> buildModelFMU(Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL,fileNamePrefix="Modelica_4_0_0_Modelica_Electrical_PowerConverters_Examples_ACAC_Dimmer_RL",fmuType="me_cs",version="3.0",platforms={"wasm"}) [Timeout 660] "Notification: Performance of FrontEnd - loaded program: time 3.085e-06/3.085e-06, allocations: 0 / 0, free: 0 / 0 Notification: Performance of FrontEnd - Absyn->SCode: time 1.489e-05/1.797e-05, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFInst.instantiate(Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL): time 0.0126/0.01262, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFInst.instExpressions: time 0.00882/0.02144, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFInst.updateImplicitVariability: time 0.001389/0.02283, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFTyping.typeComponents: time 0.003188/0.02602, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFTyping.typeBindings: time 0.004031/0.03005, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFTyping.typeClassSections: time 0.003026/0.03308, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFFlatten.flatten: time 0.002953/0.03603, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFFlatten.resolveConnections: time 0.00147/0.0375, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFEvalConstants.evaluate: time 0.00455/0.04205, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFSimplifyModel.simplify: time 0.00175/0.0438, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFPackage.collectConstants: time 0.0004123/0.04421, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFFlatten.collectFunctions: time 0.0005172/0.04473, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFScalarize.scalarize: time 0.000923/0.04565, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFVerifyModel.verify: time 0.001354/0.04701, allocations: 0 / 0, free: 0 / 0 Notification: Performance of NFConvertDAE.convert: time 0.004839/0.05185, allocations: 0 / 0, free: 0 / 0 Notification: Performance of FrontEnd - DAE generated: time 0.0002741/0.05212, allocations: 0 / 0, free: 0 / 0 Notification: Performance of FrontEnd: time 4.058e-06/0.05212, allocations: 0 / 0, free: 0 / 0 Notification: Performance of Transformations before backend: time 2.403e-05/0.05215, allocations: 0 / 0, free: 0 / 0 Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 203 * Number of variables: 203 Notification: Performance of Generate backend data structure: time 0.01377/0.06592, allocations: 0 / 0, free: 0 / 0 Notification: Performance of prepare preOptimizeDAE: time 0.0001604/0.06608, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt introduceOutputAliases (simulation): time 0.001108/0.06719, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt normalInlineFunction (simulation): time 0.001681/0.06887, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt evaluateParameters (simulation): time 0.007847/0.07672, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt simplifyIfEquations (simulation): time 0.0001826/0.0769, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt expandDerOperator (simulation): time 0.0005296/0.07743, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt clockPartitioning (simulation): time 0.006587/0.08402, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt findStateOrder (simulation): time 8.801e-05/0.08411, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt replaceEdgeChange (simulation): time 0.0003701/0.08448, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt inlineArrayEqn (simulation): time 4.672e-05/0.08452, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt removeEqualRHS (simulation): time 0.005315/0.08984, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt removeSimpleEquations (simulation): time 0.01676/0.1066, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt comSubExp (simulation): time 0.005012/0.1116, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt resolveLoops (simulation): time 0.002462/0.1141, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt evalFunc (simulation): time 0.0001035/0.1142, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preOpt encapsulateWhenConditions (simulation): time 0.003357/0.1175, allocations: 0 / 0, free: 0 / 0 Notification: Performance of pre-optimization done (n=84): time 0.000114/0.1177, allocations: 0 / 0, free: 0 / 0 Notification: Performance of matching and sorting (n=84): time 0.00999/0.1276, allocations: 0 / 0, free: 0 / 0 Notification: Performance of inlineWhenForInitialization (initialization): time 0.0002124/0.1279, allocations: 0 / 0, free: 0 / 0 Notification: Performance of selectInitializationVariablesDAE (initialization): time 0.00797/0.1358, allocations: 0 / 0, free: 0 / 0 Notification: Performance of collectPreVariables (initialization): time 0.0004621/0.1363, allocations: 0 / 0, free: 0 / 0 Notification: Performance of collectInitialEqns (initialization): time 0.001504/0.1378, allocations: 0 / 0, free: 0 / 0 Notification: Performance of collectInitialBindings (initialization): time 0.0005857/0.1384, allocations: 0 / 0, free: 0 / 0 Notification: Performance of simplifyInitialFunctions (initialization): time 0.00147/0.1398, allocations: 0 / 0, free: 0 / 0 Notification: Performance of setup shared object (initialization): time 0.0002995/0.1401, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preBalanceInitialSystem (initialization): time 0.00249/0.1426, allocations: 0 / 0, free: 0 / 0 Notification: Performance of partitionIndependentBlocks (initialization): time 0.002761/0.1454, allocations: 0 / 0, free: 0 / 0 Notification: Performance of analyzeInitialSystem (initialization): time 0.004863/0.1503, allocations: 0 / 0, free: 0 / 0 Notification: Performance of solveInitialSystemEqSystem (initialization): time 2.501e-05/0.1503, allocations: 0 / 0, free: 0 / 0 Notification: Performance of matching and sorting (n=121) (initialization): time 0.007661/0.1579, allocations: 0 / 0, free: 0 / 0 Notification: Performance of prepare postOptimizeDAE: time 8.981e-05/0.158, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt simplifyComplexFunction (initialization): time 3.101e-05/0.1581, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt tearingSystem (initialization): time 0.0007061/0.1588, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.001719/0.1605, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.006471/0.167, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.001648/0.1686, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.0002877/0.1689, allocations: 0 / 0, free: 0 / 0 Notification: Performance of preBalanceInitialSystem (initialization_lambda0): time 0.00435/0.1732, allocations: 0 / 0, free: 0 / 0 Notification: Performance of partitionIndependentBlocks (initialization_lambda0): time 0.002633/0.1759, allocations: 0 / 0, free: 0 / 0 Notification: Performance of analyzeInitialSystem (initialization_lambda0): time 0.00468/0.1806, allocations: 0 / 0, free: 0 / 0 Notification: Performance of solveInitialSystemEqSystem (initialization_lambda0): time 2.521e-05/0.1806, allocations: 0 / 0, free: 0 / 0 Notification: Performance of matching and sorting (n=121) (initialization_lambda0): time 0.007332/0.1879, allocations: 0 / 0, free: 0 / 0 Notification: Performance of prepare postOptimizeDAE: time 8.285e-05/0.188, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt simplifyComplexFunction (initialization): time 3.013e-05/0.188, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt tearingSystem (initialization): time 0.0006746/0.1887, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.001671/0.1904, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.006048/0.1964, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.00164/0.1981, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.000271/0.1983, allocations: 0 / 0, free: 0 / 0 Notification: Model statistics after passing the back-end for initialization: * Number of independent subsystems: 33 * Number of states: 0 () * Number of discrete variables: 40 (meanPower.y_last,$PRE.meanPower.y_last,$whenCondition7,$whenCondition6,$whenCondition5,$whenCondition4,$whenCondition3,$whenCondition2,$whenCondition1,iH01.mean1.y_last,$PRE.iH01.mean1.y_last,iH01.mean2.y_last,$PRE.iH01.mean2.y_last,iRMS.mean.y_last,$PRE.iRMS.mean.y_last,vH01.mean1.y_last,$PRE.vH01.mean1.y_last,vH01.mean2.y_last,$PRE.vH01.mean2.y_last,vRMS.mean.y_last,$PRE.vRMS.mean.y_last,triac.thyristor1.off,$PRE.triac.thyristor1.off,triac.thyristor2.off,$PRE.triac.thyristor2.off,adaptor.positiveThreshold[1].y,adaptor.negativeThreshold[1].y,adaptor.timerPositive[1].entryTime,$PRE.adaptor.timerPositive[1].entryTime,adaptor.timerNegative[1].entryTime,$PRE.adaptor.timerNegative[1].entryTime,adaptor.fire_p[1],adaptor.fire_n[1],trapezoid.T_start,$PRE.trapezoid.T_start,trapezoid.count,$PRE.trapezoid.count,$whenCondition8,$whenCondition9,$whenCondition10) * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for initialization (112): * Single equations (assignments): 110 * Array equations: 0 * Algorithm blocks: 1 * Record equations: 0 * When equations: 0 * If-equations: 0 * Equation systems (not torn): 0 * Torn equation systems: 1 * Mixed (continuous/discrete) equation systems: 0 Notification: Torn system details for strict tearing set: * Linear torn systems (#iteration vars, #inner vars, density): 0 systems * Non-linear torn systems (#iteration vars, #inner vars): 1 system {(2,7)} Notification: Performance of prepare postOptimizeDAE: time 0.001094/0.1994, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt lateInlineFunction (simulation): time 0.001146/0.2006, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt wrapFunctionCalls (simulation): time 0.007265/0.2078, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt inlineArrayEqn (simulation): time 2.265e-05/0.2079, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt constantLinearSystem (simulation): time 7.645e-06/0.2079, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt simplifysemiLinear (simulation): time 2.547e-05/0.2079, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt removeSimpleEquations (simulation): time 0.01449/0.2224, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt simplifyComplexFunction (simulation): time 1.333e-05/0.2224, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt solveSimpleEquations (simulation): time 0.001335/0.2237, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt tearingSystem (simulation): time 0.0006068/0.2243, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt inputDerivativesUsed (simulation): time 0.0003281/0.2247, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt calculateStrongComponentJacobians (simulation): time 0.006445/0.2311, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt calculateStateSetsJacobians (simulation): time 5.741e-06/0.2311, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt symbolicJacobian (simulation): time 0.009339/0.2405, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt removeConstants (simulation): time 0.003263/0.2437, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt simplifyTimeIndepFuncCalls (simulation): time 0.0009911/0.2447, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt simplifyAllExpressions (simulation): time 0.001489/0.2462, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt findZeroCrossings (simulation): time 0.001172/0.2474, allocations: 0 / 0, free: 0 / 0 Notification: Performance of postOpt collapseArrayExpressions (simulation): time 0.0002568/0.2476, allocations: 0 / 0, free: 0 / 0 Notification: Performance of sorting global known variables: time 0.005343/0.253, allocations: 0 / 0, free: 0 / 0 Notification: Performance of sort global known variables: time 8.658e-05/0.2531, allocations: 0 / 0, free: 0 / 0 Notification: Performance of remove unused functions: time 0.005579/0.2586, allocations: 0 / 0, free: 0 / 0 Notification: Model statistics after passing the back-end for simulation: * Number of independent subsystems: 3 * Number of states: 11 (loadInductor.i,iH01.mean2.x,iH01.mean1.x,iRMS.mean.x,vH01.mean2.x,vH01.mean1.x,vRMS.mean.x,meanPower.x,adaptor.filter[1].transferFunction[2].x_scaled[1],adaptor.filter[1].transferFunction[1].x_scaled[1],adaptor.filter[1].firstOrder.y) * Number of discrete variables: 27 (adaptor.positiveThreshold[1].y,adaptor.negativeThreshold[1].y,$whenCondition10,$whenCondition9,$whenCondition8,$whenCondition7,$whenCondition6,$whenCondition5,$whenCondition4,$whenCondition3,$whenCondition2,$whenCondition1,iH01.mean2.y_last,iH01.mean1.y_last,iRMS.mean.y_last,vH01.mean2.y_last,vH01.mean1.y_last,vRMS.mean.y_last,meanPower.y_last,trapezoid.count,trapezoid.T_start,adaptor.fire_n[1],adaptor.fire_p[1],adaptor.timerNegative[1].entryTime,adaptor.timerPositive[1].entryTime,triac.thyristor2.off,triac.thyristor1.off) * Number of discrete states: 10 (trapezoid.count,meanPower.x,vRMS.mean.x,vH01.mean1.x,vH01.mean2.x,iRMS.mean.x,iH01.mean1.x,iH01.mean2.x,triac.thyristor2.off,triac.thyristor1.off) * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for simulation (76): * Single equations (assignments): 64 * Array equations: 0 * Algorithm blocks: 0 * Record equations: 0 * When equations: 11 * If-equations: 0 * Equation systems (not torn): 0 * Torn equation systems: 1 * Mixed (continuous/discrete) equation systems: 0 Notification: Torn system details for strict tearing set: * Linear torn systems (#iteration vars, #inner vars, density): 0 systems * Non-linear torn systems (#iteration vars, #inner vars): 1 system {(2,7)} Notification: Performance of Backend phase and start with SimCode phase: time 0.011/0.2696, allocations: 0 / 0, free: 0 / 0 Notification: Performance of simCode: created initialization part: time 0.008702/0.2783, allocations: 0 / 0, free: 0 / 0 Notification: Performance of simCode: created event and clocks part: time 1.388e-05/0.2784, allocations: 0 / 0, free: 0 / 0 Notification: Performance of simCode: created simulation system equations: time 0.003025/0.2814, allocations: 0 / 0, free: 0 / 0 Notification: Performance of simCode: created of all other equations (e.g. parameter, nominal, assert, etc): time 0.005363/0.2867, allocations: 0 / 0, free: 0 / 0 Notification: Performance of simCode: created linear, non-linear and system jacobian parts: time 0.0585/0.3452, allocations: 0 / 0, free: 0 / 0 Notification: Performance of simCode: some other stuff during SimCode phase: time 0.003268/0.3485, allocations: 0 / 0, free: 0 / 0 Notification: Performance of simCode: alias equations: time 0.001988/0.3505, allocations: 0 / 0, free: 0 / 0 Notification: Performance of simCode: all other stuff during SimCode phase: time 0.003665/0.3542, allocations: 0 / 0, free: 0 / 0 Notification: Performance of SimCode: time 0.001067/0.3552, allocations: 0 / 0, free: 0 / 0 Notification: Performance of FMU modelDescription.xml: time 0.01968/0.3749, allocations: 0 / 0, free: 0 / 0 Notification: Performance of FMU model kernel: time 0.01071/0.3856, allocations: 0 / 0, free: 0 / 0 Notification: Performance of FMU translated model: time 0.05699/0.4426, allocations: 0 / 0, free: 0 / 0 Notification: Performance of FMU component link: time 9.527e-06/0.4426, allocations: 0 / 0, free: 0 / 0 Notification: Performance of FMU precompile: time 1.308e-05/0.4426, allocations: 0 / 0, free: 0 / 0 Notification: Performance of FMU write (0.3 MB unzipped): time 0.0005456/0.4432, allocations: 0 / 0, free: 0 / 0 Notification: Building FMU for platform 'wasm' (1/1). Notification: Finished FMU for platform 'wasm' (1/1). " [Timeout remaining time 660] simulate(Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL,startTime=0,stopTime=8,tolerance=1e-06,numberOfIntervals=80000,outputFormat="mat",variableFilter="time|voltageSensor.v|multiSensor.i|multiSensor.v|multiSensor.power|meanPower.y|vRMS.y|vH01.y_rms|vH01.y_arg|iRMS.y|iH01.y_rms|iH01.y_arg",fileNamePrefix="Modelica_4.0.0_Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL",simflags=" -alarm=240 -emit_protected -lv LOG_STATS -startTime=0 -stopTime=8 -tolerance=1e-06 -stepSize=0.0001 -r=Modelica_4.0.0_Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL_res.mat",resimulateExecutable="Modelica_4_0_0_Modelica_Electrical_PowerConverters_Examples_ACAC_Dimmer_RL.fmu") [Timeout 240] "" [Timeout remaining time 238] diffSimulationResults("Modelica_4.0.0_Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL_res.mat","/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/Reference-modelica.org/ReferenceResults/MAP-LIB_ReferenceResults/v4.0.0/Modelica/Electrical/PowerConverters/Examples/ACAC/Dimmer_RL/Dimmer_RL.csv","/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/files/Modelica_4.0.0_Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL.diff",relTol=0.003,relTolDiffMinMax=0.003,rangeDelta=0.001) [Timeout 660] "" [Timeout remaining time 659] "" Variables in the reference:time,voltageSensor.v,multiSensor.i,multiSensor.v,multiSensor.power,meanPower.y,vRMS.y,vH01.y_rms,vH01.y_arg,iRMS.y,iH01.y_rms,iH01.y_arg Variables in the result:LLoad,RLoad,S,Vrms,ZLoad,adaptor.constantFiringAngle,adaptor.f,adaptor.fCut,adaptor.filter[1].f,adaptor.filter[1].fCut,adaptor.filter[1].fa,adaptor.filter[1].firstOrder.T,adaptor.filter[1].firstOrder.initType,adaptor.filter[1].firstOrder.k,adaptor.filter[1].firstOrder.u,adaptor.filter[1].firstOrder.y,adaptor.filter[1].firstOrder.y_start,adaptor.filter[1].na,adaptor.filter[1].transferFunction[1].a[1],adaptor.filter[1].transferFunction[1].a[2],adaptor.filter[1].transferFunction[1].a_end,adaptor.filter[1].transferFunction[1].b[1],adaptor.filter[1].transferFunction[1].b[2],adaptor.filter[1].transferFunction[1].bb[1],adaptor.filter[1].transferFunction[1].bb[2],adaptor.filter[1].transferFunction[1].d,adaptor.filter[1].transferFunction[1].initType,adaptor.filter[1].transferFunction[1].na,adaptor.filter[1].transferFunction[1].nb,adaptor.filter[1].transferFunction[1].nx,adaptor.filter[1].transferFunction[1].u,adaptor.filter[1].transferFunction[1].x[1],adaptor.filter[1].transferFunction[1].x_scaled[1],adaptor.filter[1].transferFunction[1].x_start[1],adaptor.filter[1].transferFunction[1].y,adaptor.filter[1].transferFunction[1].y_start,adaptor.filter[1].transferFunction[2].a[1],adaptor.filter[1].transferFunction[2].a[2],adaptor.filter[1].transferFunction[2].a_end,adaptor.filter[1].transferFunction[2].b[1],adaptor.filter[1].transferFunction[2].b[2],adaptor.filter[1].transferFunction[2].bb[1],adaptor.filter[1].transferFunction[2].bb[2],adaptor.filter[1].transferFunction[2].d,adaptor.filter[1].transferFunction[2].initType,adaptor.filter[1].transferFunction[2].na,adaptor.filter[1].transferFunction[2].nb,adaptor.filter[1].transferFunction[2].nx,adaptor.filter[1].transferFunction[2].u,adaptor.filter[1].transferFunction[2].x[1],adaptor.filter[1].transferFunction[2].x_scaled[1],adaptor.filter[1].transferFunction[2].x_start[1],adaptor.filter[1].transferFunction[2].y,adaptor.filter[1].transferFunction[2].y_start,adaptor.filter[1].u,adaptor.filter[1].y,adaptor.filter[1].yStart,adaptor.fire_n[1],adaptor.fire_p[1],adaptor.firingAngle,adaptor.firingAngleMax,adaptor.firingAngleMin,adaptor.gain.k,adaptor.gain.u,adaptor.gain.y,adaptor.gainNegative[1].k,adaptor.gainNegative[1].u,adaptor.gainNegative[1].y,adaptor.gainPositive[1].k,adaptor.gainPositive[1].u,adaptor.gainPositive[1].y,adaptor.greaterNegative[1].u1,adaptor.greaterNegative[1].u2,adaptor.greaterNegative[1].y,adaptor.greaterPositive[1].u1,adaptor.greaterPositive[1].u2,adaptor.greaterPositive[1].y,adaptor.limiter.homotopyType,adaptor.limiter.simplifiedExpr,adaptor.limiter.strict,adaptor.limiter.u,adaptor.limiter.uMax,adaptor.limiter.uMin,adaptor.limiter.y,adaptor.m,adaptor.negativeThreshold[1].threshold,adaptor.negativeThreshold[1].u,adaptor.negativeThreshold[1].y,adaptor.positiveThreshold[1].threshold,adaptor.positiveThreshold[1].u,adaptor.positiveThreshold[1].y,adaptor.replicator.nout,adaptor.replicator.u,adaptor.replicator.y[1],adaptor.timerNegative[1].entryTime,adaptor.timerNegative[1].u,adaptor.timerNegative[1].y,adaptor.timerPositive[1].entryTime,adaptor.timerPositive[1].u,adaptor.timerPositive[1].y,adaptor.useConstantFiringAngle,adaptor.useFilter,adaptor.vStart[1],adaptor.v[1],der(adaptor.filter[1].firstOrder.y),der(adaptor.filter[1].transferFunction[1].x_scaled[1]),der(adaptor.filter[1].transferFunction[2].x_scaled[1]),der(iH01.mean1.x),der(iH01.mean2.x),der(iRMS.mean.x),der(loadInductor.i),der(meanPower.x),der(vH01.mean1.x),der(vH01.mean2.x),der(vRMS.mean.x),f,ground.p.i,ground.p.v,iH01.f,iH01.gain.k,iH01.gain.u,iH01.gain.y,iH01.k,iH01.mean1.f,iH01.mean1.t0,iH01.mean1.u,iH01.mean1.x,iH01.mean1.x0,iH01.mean1.y,iH01.mean1.yGreaterOrEqualZero,iH01.mean1.y_last,iH01.mean2.f,iH01.mean2.t0,iH01.mean2.u,iH01.mean2.x,iH01.mean2.x0,iH01.mean2.y,iH01.mean2.yGreaterOrEqualZero,iH01.mean2.y_last,iH01.product1.significantDigits,iH01.product1.u[1],iH01.product1.u[2],iH01.product1.y,iH01.product2.significantDigits,iH01.product2.u[1],iH01.product2.u[2],iH01.product2.y,iH01.rectangularToPolar.u_im,iH01.rectangularToPolar.u_re,iH01.rectangularToPolar.y_abs,iH01.rectangularToPolar.y_arg,iH01.sin1.amplitude,iH01.sin1.f,iH01.sin1.offset,iH01.sin1.phase,iH01.sin1.startTime,iH01.sin1.y,iH01.sin2.amplitude,iH01.sin2.f,iH01.sin2.offset,iH01.sin2.phase,iH01.sin2.startTime,iH01.sin2.y,iH01.u,iH01.x0Cos,iH01.x0Sin,iH01.y_arg,iH01.y_rms,iRMS.f,iRMS.mean.f,iRMS.mean.t0,iRMS.mean.u,iRMS.mean.x,iRMS.mean.x0,iRMS.mean.y,iRMS.mean.yGreaterOrEqualZero,iRMS.mean.y_last,iRMS.product.significantDigits,iRMS.product.u[1],iRMS.product.u[2],iRMS.product.y,iRMS.sqrt1.u,iRMS.sqrt1.y,iRMS.u,iRMS.x0,iRMS.y,loadInductor.L,loadInductor.i,loadInductor.n.i,loadInductor.n.v,loadInductor.p.i,loadInductor.p.v,loadInductor.v,loadResistor.LossPower,loadResistor.R,loadResistor.R_actual,loadResistor.T,loadResistor.T_heatPort,loadResistor.T_ref,loadResistor.alpha,loadResistor.i,loadResistor.n.i,loadResistor.n.v,loadResistor.p.i,loadResistor.p.v,loadResistor.v,meanPower.f,meanPower.t0,meanPower.u,meanPower.x,meanPower.x0,meanPower.y,meanPower.yGreaterOrEqualZero,meanPower.y_last,multiSensor.i,multiSensor.nc.i,multiSensor.nc.v,multiSensor.nv.i,multiSensor.nv.v,multiSensor.pc.i,multiSensor.pc.v,multiSensor.power,multiSensor.pv.i,multiSensor.pv.v,multiSensor.v,powerFactor,sineVoltage.V,sineVoltage.f,sineVoltage.i,sineVoltage.n.i,sineVoltage.n.v,sineVoltage.offset,sineVoltage.p.i,sineVoltage.p.v,sineVoltage.phase,sineVoltage.signalSource.amplitude,sineVoltage.signalSource.f,sineVoltage.signalSource.offset,sineVoltage.signalSource.phase,sineVoltage.signalSource.startTime,sineVoltage.signalSource.y,sineVoltage.startTime,sineVoltage.v,time,trapezoid.T_falling,trapezoid.T_rising,trapezoid.T_start,trapezoid.T_width,trapezoid.amplitude,trapezoid.count,trapezoid.falling,trapezoid.nperiod,trapezoid.offset,trapezoid.period,trapezoid.rising,trapezoid.startTime,trapezoid.width,trapezoid.y,triac.Goff,triac.Ron,triac.T,triac.Vknee,triac.fire1,triac.fire2,triac.i,triac.n.i,triac.n.v,triac.p.i,triac.p.v,triac.thyristor1.Goff,triac.thyristor1.LossPower,triac.thyristor1.Ron,triac.thyristor1.T,triac.thyristor1.T_heatPort,triac.thyristor1.Vknee,triac.thyristor1.fire,triac.thyristor1.i,triac.thyristor1.n.i,triac.thyristor1.n.v,triac.thyristor1.off,triac.thyristor1.p.i,triac.thyristor1.p.v,triac.thyristor1.s,triac.thyristor1.unitCurrent,triac.thyristor1.unitVoltage,triac.thyristor1.v,triac.thyristor2.Goff,triac.thyristor2.LossPower,triac.thyristor2.Ron,triac.thyristor2.T,triac.thyristor2.T_heatPort,triac.thyristor2.Vknee,triac.thyristor2.fire,triac.thyristor2.i,triac.thyristor2.n.i,triac.thyristor2.n.v,triac.thyristor2.off,triac.thyristor2.p.i,triac.thyristor2.p.v,triac.thyristor2.s,triac.thyristor2.unitCurrent,triac.thyristor2.unitVoltage,triac.thyristor2.v,triac.v,vH01.f,vH01.gain.k,vH01.gain.u,vH01.gain.y,vH01.k,vH01.mean1.f,vH01.mean1.t0,vH01.mean1.u,vH01.mean1.x,vH01.mean1.x0,vH01.mean1.y,vH01.mean1.yGreaterOrEqualZero,vH01.mean1.y_last,vH01.mean2.f,vH01.mean2.t0,vH01.mean2.u,vH01.mean2.x,vH01.mean2.x0,vH01.mean2.y,vH01.mean2.yGreaterOrEqualZero,vH01.mean2.y_last,vH01.product1.significantDigits,vH01.product1.u[1],vH01.product1.u[2],vH01.product1.y,vH01.product2.significantDigits,vH01.product2.u[1],vH01.product2.u[2],vH01.product2.y,vH01.rectangularToPolar.u_im,vH01.rectangularToPolar.u_re,vH01.rectangularToPolar.y_abs,vH01.rectangularToPolar.y_arg,vH01.sin1.amplitude,vH01.sin1.f,vH01.sin1.offset,vH01.sin1.phase,vH01.sin1.startTime,vH01.sin1.y,vH01.sin2.amplitude,vH01.sin2.f,vH01.sin2.offset,vH01.sin2.phase,vH01.sin2.startTime,vH01.sin2.y,vH01.u,vH01.x0Cos,vH01.x0Sin,vH01.y_arg,vH01.y_rms,vRMS.f,vRMS.mean.f,vRMS.mean.t0,vRMS.mean.u,vRMS.mean.x,vRMS.mean.x0,vRMS.mean.y,vRMS.mean.yGreaterOrEqualZero,vRMS.mean.y_last,vRMS.product.significantDigits,vRMS.product.u[1],vRMS.product.u[2],vRMS.product.y,vRMS.sqrt1.u,vRMS.sqrt1.y,vRMS.u,vRMS.x0,vRMS.y,voltageSensor.n.i,voltageSensor.n.v,voltageSensor.p.i,voltageSensor.p.v,voltageSensor.v,voltageToAngle.H01[1,1],voltageToAngle.H01[1,2],voltageToAngle.H01[10,1],voltageToAngle.H01[10,2],voltageToAngle.H01[11,1],voltageToAngle.H01[11,2],voltageToAngle.H01[12,1],voltageToAngle.H01[12,2],voltageToAngle.H01[13,1],voltageToAngle.H01[13,2],voltageToAngle.H01[14,1],voltageToAngle.H01[14,2],voltageToAngle.H01[15,1],voltageToAngle.H01[15,2],voltageToAngle.H01[16,1],voltageToAngle.H01[16,2],voltageToAngle.H01[17,1],voltageToAngle.H01[17,2],voltageToAngle.H01[18,1],voltageToAngle.H01[18,2],voltageToAngle.H01[19,1],voltageToAngle.H01[19,2],voltageToAngle.H01[2,1],voltageToAngle.H01[2,2],voltageToAngle.H01[20,1],voltageToAngle.H01[20,2],voltageToAngle.H01[21,1],voltageToAngle.H01[21,2],voltageToAngle.H01[22,1],voltageToAngle.H01[22,2],voltageToAngle.H01[23,1],voltageToAngle.H01[23,2],voltageToAngle.H01[24,1],voltageToAngle.H01[24,2],voltageToAngle.H01[25,1],voltageToAngle.H01[25,2],voltageToAngle.H01[26,1],voltageToAngle.H01[26,2],voltageToAngle.H01[27,1],voltageToAngle.H01[27,2],voltageToAngle.H01[28,1],voltageToAngle.H01[28,2],voltageToAngle.H01[29,1],voltageToAngle.H01[29,2],voltageToAngle.H01[3,1],voltageToAngle.H01[3,2],voltageToAngle.H01[30,1],voltageToAngle.H01[30,2],voltageToAngle.H01[31,1],voltageToAngle.H01[31,2],voltageToAngle.H01[32,1],voltageToAngle.H01[32,2],voltageToAngle.H01[33,1],voltageToAngle.H01[33,2],voltageToAngle.H01[34,1],voltageToAngle.H01[34,2],voltageToAngle.H01[35,1],voltageToAngle.H01[35,2],voltageToAngle.H01[36,1],voltageToAngle.H01[36,2],voltageToAngle.H01[37,1],voltageToAngle.H01[37,2],voltageToAngle.H01[38,1],voltageToAngle.H01[38,2],voltageToAngle.H01[39,1],voltageToAngle.H01[39,2],voltageToAngle.H01[4,1],voltageToAngle.H01[4,2],voltageToAngle.H01[40,1],voltageToAngle.H01[40,2],voltageToAngle.H01[41,1],voltageToAngle.H01[41,2],voltageToAngle.H01[42,1],voltageToAngle.H01[42,2],voltageToAngle.H01[43,1],voltageToAngle.H01[43,2],voltageToAngle.H01[44,1],voltageToAngle.H01[44,2],voltageToAngle.H01[45,1],voltageToAngle.H01[45,2],voltageToAngle.H01[46,1],voltageToAngle.H01[46,2],voltageToAngle.H01[47,1],voltageToAngle.H01[47,2],voltageToAngle.H01[48,1],voltageToAngle.H01[48,2],voltageToAngle.H01[49,1],voltageToAngle.H01[49,2],voltageToAngle.H01[5,1],voltageToAngle.H01[5,2],voltageToAngle.H01[6,1],voltageToAngle.H01[6,2],voltageToAngle.H01[7,1],voltageToAngle.H01[7,2],voltageToAngle.H01[8,1],voltageToAngle.H01[8,2],voltageToAngle.H01[9,1],voltageToAngle.H01[9,2],voltageToAngle.Lin[1,1],voltageToAngle.Lin[1,2],voltageToAngle.Lin[2,1],voltageToAngle.Lin[2,2],voltageToAngle.RMS[1,1],voltageToAngle.RMS[1,2],voltageToAngle.RMS[10,1],voltageToAngle.RMS[10,2],voltageToAngle.RMS[11,1],voltageToAngle.RMS[11,2],voltageToAngle.RMS[12,1],voltageToAngle.RMS[12,2],voltageToAngle.RMS[13,1],voltageToAngle.RMS[13,2],voltageToAngle.RMS[14,1],voltageToAngle.RMS[14,2],voltageToAngle.RMS[15,1],voltageToAngle.RMS[15,2],voltageToAngle.RMS[16,1],voltageToAngle.RMS[16,2],voltageToAngle.RMS[17,1],voltageToAngle.RMS[17,2],voltageToAngle.RMS[18,1],voltageToAngle.RMS[18,2],voltageToAngle.RMS[19,1],voltageToAngle.RMS[19,2],voltageToAngle.RMS[2,1],voltageToAngle.RMS[2,2],voltageToAngle.RMS[20,1],voltageToAngle.RMS[20,2],voltageToAngle.RMS[21,1],voltageToAngle.RMS[21,2],voltageToAngle.RMS[22,1],voltageToAngle.RMS[22,2],voltageToAngle.RMS[23,1],voltageToAngle.RMS[23,2],voltageToAngle.RMS[24,1],voltageToAngle.RMS[24,2],voltageToAngle.RMS[25,1],voltageToAngle.RMS[25,2],voltageToAngle.RMS[26,1],voltageToAngle.RMS[26,2],voltageToAngle.RMS[27,1],voltageToAngle.RMS[27,2],voltageToAngle.RMS[28,1],voltageToAngle.RMS[28,2],voltageToAngle.RMS[29,1],voltageToAngle.RMS[29,2],voltageToAngle.RMS[3,1],voltageToAngle.RMS[3,2],voltageToAngle.RMS[30,1],voltageToAngle.RMS[30,2],voltageToAngle.RMS[31,1],voltageToAngle.RMS[31,2],voltageToAngle.RMS[32,1],voltageToAngle.RMS[32,2],voltageToAngle.RMS[33,1],voltageToAngle.RMS[33,2],voltageToAngle.RMS[34,1],voltageToAngle.RMS[34,2],voltageToAngle.RMS[35,1],voltageToAngle.RMS[35,2],voltageToAngle.RMS[36,1],voltageToAngle.RMS[36,2],voltageToAngle.RMS[37,1],voltageToAngle.RMS[37,2],voltageToAngle.RMS[38,1],voltageToAngle.RMS[38,2],voltageToAngle.RMS[39,1],voltageToAngle.RMS[39,2],voltageToAngle.RMS[4,1],voltageToAngle.RMS[4,2],voltageToAngle.RMS[40,1],voltageToAngle.RMS[40,2],voltageToAngle.RMS[41,1],voltageToAngle.RMS[41,2],voltageToAngle.RMS[42,1],voltageToAngle.RMS[42,2],voltageToAngle.RMS[43,1],voltageToAngle.RMS[43,2],voltageToAngle.RMS[44,1],voltageToAngle.RMS[44,2],voltageToAngle.RMS[45,1],voltageToAngle.RMS[45,2],voltageToAngle.RMS[46,1],voltageToAngle.RMS[46,2],voltageToAngle.RMS[47,1],voltageToAngle.RMS[47,2],voltageToAngle.RMS[48,1],voltageToAngle.RMS[48,2],voltageToAngle.RMS[49,1],voltageToAngle.RMS[49,2],voltageToAngle.RMS[5,1],voltageToAngle.RMS[5,2],voltageToAngle.RMS[6,1],voltageToAngle.RMS[6,2],voltageToAngle.RMS[7,1],voltageToAngle.RMS[7,2],voltageToAngle.RMS[8,1],voltageToAngle.RMS[8,2],voltageToAngle.RMS[9,1],voltageToAngle.RMS[9,2],voltageToAngle.VNominal,voltageToAngle.combiTable1Ds.columns[1],voltageToAngle.combiTable1Ds.extrapolation,voltageToAngle.combiTable1Ds.nout,voltageToAngle.combiTable1Ds.smoothness,voltageToAngle.combiTable1Ds.tableOnFile,voltageToAngle.combiTable1Ds.table[1,1],voltageToAngle.combiTable1Ds.table[1,2],voltageToAngle.combiTable1Ds.table[10,1],voltageToAngle.combiTable1Ds.table[10,2],voltageToAngle.combiTable1Ds.table[11,1],voltageToAngle.combiTable1Ds.table[11,2],voltageToAngle.combiTable1Ds.table[12,1],voltageToAngle.combiTable1Ds.table[12,2],voltageToAngle.combiTable1Ds.table[13,1],voltageToAngle.combiTable1Ds.table[13,2],voltageToAngle.combiTable1Ds.table[14,1],voltageToAngle.combiTable1Ds.table[14,2],voltageToAngle.combiTable1Ds.table[15,1],voltageToAngle.combiTable1Ds.table[15,2],voltageToAngle.combiTable1Ds.table[16,1],voltageToAngle.combiTable1Ds.table[16,2],voltageToAngle.combiTable1Ds.table[17,1],voltageToAngle.combiTable1Ds.table[17,2],voltageToAngle.combiTable1Ds.table[18,1],voltageToAngle.combiTable1Ds.table[18,2],voltageToAngle.combiTable1Ds.table[19,1],voltageToAngle.combiTable1Ds.table[19,2],voltageToAngle.combiTable1Ds.table[2,1],voltageToAngle.combiTable1Ds.table[2,2],voltageToAngle.combiTable1Ds.table[20,1],voltageToAngle.combiTable1Ds.table[20,2],voltageToAngle.combiTable1Ds.table[21,1],voltageToAngle.combiTable1Ds.table[21,2],voltageToAngle.combiTable1Ds.table[22,1],voltageToAngle.combiTable1Ds.table[22,2],voltageToAngle.combiTable1Ds.table[23,1],voltageToAngle.combiTable1Ds.table[23,2],voltageToAngle.combiTable1Ds.table[24,1],voltageToAngle.combiTable1Ds.table[24,2],voltageToAngle.combiTable1Ds.table[25,1],voltageToAngle.combiTable1Ds.table[25,2],voltageToAngle.combiTable1Ds.table[26,1],voltageToAngle.combiTable1Ds.table[26,2],voltageToAngle.combiTable1Ds.table[27,1],voltageToAngle.combiTable1Ds.table[27,2],voltageToAngle.combiTable1Ds.table[28,1],voltageToAngle.combiTable1Ds.table[28,2],voltageToAngle.combiTable1Ds.table[29,1],voltageToAngle.combiTable1Ds.table[29,2],voltageToAngle.combiTable1Ds.table[3,1],voltageToAngle.combiTable1Ds.table[3,2],voltageToAngle.combiTable1Ds.table[30,1],voltageToAngle.combiTable1Ds.table[30,2],voltageToAngle.combiTable1Ds.table[31,1],voltageToAngle.combiTable1Ds.table[31,2],voltageToAngle.combiTable1Ds.table[32,1],voltageToAngle.combiTable1Ds.table[32,2],voltageToAngle.combiTable1Ds.table[33,1],voltageToAngle.combiTable1Ds.table[33,2],voltageToAngle.combiTable1Ds.table[34,1],voltageToAngle.combiTable1Ds.table[34,2],voltageToAngle.combiTable1Ds.table[35,1],voltageToAngle.combiTable1Ds.table[35,2],voltageToAngle.combiTable1Ds.table[36,1],voltageToAngle.combiTable1Ds.table[36,2],voltageToAngle.combiTable1Ds.table[37,1],voltageToAngle.combiTable1Ds.table[37,2],voltageToAngle.combiTable1Ds.table[38,1],voltageToAngle.combiTable1Ds.table[38,2],voltageToAngle.combiTable1Ds.table[39,1],voltageToAngle.combiTable1Ds.table[39,2],voltageToAngle.combiTable1Ds.table[4,1],voltageToAngle.combiTable1Ds.table[4,2],voltageToAngle.combiTable1Ds.table[40,1],voltageToAngle.combiTable1Ds.table[40,2],voltageToAngle.combiTable1Ds.table[41,1],voltageToAngle.combiTable1Ds.table[41,2],voltageToAngle.combiTable1Ds.table[42,1],voltageToAngle.combiTable1Ds.table[42,2],voltageToAngle.combiTable1Ds.table[43,1],voltageToAngle.combiTable1Ds.table[43,2],voltageToAngle.combiTable1Ds.table[44,1],voltageToAngle.combiTable1Ds.table[44,2],voltageToAngle.combiTable1Ds.table[45,1],voltageToAngle.combiTable1Ds.table[45,2],voltageToAngle.combiTable1Ds.table[46,1],voltageToAngle.combiTable1Ds.table[46,2],voltageToAngle.combiTable1Ds.table[47,1],voltageToAngle.combiTable1Ds.table[47,2],voltageToAngle.combiTable1Ds.table[48,1],voltageToAngle.combiTable1Ds.table[48,2],voltageToAngle.combiTable1Ds.table[49,1],voltageToAngle.combiTable1Ds.table[49,2],voltageToAngle.combiTable1Ds.table[5,1],voltageToAngle.combiTable1Ds.table[5,2],voltageToAngle.combiTable1Ds.table[6,1],voltageToAngle.combiTable1Ds.table[6,2],voltageToAngle.combiTable1Ds.table[7,1],voltageToAngle.combiTable1Ds.table[7,2],voltageToAngle.combiTable1Ds.table[8,1],voltageToAngle.combiTable1Ds.table[8,2],voltageToAngle.combiTable1Ds.table[9,1],voltageToAngle.combiTable1Ds.table[9,2],voltageToAngle.combiTable1Ds.u,voltageToAngle.combiTable1Ds.u_max,voltageToAngle.combiTable1Ds.u_min,voltageToAngle.combiTable1Ds.verboseExtrapolation,voltageToAngle.combiTable1Ds.verboseRead,voltageToAngle.combiTable1Ds.y[1],voltageToAngle.firingAngle,voltageToAngle.gain_alpha.k,voltageToAngle.gain_alpha.u,voltageToAngle.gain_alpha.y,voltageToAngle.gain_v.k,voltageToAngle.gain_v.u,voltageToAngle.gain_v.y,voltageToAngle.limiter.homotopyType,voltageToAngle.limiter.simplifiedExpr,voltageToAngle.limiter.strict,voltageToAngle.limiter.u,voltageToAngle.limiter.uMax,voltageToAngle.limiter.uMin,voltageToAngle.limiter.y,voltageToAngle.vRef,voltageToAngle.voltage2Angle simulate(Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL,startTime=0,stopTime=8,tolerance=1e-06,numberOfIntervals=80000,outputFormat="mat",variableFilter="time|voltageSensor.v|multiSensor.i|multiSensor.v|multiSensor.power|meanPower.y|vRMS.y|vH01.y_rms|vH01.y_arg|iRMS.y|iH01.y_rms|iH01.y_arg",fileNamePrefix="Modelica_4.0.0_Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL",simflags=" -alarm=240 -emit_protected -lv LOG_STATS -startTime=0 -stopTime=8 -tolerance=1e-06 -stepSize=0.0001 -r=Modelica_4.0.0_Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL_me_res.mat -s fmi3:me:daskr",resimulateExecutable="Modelica_4_0_0_Modelica_Electrical_PowerConverters_Examples_ACAC_Dimmer_RL.fmu") [Timeout 240] "" [Timeout remaining time 240] simulate(Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL,startTime=0,stopTime=8,tolerance=1e-06,numberOfIntervals=80000,outputFormat="mat",variableFilter="time|voltageSensor.v|multiSensor.i|multiSensor.v|multiSensor.power|meanPower.y|vRMS.y|vH01.y_rms|vH01.y_arg|iRMS.y|iH01.y_rms|iH01.y_arg",fileNamePrefix="Modelica_4.0.0_Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL",simflags=" -alarm=240 -emit_protected -lv LOG_STATS -startTime=0 -stopTime=8 -tolerance=1e-06 -stepSize=0.0001 -r=Modelica_4.0.0_Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL_cs_res.mat -s fmi3:cs",resimulateExecutable="Modelica_4_0_0_Modelica_Electrical_PowerConverters_Examples_ACAC_Dimmer_RL.fmu") [Timeout 240] "" [Timeout remaining time 235] diffSimulationResults("Modelica_4.0.0_Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL_cs_res.mat","/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/Reference-modelica.org/ReferenceResults/MAP-LIB_ReferenceResults/v4.0.0/Modelica/Electrical/PowerConverters/Examples/ACAC/Dimmer_RL/Dimmer_RL.csv","/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/files/Modelica_4.0.0_Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL_cs.diff",relTol=0.003,relTolDiffMinMax=0.003,rangeDelta=0.001) [Timeout 660] "Error: Could not read variable meanPower.y in file Modelica_4.0.0_Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL_cs_res.mat. Warning: Get data of variable meanPower.y from file Modelica_4.0.0_Modelica.Electrical.PowerConverters.Examples.ACAC.Dimmer_RL_cs_res.mat failed! " [Timeout remaining time 659] "" Variables in the reference:time,voltageSensor.v,multiSensor.i,multiSensor.v,multiSensor.power,meanPower.y,vRMS.y,vH01.y_rms,vH01.y_arg,iRMS.y,iH01.y_rms,iH01.y_arg Variables in the result:LLoad,RLoad,S,Vrms,ZLoad,__zc_0,__zc_1,__zc_10,__zc_11,__zc_12,__zc_13,__zc_14,__zc_15,__zc_16,__zc_17,__zc_18,__zc_2,__zc_3,__zc_4,__zc_5,__zc_6,__zc_7,__zc_8,__zc_9,adaptor.constantFiringAngle,adaptor.f,adaptor.fCut,adaptor.filter[1].f,adaptor.filter[1].fCut,adaptor.filter[1].fa,adaptor.filter[1].firstOrder.T,adaptor.filter[1].firstOrder.initType,adaptor.filter[1].firstOrder.k,adaptor.filter[1].firstOrder.u,adaptor.filter[1].firstOrder.y,adaptor.filter[1].firstOrder.y_start,adaptor.filter[1].na,adaptor.filter[1].transferFunction[1].a[1],adaptor.filter[1].transferFunction[1].a[2],adaptor.filter[1].transferFunction[1].b[1],adaptor.filter[1].transferFunction[1].b[2],adaptor.filter[1].transferFunction[1].initType,adaptor.filter[1].transferFunction[1].u,adaptor.filter[1].transferFunction[1].x[1],adaptor.filter[1].transferFunction[1].x_scaled[1],adaptor.filter[1].transferFunction[1].x_start[1],adaptor.filter[1].transferFunction[1].y,adaptor.filter[1].transferFunction[1].y_start,adaptor.filter[1].transferFunction[2].a[1],adaptor.filter[1].transferFunction[2].a[2],adaptor.filter[1].transferFunction[2].b[1],adaptor.filter[1].transferFunction[2].b[2],adaptor.filter[1].transferFunction[2].initType,adaptor.filter[1].transferFunction[2].u,adaptor.filter[1].transferFunction[2].x[1],adaptor.filter[1].transferFunction[2].x_scaled[1],adaptor.filter[1].transferFunction[2].x_start[1],adaptor.filter[1].transferFunction[2].y,adaptor.filter[1].transferFunction[2].y_start,adaptor.filter[1].u,adaptor.filter[1].y,adaptor.filter[1].yStart,adaptor.fire_n[1],adaptor.fire_p[1],adaptor.firingAngle,adaptor.firingAngleMax,adaptor.firingAngleMin,adaptor.gain.k,adaptor.gain.u,adaptor.gain.y,adaptor.gainNegative[1].k,adaptor.gainNegative[1].u,adaptor.gainNegative[1].y,adaptor.gainPositive[1].k,adaptor.gainPositive[1].u,adaptor.gainPositive[1].y,adaptor.greaterNegative[1].u1,adaptor.greaterNegative[1].u2,adaptor.greaterNegative[1].y,adaptor.greaterPositive[1].u1,adaptor.greaterPositive[1].u2,adaptor.greaterPositive[1].y,adaptor.limiter.homotopyType,adaptor.limiter.strict,adaptor.limiter.u,adaptor.limiter.uMax,adaptor.limiter.uMin,adaptor.limiter.y,adaptor.m,adaptor.negativeThreshold[1].threshold,adaptor.negativeThreshold[1].u,adaptor.negativeThreshold[1].y,adaptor.positiveThreshold[1].threshold,adaptor.positiveThreshold[1].u,adaptor.positiveThreshold[1].y,adaptor.replicator.nout,adaptor.replicator.u,adaptor.replicator.y[1],adaptor.timerNegative[1].y,adaptor.timerPositive[1].y,adaptor.useConstantFiringAngle,adaptor.useFilter,adaptor.vStart[1],adaptor.v[1],der(adaptor.filter[1].firstOrder.y),der(adaptor.filter[1].transferFunction[1].x_scaled[1]),der(adaptor.filter[1].transferFunction[2].x_scaled[1]),der(iH01.mean1.x),der(iH01.mean2.x),der(iRMS.mean.x),der(loadInductor.i),der(meanPower.x),der(vH01.mean1.x),der(vH01.mean2.x),der(vRMS.mean.x),f,ground.p.i,ground.p.v,iH01.f,iH01.gain.k,iH01.gain.u,iH01.gain.y,iH01.k,iH01.mean1.f,iH01.mean1.u,iH01.mean1.x,iH01.mean1.x0,iH01.mean1.yGreaterOrEqualZero,iH01.mean2.f,iH01.mean2.u,iH01.mean2.x,iH01.mean2.x0,iH01.mean2.yGreaterOrEqualZero,iH01.product1.nu,iH01.product1.significantDigits,iH01.product1.u[1],iH01.product1.u[2],iH01.product1.y,iH01.product2.nu,iH01.product2.significantDigits,iH01.product2.u[1],iH01.product2.u[2],iH01.product2.y,iH01.rectangularToPolar.y_abs,iH01.rectangularToPolar.y_arg,iH01.sin1.amplitude,iH01.sin1.f,iH01.sin1.offset,iH01.sin1.phase,iH01.sin1.startTime,iH01.sin1.y,iH01.sin2.amplitude,iH01.sin2.f,iH01.sin2.offset,iH01.sin2.phase,iH01.sin2.startTime,iH01.sin2.y,iH01.u,iH01.useConjugateComplex,iH01.x0Cos,iH01.x0Sin,iH01.y_arg,iH01.y_rms,iRMS.f,iRMS.mean.f,iRMS.mean.u,iRMS.mean.x,iRMS.mean.x0,iRMS.mean.yGreaterOrEqualZero,iRMS.product.nu,iRMS.product.significantDigits,iRMS.product.u[1],iRMS.product.u[2],iRMS.product.y,iRMS.sqrt1.y,iRMS.u,iRMS.x0,iRMS.y,loadInductor.L,loadInductor.i,loadInductor.n.i,loadInductor.n.v,loadInductor.p.i,loadInductor.p.v,loadInductor.v,loadResistor.LossPower,loadResistor.R,loadResistor.R_actual,loadResistor.T,loadResistor.T_heatPort,loadResistor.T_ref,loadResistor.alpha,loadResistor.i,loadResistor.n.i,loadResistor.n.v,loadResistor.p.i,loadResistor.p.v,loadResistor.useHeatPort,loadResistor.v,meanPower.f,meanPower.u,meanPower.x,meanPower.x0,meanPower.yGreaterOrEqualZero,multiSensor.i,multiSensor.nc.i,multiSensor.nc.v,multiSensor.nv.i,multiSensor.nv.v,multiSensor.pc.i,multiSensor.pc.v,multiSensor.power,multiSensor.pv.i,multiSensor.pv.v,multiSensor.v,powerFactor,sineVoltage.V,sineVoltage.f,sineVoltage.i,sineVoltage.n.i,sineVoltage.n.v,sineVoltage.offset,sineVoltage.p.i,sineVoltage.p.v,sineVoltage.phase,sineVoltage.signalSource.amplitude,sineVoltage.signalSource.f,sineVoltage.signalSource.offset,sineVoltage.signalSource.phase,sineVoltage.signalSource.startTime,sineVoltage.signalSource.y,sineVoltage.startTime,sineVoltage.v,time,trapezoid.amplitude,trapezoid.falling,trapezoid.nperiod,trapezoid.offset,trapezoid.period,trapezoid.rising,trapezoid.startTime,trapezoid.width,trapezoid.y,triac.Goff,triac.Ron,triac.T,triac.Vknee,triac.fire1,triac.fire2,triac.i,triac.n.i,triac.n.v,triac.p.i,triac.p.v,triac.thyristor1.Goff,triac.thyristor1.LossPower,triac.thyristor1.Ron,triac.thyristor1.T,triac.thyristor1.T_heatPort,triac.thyristor1.Vknee,triac.thyristor1.fire,triac.thyristor1.i,triac.thyristor1.n.i,triac.thyristor1.n.v,triac.thyristor1.off,triac.thyristor1.p.i,triac.thyristor1.p.v,triac.thyristor1.useHeatPort,triac.thyristor1.v,triac.thyristor2.Goff,triac.thyristor2.LossPower,triac.thyristor2.Ron,triac.thyristor2.T,triac.thyristor2.T_heatPort,triac.thyristor2.Vknee,triac.thyristor2.fire,triac.thyristor2.i,triac.thyristor2.n.i,triac.thyristor2.n.v,triac.thyristor2.off,triac.thyristor2.p.i,triac.thyristor2.p.v,triac.thyristor2.useHeatPort,triac.thyristor2.v,triac.useHeatPort,triac.v,vH01.f,vH01.gain.k,vH01.gain.u,vH01.gain.y,vH01.k,vH01.mean1.f,vH01.mean1.u,vH01.mean1.x,vH01.mean1.x0,vH01.mean1.yGreaterOrEqualZero,vH01.mean2.f,vH01.mean2.u,vH01.mean2.x,vH01.mean2.x0,vH01.mean2.yGreaterOrEqualZero,vH01.product1.nu,vH01.product1.significantDigits,vH01.product1.u[1],vH01.product1.u[2],vH01.product1.y,vH01.product2.nu,vH01.product2.significantDigits,vH01.product2.u[1],vH01.product2.u[2],vH01.product2.y,vH01.rectangularToPolar.y_abs,vH01.rectangularToPolar.y_arg,vH01.sin1.amplitude,vH01.sin1.f,vH01.sin1.offset,vH01.sin1.phase,vH01.sin1.startTime,vH01.sin1.y,vH01.sin2.amplitude,vH01.sin2.f,vH01.sin2.offset,vH01.sin2.phase,vH01.sin2.startTime,vH01.sin2.y,vH01.u,vH01.useConjugateComplex,vH01.x0Cos,vH01.x0Sin,vH01.y_arg,vH01.y_rms,vRMS.f,vRMS.mean.f,vRMS.mean.u,vRMS.mean.x,vRMS.mean.x0,vRMS.mean.yGreaterOrEqualZero,vRMS.product.nu,vRMS.product.significantDigits,vRMS.product.u[1],vRMS.product.u[2],vRMS.product.y,vRMS.sqrt1.y,vRMS.u,vRMS.x0,vRMS.y,voltageSensor.n.i,voltageSensor.n.v,voltageSensor.p.i,voltageSensor.p.v,voltageSensor.v,voltageToAngle.VNominal,voltageToAngle.combiTable1Ds.columns[1],voltageToAngle.combiTable1Ds.extrapolation,voltageToAngle.combiTable1Ds.nout,voltageToAngle.combiTable1Ds.smoothness,voltageToAngle.combiTable1Ds.tableOnFile,voltageToAngle.combiTable1Ds.table[1,1],voltageToAngle.combiTable1Ds.table[1,2],voltageToAngle.combiTable1Ds.table[10,1],voltageToAngle.combiTable1Ds.table[10,2],voltageToAngle.combiTable1Ds.table[11,1],voltageToAngle.combiTable1Ds.table[11,2],voltageToAngle.combiTable1Ds.table[12,1],voltageToAngle.combiTable1Ds.table[12,2],voltageToAngle.combiTable1Ds.table[13,1],voltageToAngle.combiTable1Ds.table[13,2],voltageToAngle.combiTable1Ds.table[14,1],voltageToAngle.combiTable1Ds.table[14,2],voltageToAngle.combiTable1Ds.table[15,1],voltageToAngle.combiTable1Ds.table[15,2],voltageToAngle.combiTable1Ds.table[16,1],voltageToAngle.combiTable1Ds.table[16,2],voltageToAngle.combiTable1Ds.table[17,1],voltageToAngle.combiTable1Ds.table[17,2],voltageToAngle.combiTable1Ds.table[18,1],voltageToAngle.combiTable1Ds.table[18,2],voltageToAngle.combiTable1Ds.table[19,1],voltageToAngle.combiTable1Ds.table[19,2],voltageToAngle.combiTable1Ds.table[2,1],voltageToAngle.combiTable1Ds.table[2,2],voltageToAngle.combiTable1Ds.table[20,1],voltageToAngle.combiTable1Ds.table[20,2],voltageToAngle.combiTable1Ds.table[21,1],voltageToAngle.combiTable1Ds.table[21,2],voltageToAngle.combiTable1Ds.table[22,1],voltageToAngle.combiTable1Ds.table[22,2],voltageToAngle.combiTable1Ds.table[23,1],voltageToAngle.combiTable1Ds.table[23,2],voltageToAngle.combiTable1Ds.table[24,1],voltageToAngle.combiTable1Ds.table[24,2],voltageToAngle.combiTable1Ds.table[25,1],voltageToAngle.combiTable1Ds.table[25,2],voltageToAngle.combiTable1Ds.table[26,1],voltageToAngle.combiTable1Ds.table[26,2],voltageToAngle.combiTable1Ds.table[27,1],voltageToAngle.combiTable1Ds.table[27,2],voltageToAngle.combiTable1Ds.table[28,1],voltageToAngle.combiTable1Ds.table[28,2],voltageToAngle.combiTable1Ds.table[29,1],voltageToAngle.combiTable1Ds.table[29,2],voltageToAngle.combiTable1Ds.table[3,1],voltageToAngle.combiTable1Ds.table[3,2],voltageToAngle.combiTable1Ds.table[30,1],voltageToAngle.combiTable1Ds.table[30,2],voltageToAngle.combiTable1Ds.table[31,1],voltageToAngle.combiTable1Ds.table[31,2],voltageToAngle.combiTable1Ds.table[32,1],voltageToAngle.combiTable1Ds.table[32,2],voltageToAngle.combiTable1Ds.table[33,1],voltageToAngle.combiTable1Ds.table[33,2],voltageToAngle.combiTable1Ds.table[34,1],voltageToAngle.combiTable1Ds.table[34,2],voltageToAngle.combiTable1Ds.table[35,1],voltageToAngle.combiTable1Ds.table[35,2],voltageToAngle.combiTable1Ds.table[36,1],voltageToAngle.combiTable1Ds.table[36,2],voltageToAngle.combiTable1Ds.table[37,1],voltageToAngle.combiTable1Ds.table[37,2],voltageToAngle.combiTable1Ds.table[38,1],voltageToAngle.combiTable1Ds.table[38,2],voltageToAngle.combiTable1Ds.table[39,1],voltageToAngle.combiTable1Ds.table[39,2],voltageToAngle.combiTable1Ds.table[4,1],voltageToAngle.combiTable1Ds.table[4,2],voltageToAngle.combiTable1Ds.table[40,1],voltageToAngle.combiTable1Ds.table[40,2],voltageToAngle.combiTable1Ds.table[41,1],voltageToAngle.combiTable1Ds.table[41,2],voltageToAngle.combiTable1Ds.table[42,1],voltageToAngle.combiTable1Ds.table[42,2],voltageToAngle.combiTable1Ds.table[43,1],voltageToAngle.combiTable1Ds.table[43,2],voltageToAngle.combiTable1Ds.table[44,1],voltageToAngle.combiTable1Ds.table[44,2],voltageToAngle.combiTable1Ds.table[45,1],voltageToAngle.combiTable1Ds.table[45,2],voltageToAngle.combiTable1Ds.table[46,1],voltageToAngle.combiTable1Ds.table[46,2],voltageToAngle.combiTable1Ds.table[47,1],voltageToAngle.combiTable1Ds.table[47,2],voltageToAngle.combiTable1Ds.table[48,1],voltageToAngle.combiTable1Ds.table[48,2],voltageToAngle.combiTable1Ds.table[49,1],voltageToAngle.combiTable1Ds.table[49,2],voltageToAngle.combiTable1Ds.table[5,1],voltageToAngle.combiTable1Ds.table[5,2],voltageToAngle.combiTable1Ds.table[6,1],voltageToAngle.combiTable1Ds.table[6,2],voltageToAngle.combiTable1Ds.table[7,1],voltageToAngle.combiTable1Ds.table[7,2],voltageToAngle.combiTable1Ds.table[8,1],voltageToAngle.combiTable1Ds.table[8,2],voltageToAngle.combiTable1Ds.table[9,1],voltageToAngle.combiTable1Ds.table[9,2],voltageToAngle.combiTable1Ds.u,voltageToAngle.combiTable1Ds.u_max,voltageToAngle.combiTable1Ds.u_min,voltageToAngle.combiTable1Ds.verboseExtrapolation,voltageToAngle.combiTable1Ds.verboseRead,voltageToAngle.combiTable1Ds.y[1],voltageToAngle.firingAngle,voltageToAngle.gain_alpha.k,voltageToAngle.gain_alpha.u,voltageToAngle.gain_alpha.y,voltageToAngle.gain_v.k,voltageToAngle.gain_v.u,voltageToAngle.gain_v.y,voltageToAngle.limiter.homotopyType,voltageToAngle.limiter.strict,voltageToAngle.limiter.u,voltageToAngle.limiter.uMax,voltageToAngle.limiter.uMin,voltageToAngle.limiter.y,voltageToAngle.vRef,voltageToAngle.voltage2Angle [Calling sys.exit(0), Time elapsed: 11.365486599039286]