Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr Dynawo_dev_Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10.conf.json loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.1.0+maint.om/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.1.0+maint.om/package.mo): time 0.002066/0.002066, allocations: 72.83 kB / 20.74 MB, free: 3.75 MB / 18.57 MB " [Timeout remaining time 180] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.1.0+maint.om/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.1.0+maint.om/package.mo): time 0.000939/0.000939, allocations: 173 kB / 24.16 MB, free: 336 kB / 18.57 MB " [Timeout remaining time 180] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 3.2.3+maint.om/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 3.2.3+maint.om/package.mo): time 0.7931/0.7931, allocations: 158.6 MB / 186 MB, free: 2.762 MB / 170.7 MB " [Timeout remaining time 179] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Dynawo master/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Dynawo master/package.mo): time 0.4486/0.4486, allocations: 90.87 MB / 329.2 MB, free: 14.28 MB / 314.7 MB " [Timeout remaining time 180] Using package Dynawo with version 1.8.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Dynawo master/package.mo) Using package Modelica with version 3.2.3 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 3.2.3+maint.om/package.mo) Using package Complex with version 4.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.1.0+maint.om/package.mo) Using package ModelicaServices with version 4.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.1.0+maint.om/package.mo) Running command: translateModel(Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10,tolerance=1e-06,outputFormat="mat",numberOfIntervals=100000,variableFilter="time|Unit.HvMeasurements.PPu|Unit.HvMeasurements.QPu|Unit.HvMeasurements.UPu|Unit.LvMeasurements.PPu|Unit.LvMeasurements.QPu|Unit.LvMeasurements.UPu|inertialGrid1.omegaPu",fileNamePrefix="Dynawo_dev_Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10") translateModel(Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10,tolerance=1e-06,outputFormat="mat",numberOfIntervals=100000,variableFilter="time|Unit.HvMeasurements.PPu|Unit.HvMeasurements.QPu|Unit.HvMeasurements.UPu|Unit.LvMeasurements.PPu|Unit.LvMeasurements.QPu|Unit.LvMeasurements.UPu|inertialGrid1.omegaPu",fileNamePrefix="Dynawo_dev_Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10") [Timeout 660] "Notification: Performance of FrontEnd - loaded program: time 9.82e-07/9.82e-07, allocations: 0 / 380.8 MB, free: 11.11 MB / 362.7 MB Notification: Performance of FrontEnd - Absyn->SCode: time 1.827e-05/1.926e-05, allocations: 9.688 kB / 380.9 MB, free: 11.1 MB / 362.7 MB Notification: Performance of NFInst.instantiate(Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10): time 0.0144/0.01442, allocations: 18.29 MB / 399.1 MB, free: 8.723 MB / 378.7 MB Notification: Performance of NFInst.instExpressions: time 0.01183/0.02625, allocations: 8.656 MB / 407.8 MB, free: 48 kB / 378.7 MB Notification: Performance of NFInst.updateImplicitVariability: time 0.002145/0.02839, allocations: 123.3 kB / 407.9 MB, free: 15.92 MB / 394.7 MB Notification: Performance of NFTyping.typeComponents: time 0.00164/0.03003, allocations: 1.201 MB / 409.1 MB, free: 14.71 MB / 394.7 MB [/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 3.2.3+maint.om/Utilities/Strings.mo:139:3-175:14:writable] Warning: Pure function 'Modelica.Utilities.Strings.isEmpty' contains a call to impure function 'Modelica.Utilities.Strings.Advanced.skipWhiteSpace'. Notification: Performance of NFTyping.typeBindings: time 0.002902/0.03293, allocations: 2.038 MB / 411.2 MB, free: 12.66 MB / 394.7 MB [/home/hudson/saved_omc/libraries/.openmodelica/libraries/Dynawo master/Electrical/Controls/WECC/BaseClasses_INIT/WECCPlantCurrentSource_INIT.mo:113:3-113:90:writable] Warning: In relation Modelica.ComplexMath.'abs'(wTG4CurrentSource_INIT.s0Pu) == 0.0, == on Real operands is deprecated in non-function contexts. Notification: Performance of NFTyping.typeClassSections: time 0.004166/0.0371, allocations: 3.751 MB / 414.9 MB, free: 8.906 MB / 394.7 MB Notification: Performance of NFFlatten.flatten: time 0.005356/0.04245, allocations: 7.321 MB / 422.2 MB, free: 1.562 MB / 394.7 MB Notification: Performance of NFFlatten.resolveConnections: time 0.00192/0.04437, allocations: 1.784 MB / 424 MB, free: 15.68 MB / 410.7 MB Notification: Performance of NFEvalConstants.evaluate: time 0.002271/0.04665, allocations: 2.481 MB / 426.5 MB, free: 13.19 MB / 410.7 MB Notification: Performance of NFSimplifyModel.simplify: time 0.001531/0.04818, allocations: 2.215 MB / 428.7 MB, free: 10.96 MB / 410.7 MB Notification: Performance of NFPackage.collectConstants: time 0.0006262/0.0488, allocations: 0.7617 MB / 429.5 MB, free: 10.2 MB / 410.7 MB Notification: Performance of NFFlatten.collectFunctions: time 0.001105/0.04991, allocations: 1.101 MB / 430.6 MB, free: 9.102 MB / 410.7 MB Notification: Performance of NFScalarize.scalarize: time 0.0008228/0.05073, allocations: 1.615 MB / 432.2 MB, free: 7.48 MB / 410.7 MB Notification: Performance of NFVerifyModel.verify: time 0.001125/0.05186, allocations: 1.963 MB / 434.1 MB, free: 5.512 MB / 410.7 MB Notification: Performance of NFConvertDAE.convert: time 0.004068/0.05592, allocations: 5.032 MB / 439.2 MB, free: 472 kB / 410.7 MB Notification: Performance of FrontEnd - DAE generated: time 3.106e-06/0.05593, allocations: 0 / 439.2 MB, free: 472 kB / 410.7 MB Notification: Performance of FrontEnd: time 9.51e-07/0.05593, allocations: 0 / 439.2 MB, free: 472 kB / 410.7 MB Notification: Performance of Transformations before backend: time 2.556e-05/0.05595, allocations: 0 / 439.2 MB, free: 472 kB / 410.7 MB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 984 * Number of variables: 984 Notification: Performance of Generate backend data structure: time 0.008635/0.06459, allocations: 7.34 MB / 446.5 MB, free: 9.02 MB / 426.7 MB Notification: Performance of prepare preOptimizeDAE: time 2.972e-05/0.06462, allocations: 12.03 kB / 446.5 MB, free: 9.008 MB / 426.7 MB Notification: Performance of preOpt normalInlineFunction (simulation): time 0.003291/0.06791, allocations: 1.694 MB / 448.2 MB, free: 7.312 MB / 426.7 MB Notification: Performance of preOpt evaluateParameters (simulation): time 0.002536/0.07045, allocations: 2.258 MB / 450.5 MB, free: 4.98 MB / 426.7 MB Notification: Performance of preOpt simplifyIfEquations (simulation): time 0.0004812/0.07093, allocations: 1.174 MB / 451.7 MB, free: 3.609 MB / 426.7 MB Notification: Performance of preOpt expandDerOperator (simulation): time 0.0003608/0.07129, allocations: 423.9 kB / 452.1 MB, free: 3.195 MB / 426.7 MB Notification: Performance of preOpt clockPartitioning (simulation): time 0.003258/0.07455, allocations: 3.69 MB / 455.8 MB, free: 15.19 MB / 442.7 MB Notification: Performance of preOpt findStateOrder (simulation): time 4.833e-05/0.07459, allocations: 3.938 kB / 455.8 MB, free: 15.18 MB / 442.7 MB Notification: Performance of preOpt replaceEdgeChange (simulation): time 0.0002117/0.07481, allocations: 168 kB / 455.9 MB, free: 15.02 MB / 442.7 MB Notification: Performance of preOpt inlineArrayEqn (simulation): time 4.593e-05/0.07485, allocations: 96 kB / 456 MB, free: 14.93 MB / 442.7 MB Notification: Performance of preOpt removeEqualRHS (simulation): time 0.001674/0.07653, allocations: 1.186 MB / 457.2 MB, free: 13.73 MB / 442.7 MB Warning: The model contains alias variables with redundant start and/or conflicting nominal values. It is recommended to resolve the conflicts, because otherwise the system could be hard to solve. To print the conflicting alias sets and the chosen candidates please use -d=aliasConflicts. Notification: Performance of preOpt removeSimpleEquations (simulation): time 0.0102/0.08673, allocations: 10.42 MB / 467.6 MB, free: 3.051 MB / 442.7 MB Notification: Performance of preOpt comSubExp (simulation): time 0.002344/0.08907, allocations: 1.843 MB / 469.5 MB, free: 1.188 MB / 442.7 MB Notification: Performance of preOpt resolveLoops (simulation): time 0.0006587/0.08973, allocations: 0.5072 MB / 470 MB, free: 0.668 MB / 442.7 MB Notification: Performance of preOpt evalFunc (simulation): time 0.0002044/0.08993, allocations: 82.5 kB / 470.1 MB, free: 0.5859 MB / 442.7 MB Notification: Performance of preOpt encapsulateWhenConditions (simulation): time 0.1489/0.2388, allocations: 1.332 MB / 471.4 MB, free: 67.68 MB / 442.7 MB Notification: Performance of pre-optimization done (n=331): time 6.683e-06/0.2388, allocations: 0 / 471.4 MB, free: 67.68 MB / 442.7 MB Notification: Performance of matching and sorting (n=331): time 0.005245/0.244, allocations: 2.498 MB / 473.9 MB, free: 67.54 MB / 442.7 MB Notification: Performance of inlineWhenForInitialization (initialization): time 0.0001006/0.2441, allocations: 0.6046 MB / 474.5 MB, free: 66.85 MB / 442.7 MB Notification: Performance of selectInitializationVariablesDAE (initialization): time 0.002765/0.2469, allocations: 3.238 MB / 477.7 MB, free: 66.52 MB / 442.7 MB Notification: Performance of collectPreVariables (initialization): time 0.0001687/0.2471, allocations: 110 kB / 477.8 MB, free: 66.48 MB / 442.7 MB Notification: Performance of collectInitialEqns (initialization): time 0.00067/0.2477, allocations: 1.547 MB / 479.4 MB, free: 66.37 MB / 442.7 MB Notification: Performance of collectInitialBindings (initialization): time 0.0004984/0.2482, allocations: 1.187 MB / 480.6 MB, free: 65.72 MB / 442.7 MB Notification: Performance of simplifyInitialFunctions (initialization): time 0.0007827/0.249, allocations: 0.9217 MB / 481.5 MB, free: 65.66 MB / 442.7 MB Notification: Performance of setup shared object (initialization): time 2.228e-05/0.249, allocations: 301.1 kB / 481.8 MB, free: 65.37 MB / 442.7 MB Notification: Performance of preBalanceInitialSystem (initialization): time 0.001192/0.2502, allocations: 0.8326 MB / 482.6 MB, free: 65.28 MB / 442.7 MB Notification: Performance of partitionIndependentBlocks (initialization): time 0.001455/0.2517, allocations: 2.095 MB / 484.7 MB, free: 63.92 MB / 442.7 MB Notification: Performance of analyzeInitialSystem (initialization): time 0.003713/0.2554, allocations: 3.745 MB / 488.5 MB, free: 63.01 MB / 442.7 MB Notification: Performance of solveInitialSystemEqSystem (initialization): time 1.422e-05/0.2554, allocations: 9.406 kB / 488.5 MB, free: 63 MB / 442.7 MB Notification: Performance of matching and sorting (n=653) (initialization): time 0.004276/0.2597, allocations: 3.311 MB / 491.8 MB, free: 62.76 MB / 442.7 MB Notification: Performance of prepare postOptimizeDAE: time 4.771e-05/0.2597, allocations: 68.81 kB / 491.9 MB, free: 62.73 MB / 442.7 MB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 2.226e-05/0.2598, allocations: 21.06 kB / 491.9 MB, free: 62.73 MB / 442.7 MB Notification: Performance of postOpt tearingSystem (initialization): time 0.0008481/0.2606, allocations: 467.5 kB / 492.3 MB, free: 62.7 MB / 442.7 MB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.002633/0.2632, allocations: 1.324 MB / 493.7 MB, free: 62.68 MB / 442.7 MB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.002196/0.2654, allocations: 2.178 MB / 495.8 MB, free: 61.49 MB / 442.7 MB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.001382/0.2668, allocations: 485 kB / 496.3 MB, free: 61.3 MB / 442.7 MB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.0001645/0.267, allocations: 133.7 kB / 496.4 MB, free: 61.3 MB / 442.7 MB Warning: Assuming fixed start value for the following 45 variables: Unit.LvTfo.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = Unit.LvTfo.State0 fixed = true ) \"Transformer connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) Unit.injector.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = Unit.injector.State0 fixed = true ) \"Injector connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) Unit.HvTfo.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = Unit.HvTfo.State0 fixed = true ) \"Transformer connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) line.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = line.State0 fixed = true ) \"Line connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) loadAlphaBeta.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = loadAlphaBeta.State0 fixed = true ) \"Load connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) inertialGrid1.injectorURI.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = inertialGrid1.injectorURI.State0 fixed = true ) \"Injector connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) inertialGrid1.injectorURI.running:DISCRETE(flow=false start = inertialGrid1.injectorURI.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean loadAlphaBeta.running:DISCRETE(flow=false start = loadAlphaBeta.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean loadAlphaBeta.deltaP:VARIABLE(flow=false start = 0.0 fixed = true ) \"Delta to apply on PRef in %\" type: Real loadAlphaBeta.deltaQ:VARIABLE(flow=false start = 0.0 fixed = true ) \"Delta to apply on QRef in %\" type: Real inertialGrid1.reducedOrderSFR.PspPu:VARIABLE(flow=false start = inertialGrid1.reducedOrderSFR.Psp0Pu fixed = true ) \"Incremental power set point in pu (base SNom)\" type: Real inertialGrid1.reducedOrderSFR.firstOrder.y:VARIABLE(flow=false start = inertialGrid1.reducedOrderSFR.firstOrder.y_start fixed = true ) \"Connector of Real output signal\" type: Real line.running:DISCRETE(flow=false start = line.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean Unit.HvTfo.running:DISCRETE(flow=false start = Unit.HvTfo.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean Unit.wecc_wtgp.limitedIntegrator.y:VARIABLE(flow=false start = Unit.wecc_wtgp.limitedIntegrator.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_wtgp.limitedIntegrator1.y:VARIABLE(flow=false start = Unit.wecc_wtgp.limitedIntegrator1.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_wtgq.firstOrder.y:VARIABLE(flow=false start = Unit.wecc_wtgq.firstOrder.y_start fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_wtgq.firstOrder1.y:VARIABLE(flow=false start = Unit.wecc_wtgp.omegaRefWTGQPu0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_wtgq.limitedIntegratorFreeze.y:VARIABLE(flow=false start = Unit.wecc_wtgq.limitedIntegratorFreeze.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_regc.rateLimFirstOrderFreeze2.y:VARIABLE(flow=false start = Unit.wecc_regc.rateLimFirstOrderFreeze2.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_regc.rateLimFirstOrderFreeze1.y:VARIABLE(flow=false start = Unit.wecc_regc.rateLimFirstOrderFreeze1.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_regc.firstOrder.y:VARIABLE(flow=false start = Unit.wecc_regc.firstOrder.y_start fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_regc.offDelay.delaySignal:DISCRETE(start = false fixed = true protected = true ) type: Boolean Unit.wecc_regc.offDelay.tNext:DISCRETE(start = -1.0 unit = \"s\" fixed = true protected = true ) type: Real Unit.wecc_repc.firstOrder.y:VARIABLE(flow=false start = Unit.wecc_repc.firstOrder.y_start fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_repc.firstOrder1.y:VARIABLE(flow=false start = Unit.wecc_repc.firstOrder1.y_start fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_repc.firstOrder2.y:VARIABLE(flow=false start = Unit.wecc_repc.firstOrder2.y_start fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_repc.firstOrder3.y:VARIABLE(flow=false start = Unit.wecc_repc.firstOrder3.y_start fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_repc.limPIDFreeze.I.y:VARIABLE(flow=false start = Unit.wecc_repc.limPIDFreeze.I.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_repc.leadLag.x_scaled[1]:VARIABLE(start = Unit.wecc_repc.leadLag.X0[1] * Unit.wecc_repc.leadLag.a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [1] Unit.injector.running:DISCRETE(flow=false start = Unit.injector.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean Unit.wecc_reec.firstOrder.y:VARIABLE(flow=false start = Unit.wecc_reec.UConv0Pu fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_reec.firstOrder1.y:VARIABLE(flow=false start = Unit.wecc_reec.firstOrder1.y_start fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_reec.limPIDFreeze.I.y:VARIABLE(flow=false start = Unit.wecc_reec.limPIDFreeze.I.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_reec.rateLimFirstOrderFreeze1.y:VARIABLE(flow=false start = Unit.wecc_reec.rateLimFirstOrderFreeze1.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_reec.rateLimFirstOrderFreeze.y:VARIABLE(flow=false start = Unit.wecc_wtgp.PConv0Pu fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_reec.varLimPIDFreeze.I.y:VARIABLE(flow=false start = Unit.wecc_reec.varLimPIDFreeze.I.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_reec.iqInjectionLogic.vDip:DISCRETE(flow=false start = false fixed = true ) \"Ongoing voltage dip\" type: Boolean Unit.wecc_reec.iqInjectionLogic.vDipInjEndTime:DISCRETE(start = -1.0 unit = \"s\" fixed = true ) \"ending time of the voltage dip start (in seconds)\" type: Real Unit.wecc_reec.currentLimitsCalculation1.ipMaxFrzPu:DISCRETE(start = 0.0 unit = \"1\" fixed = true ) type: Real Unit.wecc_reec.currentLimitsCalculation1.vDipFrzEndTime:DISCRETE(start = -1.0 unit = \"s\" fixed = true ) type: Real Unit.LvTfo.running:DISCRETE(flow=false start = Unit.LvTfo.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean Unit.Pm0Pu:VARIABLE(unit = \"1\" fixed = true ) \"Initial mechanical power in pu (base SNom)\" type: Real Unit.wecc_reec.currentLimitsCalculation1.vDip:DISCRETE(flow=false fixed = true ) \"Ongoing voltage dip\" type: Boolean Unit.wecc_regc.offDelay.u:DISCRETE(flow=false fixed = true ) \"Boolean input signal\" type: Boolean Notification: Performance of preBalanceInitialSystem (initialization_lambda0): time 0.001819/0.2688, allocations: 1.203 MB / 497.6 MB, free: 61.09 MB / 442.7 MB Notification: Performance of partitionIndependentBlocks (initialization_lambda0): time 0.00139/0.2702, allocations: 2.09 MB / 499.7 MB, free: 58.96 MB / 442.7 MB Notification: Performance of analyzeInitialSystem (initialization_lambda0): time 0.00347/0.2737, allocations: 3.718 MB / 0.4917 GB, free: 55.79 MB / 442.7 MB Notification: Performance of solveInitialSystemEqSystem (initialization_lambda0): time 1.159e-05/0.2737, allocations: 4 kB / 0.4917 GB, free: 55.78 MB / 442.7 MB Notification: Performance of matching and sorting (n=653) (initialization_lambda0): time 0.004017/0.2777, allocations: 3.311 MB / 0.4949 GB, free: 52.82 MB / 442.7 MB Notification: Performance of prepare postOptimizeDAE: time 4.053e-05/0.2777, allocations: 71.86 kB / 0.495 GB, free: 52.75 MB / 442.7 MB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 1.636e-05/0.2778, allocations: 15.98 kB / 0.495 GB, free: 52.74 MB / 442.7 MB Notification: Performance of postOpt tearingSystem (initialization): time 0.0007298/0.2785, allocations: 453.3 kB / 0.4954 GB, free: 52.35 MB / 442.7 MB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.002517/0.281, allocations: 1.319 MB / 0.4967 GB, free: 51.13 MB / 442.7 MB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.002085/0.2831, allocations: 2.186 MB / 0.4988 GB, free: 49.21 MB / 442.7 MB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.001388/0.2845, allocations: 457.7 kB / 0.4993 GB, free: 48.84 MB / 442.7 MB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.0001539/0.2846, allocations: 136.5 kB / 0.4994 GB, free: 48.74 MB / 442.7 MB Warning: Assuming fixed start value for the following 45 variables: Unit.LvTfo.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = Unit.LvTfo.State0 fixed = true ) \"Transformer connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) Unit.injector.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = Unit.injector.State0 fixed = true ) \"Injector connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) Unit.HvTfo.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = Unit.HvTfo.State0 fixed = true ) \"Transformer connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) line.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = line.State0 fixed = true ) \"Line connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) loadAlphaBeta.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = loadAlphaBeta.State0 fixed = true ) \"Load connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) inertialGrid1.injectorURI.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = inertialGrid1.injectorURI.State0 fixed = true ) \"Injector connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) inertialGrid1.injectorURI.running:DISCRETE(flow=false start = inertialGrid1.injectorURI.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean loadAlphaBeta.running:DISCRETE(flow=false start = loadAlphaBeta.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean loadAlphaBeta.deltaP:VARIABLE(flow=false start = 0.0 fixed = true ) \"Delta to apply on PRef in %\" type: Real loadAlphaBeta.deltaQ:VARIABLE(flow=false start = 0.0 fixed = true ) \"Delta to apply on QRef in %\" type: Real inertialGrid1.reducedOrderSFR.PspPu:VARIABLE(flow=false start = inertialGrid1.reducedOrderSFR.Psp0Pu fixed = true ) \"Incremental power set point in pu (base SNom)\" type: Real inertialGrid1.reducedOrderSFR.firstOrder.y:VARIABLE(flow=false start = inertialGrid1.reducedOrderSFR.firstOrder.y_start fixed = true ) \"Connector of Real output signal\" type: Real line.running:DISCRETE(flow=false start = line.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean Unit.HvTfo.running:DISCRETE(flow=false start = Unit.HvTfo.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean Unit.wecc_wtgp.limitedIntegrator.y:VARIABLE(flow=false start = Unit.wecc_wtgp.limitedIntegrator.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_wtgp.limitedIntegrator1.y:VARIABLE(flow=false start = Unit.wecc_wtgp.limitedIntegrator1.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_wtgq.firstOrder.y:VARIABLE(flow=false start = Unit.wecc_wtgq.firstOrder.y_start fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_wtgq.firstOrder1.y:VARIABLE(flow=false start = Unit.wecc_wtgp.omegaRefWTGQPu0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_wtgq.limitedIntegratorFreeze.y:VARIABLE(flow=false start = Unit.wecc_wtgq.limitedIntegratorFreeze.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_regc.rateLimFirstOrderFreeze2.y:VARIABLE(flow=false start = Unit.wecc_regc.rateLimFirstOrderFreeze2.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_regc.rateLimFirstOrderFreeze1.y:VARIABLE(flow=false start = Unit.wecc_regc.rateLimFirstOrderFreeze1.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_regc.firstOrder.y:VARIABLE(flow=false start = Unit.wecc_regc.firstOrder.y_start fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_regc.offDelay.delaySignal:DISCRETE(start = false fixed = true protected = true ) type: Boolean Unit.wecc_regc.offDelay.tNext:DISCRETE(start = -1.0 unit = \"s\" fixed = true protected = true ) type: Real Unit.wecc_repc.firstOrder.y:VARIABLE(flow=false start = Unit.wecc_repc.firstOrder.y_start fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_repc.firstOrder1.y:VARIABLE(flow=false start = Unit.wecc_repc.firstOrder1.y_start fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_repc.firstOrder2.y:VARIABLE(flow=false start = Unit.wecc_repc.firstOrder2.y_start fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_repc.firstOrder3.y:VARIABLE(flow=false start = Unit.wecc_repc.firstOrder3.y_start fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_repc.limPIDFreeze.I.y:VARIABLE(flow=false start = Unit.wecc_repc.limPIDFreeze.I.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_repc.leadLag.x_scaled[1]:VARIABLE(start = Unit.wecc_repc.leadLag.X0[1] * Unit.wecc_repc.leadLag.a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [1] Unit.injector.running:DISCRETE(flow=false start = Unit.injector.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean Unit.wecc_reec.firstOrder.y:VARIABLE(flow=false start = Unit.wecc_reec.UConv0Pu fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_reec.firstOrder1.y:VARIABLE(flow=false start = Unit.wecc_reec.firstOrder1.y_start fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_reec.limPIDFreeze.I.y:VARIABLE(flow=false start = Unit.wecc_reec.limPIDFreeze.I.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_reec.rateLimFirstOrderFreeze1.y:VARIABLE(flow=false start = Unit.wecc_reec.rateLimFirstOrderFreeze1.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_reec.rateLimFirstOrderFreeze.y:VARIABLE(flow=false start = Unit.wecc_wtgp.PConv0Pu fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_reec.varLimPIDFreeze.I.y:VARIABLE(flow=false start = Unit.wecc_reec.varLimPIDFreeze.I.Y0 fixed = true ) \"Connector of Real output signal\" type: Real Unit.wecc_reec.iqInjectionLogic.vDip:DISCRETE(flow=false start = false fixed = true ) \"Ongoing voltage dip\" type: Boolean Unit.wecc_reec.iqInjectionLogic.vDipInjEndTime:DISCRETE(start = -1.0 unit = \"s\" fixed = true ) \"ending time of the voltage dip start (in seconds)\" type: Real Unit.wecc_reec.currentLimitsCalculation1.ipMaxFrzPu:DISCRETE(start = 0.0 unit = \"1\" fixed = true ) type: Real Unit.wecc_reec.currentLimitsCalculation1.vDipFrzEndTime:DISCRETE(start = -1.0 unit = \"s\" fixed = true ) type: Real Unit.LvTfo.running:DISCRETE(flow=false start = Unit.LvTfo.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean Unit.Pm0Pu:VARIABLE(unit = \"1\" fixed = true ) \"Initial mechanical power in pu (base SNom)\" type: Real Unit.wecc_reec.currentLimitsCalculation1.vDip:DISCRETE(flow=false fixed = true ) \"Ongoing voltage dip\" type: Boolean Unit.wecc_regc.offDelay.u:DISCRETE(flow=false fixed = true ) \"Boolean input signal\" type: Boolean Notification: Model statistics after passing the back-end for initialization: * Number of independent subsystems: 70 * Number of states: 0 () * Number of discrete variables: 96 ($PRE.Unit.LvTfo.state,Unit.LvTfo.state,$PRE.Unit.injector.state,Unit.injector.state,$PRE.Unit.HvTfo.state,Unit.HvTfo.state,$PRE.line.state,line.state,$PRE.loadAlphaBeta.state,loadAlphaBeta.state,$PRE.inertialGrid1.injectorURI.state,inertialGrid1.injectorURI.state,$PRE.inertialGrid1.injectorURI.running,inertialGrid1.injectorURI.running,$whenCondition2,$whenCondition1,$whenCondition3,inertialGrid1.reducedOrderSFR.integrator.local_reset,inertialGrid1.integrator.local_reset,Unit.wecc_wtgp.absLimRateLimFirstOrderFreeze.integrator.local_reset,Unit.wecc_wtgt.dPhi.local_reset,Unit.wecc_wtgt.dOmegaTurbine.local_reset,Unit.wecc_wtgt.dOmegaGenerator.local_reset,Unit.wecc_repc.limPID.I.local_reset,Unit.wecc_repc.limPIDFreeze.I.resetLocal,Unit.pll.integrator.local_reset,Unit.pll.limIntegrator.local_reset,Unit.wecc_reec.limPIDFreeze.I.resetLocal,Unit.wecc_reec.varLimPIDFreeze.I.resetLocal,inertialGrid1.injectorURI.switchOffSignal1,inertialGrid1.injectorURI.switchOffSignal2,inertialGrid1.injectorURI.switchOffSignal3,Unit.wecc_regc.rateLimFirstOrderFreeze2.local_freeze,Unit.wecc_regc.rateLimFirstOrderFreeze1.local_freeze,Unit.injector.switchOffSignal1,Unit.injector.switchOffSignal2,Unit.injector.switchOffSignal3,line.switchOffSignal1,line.switchOffSignal2,loadAlphaBeta.switchOffSignal1,loadAlphaBeta.switchOffSignal2,$PRE.loadAlphaBeta.running,$PRE.line.running,$PRE.Unit.HvTfo.running,$PRE.Unit.wecc_regc.offDelay.delaySignal,$PRE.Unit.wecc_regc.offDelay.tNext,$PRE.Unit.injector.running,$PRE.Unit.wecc_reec.iqInjectionLogic.vDip,$PRE.Unit.wecc_reec.iqInjectionLogic.vDipInjEndTime,$PRE.Unit.wecc_reec.currentLimitsCalculation1.ipMaxFrzPu,$PRE.Unit.wecc_reec.currentLimitsCalculation1.vDipFrzEndTime,$PRE.Unit.LvTfo.running,Unit.wecc_regc.QConv0PuPos.k,Unit.wecc_regc.QConv0PuNeg.k,$PRE.Unit.wecc_reec.currentLimitsCalculation1.vDip,$PRE.Unit.wecc_regc.offDelay.u,Unit.LvTfo.running,Unit.wecc_reec.currentLimitsCalculation1.vDipFrzEndTime,Unit.wecc_reec.currentLimitsCalculation1.ipMaxFrzPu,Unit.wecc_reec.currentLimitsCalculation1.vDip,Unit.wecc_reec.iqInjectionLogic.vDipInjEndTime,Unit.wecc_reec.iqInjectionLogic.vDip,Unit.injector.running,Unit.wecc_repc.freeze,Unit.wecc_regc.and2.y,Unit.wecc_regc.and1.y,Unit.wecc_regc.and1.u[2],Unit.wecc_regc.offDelay.tNext,Unit.wecc_regc.offDelay.delaySignal,Unit.wecc_regc.offDelay.u,Unit.HvTfo.running,line.running,loadAlphaBeta.running,$whenCondition5,$whenCondition4,$whenCondition6,$whenCondition8,$whenCondition7,$whenCondition9,$whenCondition11,$whenCondition10,$whenCondition12,$whenCondition14,$whenCondition13,$whenCondition16,$whenCondition15,$whenCondition17,$whenCondition19,$whenCondition18,$whenCondition21,$whenCondition20,$whenCondition23,$whenCondition22,$whenCondition25,$whenCondition24,$whenCondition26) * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for initialization (609): * Single equations (assignments): 607 * 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 {(14,6)} Notification: Performance of prepare postOptimizeDAE: time 0.0006067/0.2852, allocations: 0.6571 MB / 0.5 GB, free: 48.3 MB / 442.7 MB Notification: Performance of postOpt lateInlineFunction (simulation): time 0.0004039/0.2856, allocations: 401.7 kB / 0.5004 GB, free: 47.95 MB / 442.7 MB Notification: Performance of postOpt wrapFunctionCalls (simulation): time 0.002665/0.2883, allocations: 2.034 MB / 0.5024 GB, free: 46.21 MB / 442.7 MB Notification: Performance of postOpt inlineArrayEqn (simulation): time 1.07e-05/0.2883, allocations: 32 kB / 0.5024 GB, free: 46.18 MB / 442.7 MB Notification: Performance of postOpt constantLinearSystem (simulation): time 3.848e-06/0.2883, allocations: 0 / 0.5024 GB, free: 46.18 MB / 442.7 MB Notification: Performance of postOpt simplifysemiLinear (simulation): time 1.767e-05/0.2883, allocations: 23.88 kB / 0.5025 GB, free: 46.15 MB / 442.7 MB Notification: Performance of postOpt removeSimpleEquations (simulation): time 0.005463/0.2938, allocations: 4.65 MB / 0.507 GB, free: 42.33 MB / 442.7 MB Notification: Performance of postOpt simplifyComplexFunction (simulation): time 7.033e-06/0.2938, allocations: 4 kB / 0.507 GB, free: 42.33 MB / 442.7 MB Notification: Performance of postOpt solveSimpleEquations (simulation): time 0.002349/0.2962, allocations: 0.9377 MB / 0.5079 GB, free: 41.45 MB / 442.7 MB Notification: Performance of postOpt tearingSystem (simulation): time 0.0007211/0.2969, allocations: 438 kB / 0.5083 GB, free: 41.07 MB / 442.7 MB Notification: Performance of postOpt inputDerivativesUsed (simulation): time 0.0001465/0.297, allocations: 84.58 kB / 0.5084 GB, free: 41.04 MB / 442.7 MB Notification: Performance of postOpt calculateStrongComponentJacobians (simulation): time 0.00226/0.2993, allocations: 2.15 MB / 0.5105 GB, free: 39.14 MB / 442.7 MB Notification: Performance of postOpt calculateStateSetsJacobians (simulation): time 3.627e-06/0.2993, allocations: 15.38 kB / 0.5105 GB, free: 39.13 MB / 442.7 MB Notification: Performance of postOpt symbolicJacobian (simulation): time 0.003329/0.3026, allocations: 3.048 MB / 0.5135 GB, free: 36.16 MB / 442.7 MB Notification: Performance of postOpt removeConstants (simulation): time 0.0008199/0.3034, allocations: 0.5023 MB / 0.514 GB, free: 35.67 MB / 442.7 MB Notification: Performance of postOpt simplifyTimeIndepFuncCalls (simulation): time 0.0003307/0.3038, allocations: 96.48 kB / 0.5141 GB, free: 35.63 MB / 442.7 MB Notification: Performance of postOpt simplifyAllExpressions (simulation): time 0.001011/0.3048, allocations: 204.8 kB / 0.5143 GB, free: 35.48 MB / 442.7 MB Notification: Performance of postOpt findZeroCrossings (simulation): time 0.0003332/0.3051, allocations: 314.5 kB / 0.5146 GB, free: 35.23 MB / 442.7 MB Notification: Performance of postOpt collapseArrayExpressions (simulation): time 0.0001156/0.3052, allocations: 87.5 kB / 0.5147 GB, free: 35.17 MB / 442.7 MB Notification: Performance of sorting global known variables: time 0.001105/0.3063, allocations: 1.699 MB / 0.5163 GB, free: 33.75 MB / 442.7 MB Notification: Performance of sort global known variables: time 1e-07/0.3063, allocations: 0 / 0.5163 GB, free: 33.75 MB / 442.7 MB Notification: Performance of remove unused functions: time 0.002552/0.3089, allocations: 2.199 MB / 0.5185 GB, free: 31.65 MB / 442.7 MB Notification: Model statistics after passing the back-end for simulation: * Number of independent subsystems: 24 * Number of states: 34 (loadAlphaBeta.deltaP,loadAlphaBeta.deltaQ,inertialGrid1.reducedOrderSFR.PspPu,inertialGrid1.reducedOrderSFR.integrator.y,inertialGrid1.reducedOrderSFR.firstOrder.y,inertialGrid1.integrator.y,Unit.wecc_wtgp.limitedIntegrator.y,Unit.wecc_wtgp.limitedIntegrator1.y,Unit.wecc_wtgp.absLimRateLimFirstOrderFreeze.integrator.y,Unit.wecc_wtgq.firstOrder.y,Unit.wecc_wtgq.firstOrder1.y,Unit.wecc_wtgq.limitedIntegratorFreeze.y,Unit.wecc_wtgt.dPhi.y,Unit.wecc_wtgt.dOmegaTurbine.y,Unit.wecc_wtgt.dOmegaGenerator.y,Unit.wecc_regc.rateLimFirstOrderFreeze2.y,Unit.wecc_regc.rateLimFirstOrderFreeze1.y,Unit.wecc_regc.firstOrder.y,Unit.wecc_repc.firstOrder.y,Unit.wecc_repc.limPID.I.y,Unit.wecc_repc.firstOrder1.y,Unit.wecc_repc.firstOrder2.y,Unit.wecc_repc.firstOrder3.y,Unit.wecc_repc.limPIDFreeze.I.y,Unit.wecc_repc.leadLag.x_scaled[1],Unit.pll.integrator.y,Unit.pll.limIntegrator.y,Unit.wecc_reec.firstOrder.y,Unit.wecc_reec.firstOrder1.y,Unit.wecc_reec.limPIDFreeze.I.y,Unit.wecc_reec.rateLimFirstOrderFreeze1.y,Unit.wecc_reec.slewRateLimiter.y,Unit.wecc_reec.rateLimFirstOrderFreeze.y,Unit.wecc_reec.varLimPIDFreeze.I.y) * Number of discrete variables: 50 ($whenCondition3,$whenCondition1,$whenCondition2,inertialGrid1.injectorURI.running,inertialGrid1.injectorURI.state,$whenCondition26,$whenCondition24,$whenCondition25,$whenCondition22,$whenCondition23,$whenCondition20,$whenCondition21,$whenCondition18,$whenCondition19,$whenCondition17,$whenCondition15,$whenCondition16,$whenCondition13,$whenCondition14,$whenCondition12,$whenCondition10,$whenCondition11,$whenCondition9,$whenCondition7,$whenCondition8,$whenCondition6,$whenCondition4,$whenCondition5,loadAlphaBeta.running,loadAlphaBeta.state,line.running,line.state,Unit.HvTfo.running,Unit.HvTfo.state,Unit.wecc_regc.offDelay.u,Unit.wecc_regc.offDelay.delaySignal,Unit.wecc_regc.offDelay.tNext,Unit.wecc_regc.and1.u[2],Unit.wecc_regc.and1.y,Unit.wecc_regc.and2.y,Unit.wecc_repc.freeze,Unit.injector.running,Unit.injector.state,Unit.wecc_reec.iqInjectionLogic.vDip,Unit.wecc_reec.iqInjectionLogic.vDipInjEndTime,Unit.wecc_reec.currentLimitsCalculation1.vDip,Unit.wecc_reec.currentLimitsCalculation1.ipMaxFrzPu,Unit.wecc_reec.currentLimitsCalculation1.vDipFrzEndTime,Unit.LvTfo.running,Unit.LvTfo.state) * Number of discrete states: 12 (Unit.LvTfo.running,Unit.injector.running,Unit.HvTfo.running,line.running,loadAlphaBeta.running,Unit.wecc_regc.offDelay.u,Unit.wecc_reec.currentLimitsCalculation1.vDip,Unit.wecc_reec.currentLimitsCalculation1.vDipFrzEndTime,Unit.wecc_reec.currentLimitsCalculation1.ipMaxPu,Unit.wecc_reec.iqInjectionLogic.vDip,Unit.wecc_reec.iqInjectionLogic.vDipInjEndTime,inertialGrid1.injectorURI.running) * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for simulation (322): * Single equations (assignments): 304 * Array equations: 0 * Algorithm blocks: 0 * Record equations: 0 * When equations: 17 * 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 {(12,8)} Notification: Performance of Backend phase and start with SimCode phase: time 0.001081/0.31, allocations: 0.6426 MB / 0.5191 GB, free: 31.29 MB / 442.7 MB Notification: Performance of simCode: created initialization part: time 0.004717/0.3147, allocations: 4.831 MB / 0.5238 GB, free: 26.66 MB / 442.7 MB Notification: Performance of simCode: created event and clocks part: time 3.062e-05/0.3147, allocations: 56.03 kB / 0.5239 GB, free: 26.61 MB / 442.7 MB Notification: Performance of simCode: created simulation system equations: time 0.001199/0.3159, allocations: 1.203 MB / 0.525 GB, free: 25.49 MB / 442.7 MB Notification: Performance of simCode: created of all other equations (e.g. parameter, nominal, assert, etc): time 0.001676/0.3176, allocations: 0.8102 MB / 0.5258 GB, free: 24.71 MB / 442.7 MB Notification: Performance of simCode: created linear, non-linear and system jacobian parts: time 0.007666/0.3253, allocations: 8.317 MB / 0.534 GB, free: 16.32 MB / 442.7 MB Notification: Performance of simCode: some other stuff during SimCode phase: time 0.0004526/0.3257, allocations: 0.7913 MB / 0.5347 GB, free: 15.51 MB / 442.7 MB Notification: Performance of simCode: alias equations: time 0.001555/0.3273, allocations: 0.6376 MB / 0.5354 GB, free: 14.87 MB / 442.7 MB Notification: Performance of simCode: all other stuff during SimCode phase: time 0.001332/0.3286, allocations: 0.7626 MB / 0.5361 GB, free: 14.11 MB / 442.7 MB Notification: Performance of SimCode: time 7.41e-07/0.3286, allocations: 1.859 kB / 0.5361 GB, free: 14.11 MB / 442.7 MB Notification: Performance of Templates: time 0.07343/0.402, allocations: 68.68 MB / 0.6032 GB, free: 9.945 MB / 0.4948 GB " [Timeout remaining time 660] make -j1 -f Dynawo_dev_Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10.makefile [Timeout 660] (rm -f Dynawo_dev_Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10.pipe ; mkfifo Dynawo_dev_Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10.pipe ; head -c 1048576 < Dynawo_dev_Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10.pipe >> ../files/Dynawo_dev_Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10.sim & ./Dynawo_dev_Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10 -lv=LOG_STDOUT,LOG_ASSERT,LOG_STATS -s=ida -variableFilter=.* -abortSlowSimulation -alarm=240 -emit_protected -lv LOG_STATS > Dynawo_dev_Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10.pipe 2>&1) [Timeout 240] diffSimulationResults("Dynawo_dev_Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10_res.mat","/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/ReferenceFiles/Dynawo/dynawo/sources/Models/Modelica/Dynawo/Examples/references/Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10_res.csv","",relTol=0.003,relTolDiffMinMax=0.003,rangeDelta=0.001) [Timeout 660] "" [Timeout remaining time 657] "" Variables in the reference:time,Unit.HvMeasurements.PPu,Unit.HvMeasurements.QPu,Unit.HvMeasurements.UPu,Unit.LvMeasurements.PPu,Unit.LvMeasurements.QPu,Unit.LvMeasurements.UPu,inertialGrid1.omegaPu Variables in the result:$cse1,$cse10,$cse2,$cse3,$cse4,$cse5,$cse6,$cse7,$cse8,$cse9,$whenCondition1,$whenCondition10,$whenCondition11,$whenCondition12,$whenCondition13,$whenCondition14,$whenCondition15,$whenCondition16,$whenCondition17,$whenCondition18,$whenCondition19,$whenCondition2,$whenCondition20,$whenCondition21,$whenCondition22,$whenCondition23,$whenCondition24,$whenCondition25,$whenCondition26,$whenCondition3,$whenCondition4,$whenCondition5,$whenCondition6,$whenCondition7,$whenCondition8,$whenCondition9,P0Pu,PFaRef.k,PFaRef.y,PRefPu.k,PRefPu.y,PmRefPu.k,PmRefPu.y,Q0Pu,QRefPu.k,QRefPu.y,SNom,U0Pu,UInfPu,UPhase0,URefPu.height,URefPu.offset,URefPu.startTime,URefPu.y,Unit.BMvHvPu,Unit.BPcsPu,Unit.ConverterLVControl,Unit.DDn,Unit.DPMaxPu,Unit.DPMinPu,Unit.DUp,Unit.Dbd1Pu,Unit.Dbd2Pu,Unit.DbdPu,Unit.Dshaft,Unit.EMaxPu,Unit.EMinPu,Unit.FDbd1Pu,Unit.FDbd2Pu,Unit.FEMaxPu,Unit.FEMinPu,Unit.FreqFlag,Unit.GMvHvPu,Unit.GPcsPu,Unit.Hg,Unit.Ht,Unit.HvMeasurements.PPu,Unit.HvMeasurements.PPuSnRef,Unit.HvMeasurements.QPu,Unit.HvMeasurements.QPuSnRef,Unit.HvMeasurements.SNom,Unit.HvMeasurements.UPu,Unit.HvMeasurements.iPu.im,Unit.HvMeasurements.iPu.re,Unit.HvMeasurements.terminal1.V.im,Unit.HvMeasurements.terminal1.V.re,Unit.HvMeasurements.terminal1.i.im,Unit.HvMeasurements.terminal1.i.re,Unit.HvMeasurements.terminal2.V.im,Unit.HvMeasurements.terminal2.V.re,Unit.HvMeasurements.terminal2.i.im,Unit.HvMeasurements.terminal2.i.re,Unit.HvMeasurements.uPu.im,Unit.HvMeasurements.uPu.re,Unit.HvTfo.BPu,Unit.HvTfo.GPu,Unit.HvTfo.ISide1,Unit.HvTfo.ISide2,Unit.HvTfo.NbSwitchOffSignals,Unit.HvTfo.P1Pu,Unit.HvTfo.P2Pu,Unit.HvTfo.Q1Pu,Unit.HvTfo.Q2Pu,Unit.HvTfo.RPu,Unit.HvTfo.Running0,Unit.HvTfo.State0,Unit.HvTfo.SwitchOffSignal10,Unit.HvTfo.SwitchOffSignal20,Unit.HvTfo.SwitchOffSignal30,Unit.HvTfo.U1Pu,Unit.HvTfo.U2Pu,Unit.HvTfo.XPu,Unit.HvTfo.YPu.im,Unit.HvTfo.YPu.re,Unit.HvTfo.ZPu.im,Unit.HvTfo.ZPu.re,Unit.HvTfo.rTfoPu,Unit.HvTfo.running,Unit.HvTfo.state,Unit.HvTfo.switchOffSignal1,Unit.HvTfo.switchOffSignal2,Unit.HvTfo.terminal1.V.im,Unit.HvTfo.terminal1.V.re,Unit.HvTfo.terminal1.i.im,Unit.HvTfo.terminal1.i.re,Unit.HvTfo.terminal2.V.im,Unit.HvTfo.terminal2.V.re,Unit.HvTfo.terminal2.i.im,Unit.HvTfo.terminal2.i.re,Unit.IMaxPu,Unit.Id0Pu,Unit.Iq0Pu,Unit.IqFrzPu,Unit.Iqh1Pu,Unit.Iql1Pu,Unit.IqrMaxPu,Unit.IqrMinPu,Unit.Ka,Unit.Kc,Unit.Kcc,Unit.Ki,Unit.KiPLL,Unit.Kic,Unit.Kig,Unit.Kip,Unit.Kiw,Unit.Kp,Unit.KpPLL,Unit.Kpc,Unit.Kpg,Unit.Kpp,Unit.Kpw,Unit.Kqi,Unit.Kqp,Unit.Kqv,Unit.Kshaft,Unit.Kvi,Unit.Kvp,Unit.LvMeasurements.PPu,Unit.LvMeasurements.PPuSnRef,Unit.LvMeasurements.QPu,Unit.LvMeasurements.QPuSnRef,Unit.LvMeasurements.SNom,Unit.LvMeasurements.UPu,Unit.LvMeasurements.iPu.im,Unit.LvMeasurements.iPu.re,Unit.LvMeasurements.terminal1.V.im,Unit.LvMeasurements.terminal1.V.re,Unit.LvMeasurements.terminal1.i.im,Unit.LvMeasurements.terminal1.i.re,Unit.LvMeasurements.terminal2.V.im,Unit.LvMeasurements.terminal2.V.re,Unit.LvMeasurements.terminal2.i.im,Unit.LvMeasurements.terminal2.i.re,Unit.LvMeasurements.uPu.im,Unit.LvMeasurements.uPu.re,Unit.LvTfo.BPu,Unit.LvTfo.GPu,Unit.LvTfo.NbSwitchOffSignals,Unit.LvTfo.RPu,Unit.LvTfo.Running0,Unit.LvTfo.SNom,Unit.LvTfo.State0,Unit.LvTfo.SwitchOffSignal10,Unit.LvTfo.SwitchOffSignal20,Unit.LvTfo.SwitchOffSignal30,Unit.LvTfo.XPu,Unit.LvTfo.i10Pu.im,Unit.LvTfo.i10Pu.re,Unit.LvTfo.i1ImPu,Unit.LvTfo.i1Pu.im,Unit.LvTfo.i1Pu.re,Unit.LvTfo.i1RePu,Unit.LvTfo.i20Pu.im,Unit.LvTfo.i20Pu.re,Unit.LvTfo.i2ImPu,Unit.LvTfo.i2Pu.im,Unit.LvTfo.i2Pu.re,Unit.LvTfo.i2RePu,Unit.LvTfo.running,Unit.LvTfo.state,Unit.LvTfo.switchOffSignal1,Unit.LvTfo.switchOffSignal2,Unit.LvTfo.terminal1.V.im,Unit.LvTfo.terminal1.V.re,Unit.LvTfo.terminal1.i.im,Unit.LvTfo.terminal1.i.re,Unit.LvTfo.terminal2.V.im,Unit.LvTfo.terminal2.V.re,Unit.LvTfo.terminal2.i.im,Unit.LvTfo.terminal2.i.re,Unit.LvTfo.u10Pu.im,Unit.LvTfo.u10Pu.re,Unit.LvTfo.u1ImPu,Unit.LvTfo.u1Pu.im,Unit.LvTfo.u1Pu.re,Unit.LvTfo.u1RePu,Unit.LvTfo.u20Pu.im,Unit.LvTfo.u20Pu.re,Unit.LvTfo.u2ImPu,Unit.LvTfo.u2Pu.im,Unit.LvTfo.u2Pu.re,Unit.LvTfo.u2RePu,Unit.Lvplsw,Unit.OmegaMaxPu,Unit.OmegaMinPu,Unit.P0Pu,Unit.P1,Unit.P2,Unit.P3,Unit.P4,Unit.PControl0Pu,Unit.PConv0Pu,Unit.PF0,Unit.PFaRef,Unit.PFlag,Unit.PInj0Pu,Unit.PMaxREECPu,Unit.PMaxREPCPu,Unit.PMinREECPu,Unit.PMinREPCPu,Unit.PPCLocal,Unit.PPcc0Pu,Unit.PPccPu,Unit.PQFlag,Unit.PRefPu,Unit.PRegPuSnExtern.y,Unit.PfFlag,Unit.Pm0Pu,Unit.PmRefPu,Unit.Q0Pu,Unit.QControl0Pu,Unit.QConv0Pu,Unit.QFlag,Unit.QInj0Pu,Unit.QMaxREECPu,Unit.QMaxREPCPu,Unit.QMinREECPu,Unit.QMinREPCPu,Unit.QPcc0Pu,Unit.QPccPu,Unit.QRefPu,Unit.QRegPuSnExtern.y,Unit.RLvTrPu,Unit.RMvHvPu,Unit.RPcsPu,Unit.RPu,Unit.RefFlag,Unit.RrpwrPu,Unit.SNom,Unit.Spd1,Unit.Spd2,Unit.Spd3,Unit.Spd4,Unit.TFlag,Unit.TeMaxPu,Unit.TeMinPu,Unit.Theta0,Unit.ThetaMax,Unit.ThetaMin,Unit.ThetaRMax,Unit.ThetaRMin,Unit.U0Pu,Unit.UControl0Pu,Unit.UControlPu,Unit.UConv0Pu,Unit.UInj0Pu,Unit.UPcc0Pu,Unit.UPhase0,Unit.UPhaseConv0,Unit.URefPu,Unit.VCompFlag,Unit.VDLIp11,Unit.VDLIp12,Unit.VDLIp21,Unit.VDLIp22,Unit.VDLIp31,Unit.VDLIp32,Unit.VDLIp41,Unit.VDLIp42,Unit.VDLIpPoints[1,1],Unit.VDLIpPoints[1,2],Unit.VDLIpPoints[2,1],Unit.VDLIpPoints[2,2],Unit.VDLIpPoints[3,1],Unit.VDLIpPoints[3,2],Unit.VDLIpPoints[4,1],Unit.VDLIpPoints[4,2],Unit.VDLIq11,Unit.VDLIq12,Unit.VDLIq21,Unit.VDLIq22,Unit.VDLIq31,Unit.VDLIq32,Unit.VDLIq41,Unit.VDLIq42,Unit.VDLIqPoints[1,1],Unit.VDLIqPoints[1,2],Unit.VDLIqPoints[2,1],Unit.VDLIqPoints[2,2],Unit.VDLIqPoints[3,1],Unit.VDLIqPoints[3,2],Unit.VDLIqPoints[4,1],Unit.VDLIqPoints[4,2],Unit.VDipPu,Unit.VFlag,Unit.VFrz,Unit.VMaxPu,Unit.VMinPu,Unit.VRef0Pu,Unit.VRef1Pu,Unit.VUpPu,Unit.XLvTrPu,Unit.XMvHvPu,Unit.XPcsPu,Unit.XPu,Unit.booleanConstant.k,Unit.booleanConstant.y,Unit.brkpt,Unit.complexExpr.y.im,Unit.complexExpr.y.re,Unit.complexToPolar.len,Unit.complexToPolar.phi,Unit.complexToPolar.u.im,Unit.complexToPolar.u.re,Unit.complexToReal.im,Unit.complexToReal.re,Unit.complexToReal.u.im,Unit.complexToReal.u.re,Unit.complexToReal.useConjugateInput,Unit.complexToReal1.im,Unit.complexToReal1.re,Unit.complexToReal1.u.im,Unit.complexToReal1.u.re,Unit.complexToReal1.useConjugateInput,Unit.complexToReal2.im,Unit.complexToReal2.re,Unit.complexToReal2.u.im,Unit.complexToReal2.u.re,Unit.complexToReal2.useConjugateInput,Unit.complexToReal3.im,Unit.complexToReal3.re,Unit.complexToReal3.u.im,Unit.complexToReal3.u.re,Unit.complexToReal3.useConjugateInput,Unit.gain.k,Unit.gain.u,Unit.gain.y,Unit.gain1.k,Unit.gain1.u,Unit.gain1.y,Unit.i.im,Unit.i.re,Unit.i.y.im,Unit.i.y.re,Unit.i0Pu.im,Unit.i0Pu.re,Unit.iControl0Pu.im,Unit.iControl0Pu.re,Unit.iConv0Pu.im,Unit.iConv0Pu.re,Unit.iPcc0Pu.im,Unit.iPcc0Pu.re,Unit.injector.Id0Pu,Unit.injector.Iq0Pu,Unit.injector.NbSwitchOffSignals,Unit.injector.P0Pu,Unit.injector.PInjPu,Unit.injector.PInjPuSn,Unit.injector.Q0Pu,Unit.injector.QInjPu,Unit.injector.QInjPuSn,Unit.injector.Running0,Unit.injector.SNom,Unit.injector.State0,Unit.injector.SwitchOffSignal10,Unit.injector.SwitchOffSignal20,Unit.injector.SwitchOffSignal30,Unit.injector.U0Pu,Unit.injector.UPhase,Unit.injector.UPhase0,Unit.injector.UPu,Unit.injector.i0Pu.im,Unit.injector.i0Pu.re,Unit.injector.idPu,Unit.injector.iqPu,Unit.injector.running,Unit.injector.s0Pu.im,Unit.injector.s0Pu.re,Unit.injector.state,Unit.injector.switchOffSignal1,Unit.injector.switchOffSignal2,Unit.injector.switchOffSignal3,Unit.injector.terminal.V.im,Unit.injector.terminal.V.re,Unit.injector.terminal.i.im,Unit.injector.terminal.i.re,Unit.injector.u0Pu.im,Unit.injector.u0Pu.re,Unit.injector.uPu.im,Unit.injector.uPu.re,Unit.lvpl1,Unit.omegaRefPu,Unit.omegaRefWTGQPu0,Unit.pll.Ki,Unit.pll.Kp,Unit.pll.OmegaMaxPu,Unit.pll.OmegaMinPu,Unit.pll.add1.k1,Unit.pll.add1.k2,Unit.pll.add1.u1,Unit.pll.add1.u2,Unit.pll.add1.y,Unit.pll.add2.k1,Unit.pll.add2.k2,Unit.pll.add2.u1,Unit.pll.add2.u2,Unit.pll.add2.y,Unit.pll.gain.k,Unit.pll.gain.u,Unit.pll.gain.y,Unit.pll.integrator.initType,Unit.pll.integrator.k,Unit.pll.integrator.local_reset,Unit.pll.integrator.local_set,Unit.pll.integrator.u,Unit.pll.integrator.y,Unit.pll.integrator.y_start,Unit.pll.limIntegrator.initType,Unit.pll.limIntegrator.k,Unit.pll.limIntegrator.limitsAtInit,Unit.pll.limIntegrator.local_reset,Unit.pll.limIntegrator.local_set,Unit.pll.limIntegrator.outMax,Unit.pll.limIntegrator.outMin,Unit.pll.limIntegrator.strict,Unit.pll.limIntegrator.u,Unit.pll.limIntegrator.y,Unit.pll.limIntegrator.y_start,Unit.pll.omegaPLLPu,Unit.pll.omegaRefPu,Unit.pll.phi,Unit.pll.realExpression.y,Unit.pll.u0Pu.im,Unit.pll.u0Pu.re,Unit.pll.uPu.im,Unit.pll.uPu.re,Unit.rTfoPu,Unit.s0Pu.im,Unit.s0Pu.re,Unit.switch.u1,Unit.switch.u2,Unit.switch.u3,Unit.switch.y,Unit.switch1.u1,Unit.switch1.u2,Unit.switch1.u3,Unit.switch1.y,Unit.switch2.u1,Unit.switch2.u2,Unit.switch2.u3,Unit.switch2.y,Unit.switch3.u1,Unit.switch3.u2,Unit.switch3.u3,Unit.switch3.y,Unit.switch4.u1,Unit.switch4.u2,Unit.switch4.u3,Unit.switch4.y,Unit.switch5.u1,Unit.switch5.u2,Unit.switch5.u3,Unit.switch5.y,Unit.tFilterGC,Unit.tFilterPC,Unit.tFt,Unit.tFv,Unit.tG,Unit.tHoldIpMax,Unit.tHoldIq,Unit.tIq,Unit.tLag,Unit.tOmegaRef,Unit.tPord,Unit.tRv,Unit.tTheta,Unit.terminal.V.im,Unit.terminal.V.re,Unit.terminal.i.im,Unit.terminal.i.re,Unit.tpREEC,Unit.tpREPC,Unit.tpWTGQa,Unit.u.im,Unit.u.re,Unit.u.y.im,Unit.u.y.re,Unit.u0Pu.im,Unit.u0Pu.re,Unit.uControl0Pu.im,Unit.uControl0Pu.re,Unit.uConv0Pu.im,Unit.uConv0Pu.re,Unit.uInj0Pu.im,Unit.uInj0Pu.re,Unit.uPcc0Pu.im,Unit.uPcc0Pu.re,Unit.uPccPu.im,Unit.uPccPu.re,Unit.wecc_reec.DPMaxPu,Unit.wecc_reec.DPMinPu,Unit.wecc_reec.Dbd1Pu,Unit.wecc_reec.Dbd2Pu,Unit.wecc_reec.FRTOn.y,Unit.wecc_reec.FRTOn1.y,Unit.wecc_reec.FRTOn2.y,Unit.wecc_reec.FRTOn3.y,Unit.wecc_reec.FRTOn4.y,Unit.wecc_reec.FRTOn5.y,Unit.wecc_reec.IMaxPu,Unit.wecc_reec.Id0Pu,Unit.wecc_reec.IpmaxFromUPu.columns[1],Unit.wecc_reec.IpmaxFromUPu.extrapolation,Unit.wecc_reec.IpmaxFromUPu.nout,Unit.wecc_reec.IpmaxFromUPu.smoothness,Unit.wecc_reec.IpmaxFromUPu.tableOnFile,Unit.wecc_reec.IpmaxFromUPu.table[1,1],Unit.wecc_reec.IpmaxFromUPu.table[1,2],Unit.wecc_reec.IpmaxFromUPu.table[2,1],Unit.wecc_reec.IpmaxFromUPu.table[2,2],Unit.wecc_reec.IpmaxFromUPu.table[3,1],Unit.wecc_reec.IpmaxFromUPu.table[3,2],Unit.wecc_reec.IpmaxFromUPu.table[4,1],Unit.wecc_reec.IpmaxFromUPu.table[4,2],Unit.wecc_reec.IpmaxFromUPu.u,Unit.wecc_reec.IpmaxFromUPu.u_max,Unit.wecc_reec.IpmaxFromUPu.u_min,Unit.wecc_reec.IpmaxFromUPu.verboseExtrapolation,Unit.wecc_reec.IpmaxFromUPu.verboseRead,Unit.wecc_reec.IpmaxFromUPu.y[1],Unit.wecc_reec.Iq0Pu,Unit.wecc_reec.IqFrzPu,Unit.wecc_reec.IqMax.y,Unit.wecc_reec.IqMin.y,Unit.wecc_reec.Iqh1Pu,Unit.wecc_reec.Iql1Pu,Unit.wecc_reec.IqmaxFromUPu.columns[1],Unit.wecc_reec.IqmaxFromUPu.extrapolation,Unit.wecc_reec.IqmaxFromUPu.nout,Unit.wecc_reec.IqmaxFromUPu.smoothness,Unit.wecc_reec.IqmaxFromUPu.tableOnFile,Unit.wecc_reec.IqmaxFromUPu.table[1,1],Unit.wecc_reec.IqmaxFromUPu.table[1,2],Unit.wecc_reec.IqmaxFromUPu.table[2,1],Unit.wecc_reec.IqmaxFromUPu.table[2,2],Unit.wecc_reec.IqmaxFromUPu.table[3,1],Unit.wecc_reec.IqmaxFromUPu.table[3,2],Unit.wecc_reec.IqmaxFromUPu.table[4,1],Unit.wecc_reec.IqmaxFromUPu.table[4,2],Unit.wecc_reec.IqmaxFromUPu.u,Unit.wecc_reec.IqmaxFromUPu.u_max,Unit.wecc_reec.IqmaxFromUPu.u_min,Unit.wecc_reec.IqmaxFromUPu.verboseExtrapolation,Unit.wecc_reec.IqmaxFromUPu.verboseRead,Unit.wecc_reec.IqmaxFromUPu.y[1],Unit.wecc_reec.Kqi,Unit.wecc_reec.Kqp,Unit.wecc_reec.Kqv,Unit.wecc_reec.Kvi,Unit.wecc_reec.Kvp,Unit.wecc_reec.PConv0Pu,Unit.wecc_reec.PConvPu,Unit.wecc_reec.PConvRefPu,Unit.wecc_reec.PF0,Unit.wecc_reec.PFaRef,Unit.wecc_reec.PFlag,Unit.wecc_reec.PFlagConst.k,Unit.wecc_reec.PFlagConst.y,Unit.wecc_reec.PMaxREECPu,Unit.wecc_reec.PMinREECPu,Unit.wecc_reec.POrdPu,Unit.wecc_reec.PQFlag,Unit.wecc_reec.PfFlag,Unit.wecc_reec.PfFlag0.k,Unit.wecc_reec.PfFlag0.y,Unit.wecc_reec.QConv0Pu,Unit.wecc_reec.QConvPu,Unit.wecc_reec.QConvRefPu,Unit.wecc_reec.QFlag,Unit.wecc_reec.QFlag0.k,Unit.wecc_reec.QFlag0.y,Unit.wecc_reec.QMaxREECPu,Unit.wecc_reec.QMinREECPu,Unit.wecc_reec.SNom,Unit.wecc_reec.UConv0Pu,Unit.wecc_reec.UFilteredPu,Unit.wecc_reec.UFilteredPu2.y,Unit.wecc_reec.UFilteredPu3.y,Unit.wecc_reec.UFilteredPu5.y,Unit.wecc_reec.UInj0Pu,Unit.wecc_reec.UPu,Unit.wecc_reec.VDLIp11,Unit.wecc_reec.VDLIp12,Unit.wecc_reec.VDLIp21,Unit.wecc_reec.VDLIp22,Unit.wecc_reec.VDLIp31,Unit.wecc_reec.VDLIp32,Unit.wecc_reec.VDLIp41,Unit.wecc_reec.VDLIp42,Unit.wecc_reec.VDLIpPoints[1,1],Unit.wecc_reec.VDLIpPoints[1,2],Unit.wecc_reec.VDLIpPoints[2,1],Unit.wecc_reec.VDLIpPoints[2,2],Unit.wecc_reec.VDLIpPoints[3,1],Unit.wecc_reec.VDLIpPoints[3,2],Unit.wecc_reec.VDLIpPoints[4,1],Unit.wecc_reec.VDLIpPoints[4,2],Unit.wecc_reec.VDLIq11,Unit.wecc_reec.VDLIq12,Unit.wecc_reec.VDLIq21,Unit.wecc_reec.VDLIq22,Unit.wecc_reec.VDLIq31,Unit.wecc_reec.VDLIq32,Unit.wecc_reec.VDLIq41,Unit.wecc_reec.VDLIq42,Unit.wecc_reec.VDLIqPoints[1,1],Unit.wecc_reec.VDLIqPoints[1,2],Unit.wecc_reec.VDLIqPoints[2,1],Unit.wecc_reec.VDLIqPoints[2,2],Unit.wecc_reec.VDLIqPoints[3,1],Unit.wecc_reec.VDLIqPoints[3,2],Unit.wecc_reec.VDLIqPoints[4,1],Unit.wecc_reec.VDLIqPoints[4,2],Unit.wecc_reec.VDipPu,Unit.wecc_reec.VFlag,Unit.wecc_reec.VFlag0.k,Unit.wecc_reec.VFlag0.y,Unit.wecc_reec.VMaxPu,Unit.wecc_reec.VMinPu,Unit.wecc_reec.VRef0Pu,Unit.wecc_reec.VRef1Pu,Unit.wecc_reec.VRefConst.k,Unit.wecc_reec.VRefConst.y,Unit.wecc_reec.VRefConst1.k,Unit.wecc_reec.VRefConst1.y,Unit.wecc_reec.VUpPu,Unit.wecc_reec.add.k1,Unit.wecc_reec.add.k2,Unit.wecc_reec.add.u1,Unit.wecc_reec.add.u2,Unit.wecc_reec.add.y,Unit.wecc_reec.add1.k1,Unit.wecc_reec.add1.k2,Unit.wecc_reec.add1.u1,Unit.wecc_reec.add1.u2,Unit.wecc_reec.add1.y,Unit.wecc_reec.add2.k1,Unit.wecc_reec.add2.k2,Unit.wecc_reec.add2.u1,Unit.wecc_reec.add2.u2,Unit.wecc_reec.add2.y,Unit.wecc_reec.constant2.k,Unit.wecc_reec.constant2.y,Unit.wecc_reec.currentLimitsCalculation1.IMaxPu,Unit.wecc_reec.currentLimitsCalculation1.PQFlag,Unit.wecc_reec.currentLimitsCalculation1.ipCmdPu,Unit.wecc_reec.currentLimitsCalculation1.ipMaxFrzPu,Unit.wecc_reec.currentLimitsCalculation1.ipMaxPu,Unit.wecc_reec.currentLimitsCalculation1.ipMinPu,Unit.wecc_reec.currentLimitsCalculation1.ipRawMaxPu,Unit.wecc_reec.currentLimitsCalculation1.ipVdlPu,Unit.wecc_reec.currentLimitsCalculation1.iqCmdPu,Unit.wecc_reec.currentLimitsCalculation1.iqMaxPu,Unit.wecc_reec.currentLimitsCalculation1.iqMinPu,Unit.wecc_reec.currentLimitsCalculation1.iqRawMaxPu,Unit.wecc_reec.currentLimitsCalculation1.iqVdlPu,Unit.wecc_reec.currentLimitsCalculation1.tHoldIpMax,Unit.wecc_reec.currentLimitsCalculation1.vDip,Unit.wecc_reec.currentLimitsCalculation1.vDipFrzEndTime,Unit.wecc_reec.deadZone.deadZoneAtInit,Unit.wecc_reec.deadZone.u,Unit.wecc_reec.deadZone.uMax,Unit.wecc_reec.deadZone.uMin,Unit.wecc_reec.deadZone.y,Unit.wecc_reec.division.u1,Unit.wecc_reec.division.u2,Unit.wecc_reec.division.y,Unit.wecc_reec.division1.u1,Unit.wecc_reec.division1.u2,Unit.wecc_reec.division1.y,Unit.wecc_reec.firstOrder.T,Unit.wecc_reec.firstOrder.initType,Unit.wecc_reec.firstOrder.k,Unit.wecc_reec.firstOrder.u,Unit.wecc_reec.firstOrder.y,Unit.wecc_reec.firstOrder.y_start,Unit.wecc_reec.firstOrder1.T,Unit.wecc_reec.firstOrder1.initType,Unit.wecc_reec.firstOrder1.k,Unit.wecc_reec.firstOrder1.u,Unit.wecc_reec.firstOrder1.y,Unit.wecc_reec.firstOrder1.y_start,Unit.wecc_reec.frtOn,Unit.wecc_reec.gain.k,Unit.wecc_reec.gain.u,Unit.wecc_reec.gain.y,Unit.wecc_reec.idCmdPu,Unit.wecc_reec.ipMaxPu,Unit.wecc_reec.ipMinPu,Unit.wecc_reec.iqCmdPu,Unit.wecc_reec.iqInjectionLogic.IqFrzPu,Unit.wecc_reec.iqInjectionLogic.iqInjPu,Unit.wecc_reec.iqInjectionLogic.iqVPu,Unit.wecc_reec.iqInjectionLogic.tHoldIq,Unit.wecc_reec.iqInjectionLogic.vDip,Unit.wecc_reec.iqInjectionLogic.vDipInjEndTime,Unit.wecc_reec.iqMaxPu,Unit.wecc_reec.iqMinPu,Unit.wecc_reec.limPIDFreeze.FFzero.k,Unit.wecc_reec.limPIDFreeze.FFzero.y,Unit.wecc_reec.limPIDFreeze.I.K,Unit.wecc_reec.limPIDFreeze.I.Y0,Unit.wecc_reec.limPIDFreeze.I.freeze,Unit.wecc_reec.limPIDFreeze.I.freezeLocal,Unit.wecc_reec.limPIDFreeze.I.resetLocal,Unit.wecc_reec.limPIDFreeze.I.setLocal,Unit.wecc_reec.limPIDFreeze.I.u,Unit.wecc_reec.limPIDFreeze.I.y,Unit.wecc_reec.limPIDFreeze.K,Unit.wecc_reec.limPIDFreeze.Kff,Unit.wecc_reec.limPIDFreeze.Ni,Unit.wecc_reec.limPIDFreeze.P.k,Unit.wecc_reec.limPIDFreeze.P.u,Unit.wecc_reec.limPIDFreeze.P.y,Unit.wecc_reec.limPIDFreeze.Strict,Unit.wecc_reec.limPIDFreeze.Ti,Unit.wecc_reec.limPIDFreeze.WithFeedForward,Unit.wecc_reec.limPIDFreeze.Wp,Unit.wecc_reec.limPIDFreeze.Xi0,Unit.wecc_reec.limPIDFreeze.Y0,Unit.wecc_reec.limPIDFreeze.YMax,Unit.wecc_reec.limPIDFreeze.YMin,Unit.wecc_reec.limPIDFreeze.addFF.k1,Unit.wecc_reec.limPIDFreeze.addFF.k2,Unit.wecc_reec.limPIDFreeze.addFF.u1,Unit.wecc_reec.limPIDFreeze.addFF.u2,Unit.wecc_reec.limPIDFreeze.addFF.y,Unit.wecc_reec.limPIDFreeze.addI.k1,Unit.wecc_reec.limPIDFreeze.addI.k2,Unit.wecc_reec.limPIDFreeze.addI.k3,Unit.wecc_reec.limPIDFreeze.addI.u1,Unit.wecc_reec.limPIDFreeze.addI.u2,Unit.wecc_reec.limPIDFreeze.addI.u3,Unit.wecc_reec.limPIDFreeze.addI.y,Unit.wecc_reec.limPIDFreeze.addP.k1,Unit.wecc_reec.limPIDFreeze.addP.k2,Unit.wecc_reec.limPIDFreeze.addP.u1,Unit.wecc_reec.limPIDFreeze.addP.u2,Unit.wecc_reec.limPIDFreeze.addP.y,Unit.wecc_reec.limPIDFreeze.addPID.k1,Unit.wecc_reec.limPIDFreeze.addPID.k2,Unit.wecc_reec.limPIDFreeze.addPID.u1,Unit.wecc_reec.limPIDFreeze.addPID.u2,Unit.wecc_reec.limPIDFreeze.addPID.y,Unit.wecc_reec.limPIDFreeze.addSat.k1,Unit.wecc_reec.limPIDFreeze.addSat.k2,Unit.wecc_reec.limPIDFreeze.addSat.u1,Unit.wecc_reec.limPIDFreeze.addSat.u2,Unit.wecc_reec.limPIDFreeze.addSat.y,Unit.wecc_reec.limPIDFreeze.controlError,Unit.wecc_reec.limPIDFreeze.freeze,Unit.wecc_reec.limPIDFreeze.gainPID.k,Unit.wecc_reec.limPIDFreeze.gainPID.u,Unit.wecc_reec.limPIDFreeze.gainPID.y,Unit.wecc_reec.limPIDFreeze.gainTrack.k,Unit.wecc_reec.limPIDFreeze.gainTrack.u,Unit.wecc_reec.limPIDFreeze.gainTrack.y,Unit.wecc_reec.limPIDFreeze.limiter.homotopyType,Unit.wecc_reec.limPIDFreeze.limiter.limitsAtInit,Unit.wecc_reec.limPIDFreeze.limiter.simplifiedExpr,Unit.wecc_reec.limPIDFreeze.limiter.strict,Unit.wecc_reec.limPIDFreeze.limiter.u,Unit.wecc_reec.limPIDFreeze.limiter.uMax,Unit.wecc_reec.limPIDFreeze.limiter.uMin,Unit.wecc_reec.limPIDFreeze.limiter.y,Unit.wecc_reec.limPIDFreeze.u_m,Unit.wecc_reec.limPIDFreeze.u_s,Unit.wecc_reec.limPIDFreeze.y,Unit.wecc_reec.limiter.homotopyType,Unit.wecc_reec.limiter.limitsAtInit,Unit.wecc_reec.limiter.simplifiedExpr,Unit.wecc_reec.limiter.strict,Unit.wecc_reec.limiter.u,Unit.wecc_reec.limiter.uMax,Unit.wecc_reec.limiter.uMin,Unit.wecc_reec.limiter.y,Unit.wecc_reec.limiter1.homotopyType,Unit.wecc_reec.limiter1.limitsAtInit,Unit.wecc_reec.limiter1.simplifiedExpr,Unit.wecc_reec.limiter1.strict,Unit.wecc_reec.limiter1.u,Unit.wecc_reec.limiter1.uMax,Unit.wecc_reec.limiter1.uMin,Unit.wecc_reec.limiter1.y,Unit.wecc_reec.limiter2.homotopyType,Unit.wecc_reec.limiter2.limitsAtInit,Unit.wecc_reec.limiter2.simplifiedExpr,Unit.wecc_reec.limiter2.strict,Unit.wecc_reec.limiter2.u,Unit.wecc_reec.limiter2.uMax,Unit.wecc_reec.limiter2.uMin,Unit.wecc_reec.limiter2.y,Unit.wecc_reec.limiter3.homotopyType,Unit.wecc_reec.limiter3.limitsAtInit,Unit.wecc_reec.limiter3.simplifiedExpr,Unit.wecc_reec.limiter3.strict,Unit.wecc_reec.limiter3.u,Unit.wecc_reec.limiter3.uMax,Unit.wecc_reec.limiter3.uMin,Unit.wecc_reec.limiter3.y,Unit.wecc_reec.max1.u1,Unit.wecc_reec.max1.u2,Unit.wecc_reec.max1.y,Unit.wecc_reec.omegaGPu,Unit.wecc_reec.omegaRefWTGQPu0,Unit.wecc_reec.product.u1,Unit.wecc_reec.product.u2,Unit.wecc_reec.product.y,Unit.wecc_reec.product2.u1,Unit.wecc_reec.product2.u2,Unit.wecc_reec.product2.y,Unit.wecc_reec.rateLimFirstOrderFreeze.T,Unit.wecc_reec.rateLimFirstOrderFreeze.Y0,Unit.wecc_reec.rateLimFirstOrderFreeze.dyMaxLocal,Unit.wecc_reec.rateLimFirstOrderFreeze.dyMinLocal,Unit.wecc_reec.rateLimFirstOrderFreeze.freeze,Unit.wecc_reec.rateLimFirstOrderFreeze.k,Unit.wecc_reec.rateLimFirstOrderFreeze.local_freeze,Unit.wecc_reec.rateLimFirstOrderFreeze.u,Unit.wecc_reec.rateLimFirstOrderFreeze.y,Unit.wecc_reec.rateLimFirstOrderFreeze1.T,Unit.wecc_reec.rateLimFirstOrderFree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filterSimulationResults("Dynawo_dev_Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10_res.mat", "/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/files/Dynawo_dev_Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10.diff.mat", vars={"inertialGrid1.omegaPu", "Unit.LvMeasurements.QPu", "Unit.LvMeasurements.PPu", "Unit.HvMeasurements.QPu", "Unit.HvMeasurements.PPu"}, removeDescription=false) [Timeout 660] "" [Timeout remaining time 657] filterSimulationResults("/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/ReferenceFiles/Dynawo/dynawo/sources/Models/Modelica/Dynawo/Examples/references/Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10_res.csv", "/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/files/Dynawo_dev_Dynawo.Examples.GridCodeSimulations.SheetSimulations.SheetI10.diff.ref.mat", vars={"inertialGrid1.omegaPu", "Unit.LvMeasurements.QPu", "Unit.LvMeasurements.PPu", "Unit.HvMeasurements.QPu", "Unit.HvMeasurements.PPu"}, removeDescription=false) [Timeout 660] "" [Timeout remaining time 660] [Calling sys.exit(0), Time elapsed: 11.255108845885843]