Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr Dynawo_dev_Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB.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 0.0009549/0.0009549, allocations: 72.95 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 0.0009066/0.0009066, allocations: 169.4 kB / 24.17 MB, free: 332 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 0.7665/0.7665, allocations: 158.6 MB / 186 MB, free: 2.758 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 0.4384/0.4384, allocations: 90.86 MB / 329.2 MB, free: 14.2 MB / 314.7 MB " [Timeout remaining time 180] Using package Dynawo with version 2.0.0 (/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) Ignoring simflag -noemit -emit_protected=() since the simulation runtime does not accept it Running command: translateModel(Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB,tolerance=1e-06,outputFormat="mat",numberOfIntervals=15000,variableFilter="time",fileNamePrefix="Dynawo_dev_Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB") translateModel(Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB,tolerance=1e-06,outputFormat="mat",numberOfIntervals=15000,variableFilter="time",fileNamePrefix="Dynawo_dev_Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB") [Timeout 660] "Notification: Performance of FrontEnd - loaded program: time 1.643e-06/1.643e-06, allocations: 0 / 385 MB, free: 6.895 MB / 362.7 MB Notification: Performance of FrontEnd - Absyn->SCode: time 2.071e-05/2.235e-05, allocations: 6.25 kB / 385 MB, free: 6.887 MB / 362.7 MB Notification: Performance of NFInst.instantiate(Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB): time 0.02599/0.02601, allocations: 32.24 MB / 417.2 MB, free: 6.52 MB / 394.7 MB Notification: Performance of NFInst.instExpressions: time 0.02548/0.05149, allocations: 16.85 MB / 434.1 MB, free: 5.621 MB / 410.7 MB Notification: Performance of NFInst.updateImplicitVariability: time 0.006604/0.05809, allocations: 218.5 kB / 434.3 MB, free: 5.406 MB / 410.7 MB Notification: Performance of NFTyping.typeComponents: time 0.006495/0.06459, allocations: 3.113 MB / 437.4 MB, free: 2.273 MB / 410.7 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 0.01132/0.07591, allocations: 4.631 MB / 442 MB, free: 13.62 MB / 426.7 MB Notification: Performance of NFTyping.typeClassSections: time 0.01293/0.08884, allocations: 8.711 MB / 450.7 MB, free: 4.906 MB / 426.7 MB Notification: Performance of NFFlatten.flatten: time 0.01825/0.1071, allocations: 18 MB / 468.7 MB, free: 2.875 MB / 442.7 MB Notification: Performance of NFFlatten.resolveConnections: time 0.2824/0.3895, allocations: 3.804 MB / 472.5 MB, free: 34.09 MB / 442.8 MB Notification: Performance of NFEvalConstants.evaluate: time 0.01019/0.3997, allocations: 5.977 MB / 478.5 MB, free: 34.09 MB / 442.8 MB Notification: Performance of NFSimplifyModel.simplify: time 0.007824/0.4075, allocations: 5.454 MB / 484 MB, free: 33.96 MB / 442.8 MB Notification: Performance of NFPackage.collectConstants: time 0.004946/0.4125, allocations: 2.005 MB / 486 MB, free: 33.96 MB / 442.8 MB Notification: Performance of NFFlatten.collectFunctions: time 0.005064/0.4175, allocations: 2.413 MB / 488.4 MB, free: 33.96 MB / 442.8 MB Notification: Performance of NFScalarize.scalarize: time 0.005003/0.4225, allocations: 4.687 MB / 493.1 MB, free: 33.22 MB / 442.8 MB Notification: Performance of NFVerifyModel.verify: time 0.007191/0.4297, allocations: 4.818 MB / 497.9 MB, free: 32.48 MB / 442.8 MB Notification: Performance of NFConvertDAE.convert: time 0.01572/0.4455, allocations: 12.13 MB / 0.4981 GB, free: 30.89 MB / 442.8 MB Notification: Performance of FrontEnd - DAE generated: time 7.193e-06/0.4455, allocations: 0 / 0.4981 GB, free: 30.89 MB / 442.8 MB Notification: Performance of FrontEnd: time 1.673e-06/0.4455, allocations: 3.906 kB / 0.4981 GB, free: 30.89 MB / 442.8 MB Notification: Performance of Transformations before backend: time 0.0004691/0.4459, allocations: 0.7188 kB / 0.4981 GB, free: 30.89 MB / 442.8 MB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 1797 * Number of variables: 1797 Notification: Performance of Generate backend data structure: time 0.02753/0.4735, allocations: 17.17 MB / 0.5149 GB, free: 23.05 MB / 442.8 MB Notification: Performance of prepare preOptimizeDAE: time 4.081e-05/0.4735, allocations: 7.656 kB / 0.5149 GB, free: 23.05 MB / 442.8 MB Notification: Performance of preOpt normalInlineFunction (simulation): time 0.01025/0.4838, allocations: 3.399 MB / 0.5182 GB, free: 20.39 MB / 442.8 MB Notification: Performance of preOpt evaluateParameters (simulation): time 0.01237/0.4961, allocations: 6.137 MB / 0.5242 GB, free: 14.7 MB / 442.8 MB Notification: Performance of preOpt simplifyIfEquations (simulation): time 0.001045/0.4972, allocations: 3.117 MB / 0.5272 GB, free: 11 MB / 442.8 MB Notification: Performance of preOpt expandDerOperator (simulation): time 0.001818/0.499, allocations: 0.7411 MB / 0.5279 GB, free: 10.26 MB / 442.8 MB Notification: Performance of preOpt clockPartitioning (simulation): time 0.01137/0.5104, allocations: 7.172 MB / 0.5349 GB, free: 2.695 MB / 442.8 MB Notification: Performance of preOpt findStateOrder (simulation): time 0.0001216/0.5105, allocations: 18.12 kB / 0.535 GB, free: 2.688 MB / 442.8 MB Notification: Performance of preOpt replaceEdgeChange (simulation): time 0.001011/0.5115, allocations: 308 kB / 0.5353 GB, free: 2.387 MB / 442.8 MB Notification: Performance of preOpt inlineArrayEqn (simulation): time 7.301e-05/0.5116, allocations: 179.9 kB / 0.5354 GB, free: 2.211 MB / 442.8 MB Notification: Performance of preOpt removeEqualRHS (simulation): time 0.006623/0.5182, allocations: 2.25 MB / 0.5376 GB, free: 4 kB / 442.8 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 0.04585/0.564, allocations: 25.1 MB / 0.5621 GB, free: 7.52 MB / 474.8 MB Notification: Performance of preOpt comSubExp (simulation): time 0.006287/0.5703, allocations: 3.64 MB / 0.5657 GB, free: 3.996 MB / 474.8 MB Notification: Performance of preOpt resolveLoops (simulation): time 0.002241/0.5726, allocations: 1.087 MB / 0.5667 GB, free: 2.91 MB / 474.8 MB Notification: Performance of preOpt evalFunc (simulation): time 0.0003977/0.573, allocations: 148.4 kB / 0.5669 GB, free: 2.762 MB / 474.8 MB Notification: Performance of preOpt encapsulateWhenConditions (simulation): time 0.00378/0.5768, allocations: 2.926 MB / 0.5697 GB, free: 15.86 MB / 490.8 MB Notification: Performance of pre-optimization done (n=661): time 1.003e-05/0.5768, allocations: 0 / 0.5697 GB, free: 15.86 MB / 490.8 MB Notification: Performance of matching and sorting (n=661): time 0.019/0.5958, allocations: 7.881 MB / 0.5774 GB, free: 7.984 MB / 490.8 MB Notification: Performance of inlineWhenForInitialization (initialization): time 0.0003891/0.5961, allocations: 1.372 MB / 0.5788 GB, free: 6.309 MB / 490.8 MB Notification: Performance of selectInitializationVariablesDAE (initialization): time 0.01328/0.6094, allocations: 9.501 MB / 0.5881 GB, free: 14.63 MB / 0.4949 GB Notification: Performance of collectPreVariables (initialization): time 0.001276/0.6107, allocations: 185.7 kB / 0.5882 GB, free: 14.45 MB / 0.4949 GB Notification: Performance of collectInitialEqns (initialization): time 0.003813/0.6145, allocations: 3.249 MB / 0.5914 GB, free: 11.75 MB / 0.4949 GB Notification: Performance of collectInitialBindings (initialization): time 0.002745/0.6173, allocations: 2.308 MB / 0.5937 GB, free: 9.629 MB / 0.4949 GB Notification: Performance of simplifyInitialFunctions (initialization): time 0.00435/0.6216, allocations: 1.91 MB / 0.5955 GB, free: 7.992 MB / 0.4949 GB Notification: Performance of setup shared object (initialization): time 7.234e-05/0.6217, allocations: 305.1 kB / 0.5958 GB, free: 7.691 MB / 0.4949 GB Notification: Performance of preBalanceInitialSystem (initialization): time 0.00422/0.6259, allocations: 1.728 MB / 0.5975 GB, free: 5.938 MB / 0.4949 GB Notification: Performance of partitionIndependentBlocks (initialization): time 0.005984/0.6319, allocations: 4.372 MB / 0.6018 GB, free: 1.004 MB / 0.4949 GB Notification: Performance of analyzeInitialSystem (initialization): time 0.01396/0.6459, allocations: 7.621 MB / 0.6092 GB, free: 9.203 MB / 0.5105 GB Notification: Performance of solveInitialSystemEqSystem (initialization): time 3.628e-05/0.6459, allocations: 8 kB / 0.6092 GB, free: 9.195 MB / 0.5105 GB Notification: Performance of matching and sorting (n=1307) (initialization): time 0.01697/0.6629, allocations: 7.232 MB / 0.6163 GB, free: 2.105 MB / 0.5105 GB Notification: Performance of prepare postOptimizeDAE: time 0.0001252/0.663, allocations: 103.3 kB / 0.6164 GB, free: 1.992 MB / 0.5105 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 4.556e-05/0.663, allocations: 31.47 kB / 0.6164 GB, free: 1.965 MB / 0.5105 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.002188/0.6652, allocations: 1.456 MB / 0.6178 GB, free: 0.5078 MB / 0.5105 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.005565/0.6708, allocations: 1.857 MB / 0.6197 GB, free: 14.77 MB / 0.5262 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.01325/0.684, allocations: 14.56 MB / 0.6339 GB, free: 15.77 MB / 0.5418 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.006831/0.6909, allocations: 0.9327 MB / 0.6348 GB, free: 14.83 MB / 0.5418 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.001525/0.6924, allocations: 256 kB / 0.635 GB, free: 14.58 MB / 0.5418 GB Warning: Assuming fixed start value for the following 58 variables: 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) line1.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = line1.State0 fixed = true ) \"Line connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) line2A.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = line2A.State0 fixed = true ) \"Line connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) line2B.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = line2B.State0 fixed = true ) \"Line connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) line3.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = line3.State0 fixed = true ) \"Line connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) transformer.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = transformer.State0 fixed = true ) \"Transformer connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) transformer1.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = transformer1.State0 fixed = true ) \"Transformer connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) wPP4BCurrentSource.PCS.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = wPP4BCurrentSource.PCS.State0 fixed = true ) \"Transformer connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.elecSystem.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.elecSystem.State0 fixed = true ) \"Transformer connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.State0 fixed = true ) \"Injector connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) line.running:DISCRETE(flow=false start = line.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean line1.running:DISCRETE(flow=false start = line1.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean line2A.running:DISCRETE(flow=false start = line2A.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean line2B.running:DISCRETE(flow=false start = line2B.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean line3.running:DISCRETE(flow=false start = line3.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean transformer.running:DISCRETE(flow=false start = transformer.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean transformer1.running:DISCRETE(flow=false start = transformer1.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean wPP4BCurrentSource.PCS.running:DISCRETE(flow=false start = wPP4BCurrentSource.PCS.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.running:DISCRETE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.elecSystem.running:DISCRETE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.elecSystem.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean wPP4BCurrentSource.wT4BCurrentSource.pll.fixedBooleanDelay1.y:DISCRETE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.pll.fixedBooleanDelay1.Y0 fixed = true ) \"Connector of Boolean output signal\" type: Boolean wPP4BCurrentSource.wT4BCurrentSource.pll.fixedBooleanDelay.y:DISCRETE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.pll.fixedBooleanDelay.Y0 fixed = true ) \"Connector of Boolean output signal\" type: Boolean wPP4BCurrentSource.wT4BCurrentSource.control4B.pControl4B.firstOrder.y:VARIABLE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.mechanical.Ip0Pu * wPP4BCurrentSource.wT4BCurrentSource.mechanical.U0Pu fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.derivative.x:VARIABLE(start = wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.derivative.x_start fixed = true ) \"State of block\" type: Real wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.firstOrder.y:VARIABLE(flow=false start = -wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.P0Pu * 100.0 / wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.firstOrder1.y:VARIABLE(flow=false start = -wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.Q0Pu * 100.0 / wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.firstOrder2.y:VARIABLE(flow=false start = 100.0 * (wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.i0Pu.re ^ 2.0 + wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.i0Pu.im ^ 2.0) ^ 0.5 / wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.firstOrder3.y:VARIABLE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.gridProtection.U0Pu fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.firstOrder4.y:VARIABLE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.firstOrder4.y_start fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.derivative.x:VARIABLE(start = wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.derivative.x_start fixed = true ) \"State of block\" type: Real wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.firstOrder.y:VARIABLE(flow=false start = -wPP4BCurrentSource.wT4BCurrentSource.control4B.P0Pu * 100.0 / wPP4BCurrentSource.wT4BCurrentSource.control4B.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.firstOrder1.y:VARIABLE(flow=false start = -wPP4BCurrentSource.wT4BCurrentSource.control4B.Q0Pu * 100.0 / wPP4BCurrentSource.wT4BCurrentSource.control4B.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.firstOrder2.y:VARIABLE(flow=false start = 100.0 * (wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.i0Pu.re ^ 2.0 + wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.i0Pu.im ^ 2.0) ^ 0.5 / wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.firstOrder3.y:VARIABLE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.control4B.U0Pu fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.firstOrder4.y:VARIABLE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.firstOrder4.y_start fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.derivative.x:VARIABLE(start = wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.derivative.x_start fixed = true ) \"State of block\" type: Real wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay.y:DISCRETE(flow=false start = wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay.Y0 fixed = true ) \"Connector of Boolean output signal\" type: Boolean wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay1.y:DISCRETE(flow=false start = wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay1.Y0 fixed = true ) \"Connector of Boolean output signal\" type: Boolean wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay.y:DISCRETE(flow=false start = wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay.Y0 fixed = true ) \"Connector of Boolean output signal\" type: Boolean wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay1.y:DISCRETE(flow=false start = wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay1.Y0 fixed = true ) \"Connector of Boolean output signal\" type: Boolean wPP4BCurrentSource.wPPControl.measurements.firstOrder.y:VARIABLE(flow=false start = -wPP4BCurrentSource.wPPControl.measurements.P0Pu * 100.0 / wPP4BCurrentSource.wPPControl.measurements.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wPPControl.measurements.firstOrder1.y:VARIABLE(flow=false start = -wPP4BCurrentSource.wPPControl.measurements.Q0Pu * 100.0 / wPP4BCurrentSource.wPPControl.measurements.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wPPControl.measurements.firstOrder2.y:VARIABLE(flow=false start = 100.0 * (wPP4BCurrentSource.wPPControl.measurements.i0Pu.re ^ 2.0 + wPP4BCurrentSource.wPPControl.measurements.i0Pu.im ^ 2.0) ^ 0.5 / wPP4BCurrentSource.wPPControl.measurements.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wPPControl.measurements.firstOrder3.y:VARIABLE(flow=false start = wPP4BCurrentSource.wPPControl.measurements.U0Pu fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wPPControl.measurements.firstOrder4.y:VARIABLE(flow=false start = wPP4BCurrentSource.wPPControl.measurements.firstOrder4.y_start fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wPPControl.measurements.derivative.x:VARIABLE(start = wPP4BCurrentSource.wPPControl.measurements.derivative.x_start fixed = true ) \"State of block\" type: Real wPP4BCurrentSource.wPPControl.linearCommunicationWPRef.leadLag[1].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationWPRef.leadLag[1].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationWPRef.leadLag[1].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [2,1] wPP4BCurrentSource.wPPControl.linearCommunicationWPRef.leadLag[2].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationWPRef.leadLag[2].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationWPRef.leadLag[2].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [2,1] wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[1].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[1].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[1].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [4,1] wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[2].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[2].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[2].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [4,1] wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[3].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[3].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[3].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [4,1] wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[4].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[4].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[4].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [4,1] wPP4BCurrentSource.wPPControl.linearCommunicationPD.leadLag[1].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationPD.leadLag[1].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationPD.leadLag[1].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [2,1] wPP4BCurrentSource.wPPControl.linearCommunicationPD.leadLag[2].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationPD.leadLag[2].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationPD.leadLag[2].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [2,1] nodeFault.nodeFault:DISCRETE(flow=false start = false fixed = true ) \"True when the fault is ongoing, false otherwise\" type: Boolean nodeFault1.nodeFault:DISCRETE(flow=false start = false fixed = true ) \"True when the fault is ongoing, false otherwise\" type: Boolean wPP4BCurrentSource.iControl0Pu.re:VARIABLE(unit = \"1\" fixed = true ) \"Real part of complex number\" type: Real wPP4BCurrentSource.iControl0Pu.im:VARIABLE(unit = \"1\" fixed = true ) \"Imaginary part of complex number\" type: Real Notification: Performance of preBalanceInitialSystem (initialization_lambda0): time 0.008597/0.701, allocations: 2.428 MB / 0.6374 GB, free: 12.18 MB / 0.5418 GB Notification: Performance of partitionIndependentBlocks (initialization_lambda0): time 0.005425/0.7064, allocations: 4.37 MB / 0.6417 GB, free: 7.246 MB / 0.5418 GB Notification: Performance of analyzeInitialSystem (initialization_lambda0): time 0.01291/0.7193, allocations: 7.589 MB / 0.6491 GB, free: 15.47 MB / 0.5574 GB Notification: Performance of solveInitialSystemEqSystem (initialization_lambda0): time 4.118e-05/0.7194, allocations: 8 kB / 0.6491 GB, free: 15.46 MB / 0.5574 GB Notification: Performance of matching and sorting (n=1307) (initialization_lambda0): time 0.01785/0.7372, allocations: 7.24 MB / 0.6562 GB, free: 8.367 MB / 0.5574 GB Notification: Performance of prepare postOptimizeDAE: time 0.0001045/0.7373, allocations: 103.4 kB / 0.6563 GB, free: 8.254 MB / 0.5574 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 4.372e-05/0.7374, allocations: 28 kB / 0.6563 GB, free: 8.227 MB / 0.5574 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.002106/0.7395, allocations: 1.459 MB / 0.6577 GB, free: 6.766 MB / 0.5574 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.005257/0.7447, allocations: 1.859 MB / 0.6595 GB, free: 5.027 MB / 0.5574 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.0133/0.758, allocations: 14.56 MB / 0.6737 GB, free: 6.027 MB / 0.573 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.006647/0.7647, allocations: 0.9187 MB / 0.6746 GB, free: 5.102 MB / 0.573 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.00149/0.7662, allocations: 260 kB / 0.6749 GB, free: 4.848 MB / 0.573 GB Warning: Assuming fixed start value for the following 58 variables: 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) line1.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = line1.State0 fixed = true ) \"Line connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) line2A.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = line2A.State0 fixed = true ) \"Line connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) line2B.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = line2B.State0 fixed = true ) \"Line connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) line3.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = line3.State0 fixed = true ) \"Line connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) transformer.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = transformer.State0 fixed = true ) \"Transformer connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) transformer1.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = transformer1.State0 fixed = true ) \"Transformer connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) wPP4BCurrentSource.PCS.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = wPP4BCurrentSource.PCS.State0 fixed = true ) \"Transformer connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.elecSystem.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.elecSystem.State0 fixed = true ) \"Transformer connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.state:DISCRETE(min = Dynawo.Electrical.Constants.state.Open max = Dynawo.Electrical.Constants.state.Undefined start = wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.State0 fixed = true ) \"Injector connection state\" type: enumeration(Open, Closed, Closed1, Closed2, Closed3, Undefined) line.running:DISCRETE(flow=false start = line.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean line1.running:DISCRETE(flow=false start = line1.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean line2A.running:DISCRETE(flow=false start = line2A.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean line2B.running:DISCRETE(flow=false start = line2B.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean line3.running:DISCRETE(flow=false start = line3.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean transformer.running:DISCRETE(flow=false start = transformer.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean transformer1.running:DISCRETE(flow=false start = transformer1.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean wPP4BCurrentSource.PCS.running:DISCRETE(flow=false start = wPP4BCurrentSource.PCS.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.running:DISCRETE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.elecSystem.running:DISCRETE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.elecSystem.Running0 fixed = true ) \"Indicates if the component is running or not\" type: Boolean wPP4BCurrentSource.wT4BCurrentSource.pll.fixedBooleanDelay1.y:DISCRETE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.pll.fixedBooleanDelay1.Y0 fixed = true ) \"Connector of Boolean output signal\" type: Boolean wPP4BCurrentSource.wT4BCurrentSource.pll.fixedBooleanDelay.y:DISCRETE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.pll.fixedBooleanDelay.Y0 fixed = true ) \"Connector of Boolean output signal\" type: Boolean wPP4BCurrentSource.wT4BCurrentSource.control4B.pControl4B.firstOrder.y:VARIABLE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.mechanical.Ip0Pu * wPP4BCurrentSource.wT4BCurrentSource.mechanical.U0Pu fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.derivative.x:VARIABLE(start = wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.derivative.x_start fixed = true ) \"State of block\" type: Real wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.firstOrder.y:VARIABLE(flow=false start = -wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.P0Pu * 100.0 / wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.firstOrder1.y:VARIABLE(flow=false start = -wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.Q0Pu * 100.0 / wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.firstOrder2.y:VARIABLE(flow=false start = 100.0 * (wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.i0Pu.re ^ 2.0 + wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.i0Pu.im ^ 2.0) ^ 0.5 / wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.firstOrder3.y:VARIABLE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.gridProtection.U0Pu fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.firstOrder4.y:VARIABLE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.firstOrder4.y_start fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.derivative.x:VARIABLE(start = wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.derivative.x_start fixed = true ) \"State of block\" type: Real wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.firstOrder.y:VARIABLE(flow=false start = -wPP4BCurrentSource.wT4BCurrentSource.control4B.P0Pu * 100.0 / wPP4BCurrentSource.wT4BCurrentSource.control4B.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.firstOrder1.y:VARIABLE(flow=false start = -wPP4BCurrentSource.wT4BCurrentSource.control4B.Q0Pu * 100.0 / wPP4BCurrentSource.wT4BCurrentSource.control4B.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.firstOrder2.y:VARIABLE(flow=false start = 100.0 * (wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.i0Pu.re ^ 2.0 + wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.i0Pu.im ^ 2.0) ^ 0.5 / wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.firstOrder3.y:VARIABLE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.control4B.U0Pu fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.firstOrder4.y:VARIABLE(flow=false start = wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.firstOrder4.y_start fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.derivative.x:VARIABLE(start = wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.derivative.x_start fixed = true ) \"State of block\" type: Real wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay.y:DISCRETE(flow=false start = wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay.Y0 fixed = true ) \"Connector of Boolean output signal\" type: Boolean wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay1.y:DISCRETE(flow=false start = wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay1.Y0 fixed = true ) \"Connector of Boolean output signal\" type: Boolean wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay.y:DISCRETE(flow=false start = wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay.Y0 fixed = true ) \"Connector of Boolean output signal\" type: Boolean wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay1.y:DISCRETE(flow=false start = wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay1.Y0 fixed = true ) \"Connector of Boolean output signal\" type: Boolean wPP4BCurrentSource.wPPControl.measurements.firstOrder.y:VARIABLE(flow=false start = -wPP4BCurrentSource.wPPControl.measurements.P0Pu * 100.0 / wPP4BCurrentSource.wPPControl.measurements.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wPPControl.measurements.firstOrder1.y:VARIABLE(flow=false start = -wPP4BCurrentSource.wPPControl.measurements.Q0Pu * 100.0 / wPP4BCurrentSource.wPPControl.measurements.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wPPControl.measurements.firstOrder2.y:VARIABLE(flow=false start = 100.0 * (wPP4BCurrentSource.wPPControl.measurements.i0Pu.re ^ 2.0 + wPP4BCurrentSource.wPPControl.measurements.i0Pu.im ^ 2.0) ^ 0.5 / wPP4BCurrentSource.wPPControl.measurements.SNom fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wPPControl.measurements.firstOrder3.y:VARIABLE(flow=false start = wPP4BCurrentSource.wPPControl.measurements.U0Pu fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wPPControl.measurements.firstOrder4.y:VARIABLE(flow=false start = wPP4BCurrentSource.wPPControl.measurements.firstOrder4.y_start fixed = true ) \"Connector of Real output signal\" type: Real wPP4BCurrentSource.wPPControl.measurements.derivative.x:VARIABLE(start = wPP4BCurrentSource.wPPControl.measurements.derivative.x_start fixed = true ) \"State of block\" type: Real wPP4BCurrentSource.wPPControl.linearCommunicationWPRef.leadLag[1].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationWPRef.leadLag[1].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationWPRef.leadLag[1].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [2,1] wPP4BCurrentSource.wPPControl.linearCommunicationWPRef.leadLag[2].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationWPRef.leadLag[2].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationWPRef.leadLag[2].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [2,1] wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[1].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[1].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[1].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [4,1] wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[2].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[2].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[2].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [4,1] wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[3].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[3].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[3].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [4,1] wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[4].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[4].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationWPM.leadLag[4].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [4,1] wPP4BCurrentSource.wPPControl.linearCommunicationPD.leadLag[1].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationPD.leadLag[1].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationPD.leadLag[1].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [2,1] wPP4BCurrentSource.wPPControl.linearCommunicationPD.leadLag[2].x_scaled[1]:VARIABLE(start = wPP4BCurrentSource.wPPControl.linearCommunicationPD.leadLag[2].X0[1] * wPP4BCurrentSource.wPPControl.linearCommunicationPD.leadLag[2].a_end fixed = true protected = true ) \"Scaled vector x\" type: Real [2,1] nodeFault.nodeFault:DISCRETE(flow=false start = false fixed = true ) \"True when the fault is ongoing, false otherwise\" type: Boolean nodeFault1.nodeFault:DISCRETE(flow=false start = false fixed = true ) \"True when the fault is ongoing, false otherwise\" type: Boolean wPP4BCurrentSource.iControl0Pu.re:VARIABLE(unit = \"1\" fixed = true ) \"Real part of complex number\" type: Real wPP4BCurrentSource.iControl0Pu.im:VARIABLE(unit = \"1\" fixed = true ) \"Imaginary part of complex number\" type: Real Notification: Model statistics after passing the back-end for initialization: * Number of independent subsystems: 124 * Number of states: 0 () * Number of discrete variables: 209 ($PRE.line.state,line.state,$PRE.line1.state,line1.state,$PRE.line2A.state,line2A.state,$PRE.line2B.state,line2B.state,$PRE.line3.state,line3.state,$PRE.transformer.state,transformer.state,$PRE.transformer1.state,transformer1.state,$PRE.wPP4BCurrentSource.PCS.state,wPP4BCurrentSource.PCS.state,$PRE.wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.elecSystem.state,wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.elecSystem.state,$PRE.wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.state,wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.state,$whenCondition4,$whenCondition5,$whenCondition2,$whenCondition3,wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.genSystem.absLimRateLimFirstOrderAntiWindup.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.genSystem.absLimRateLimFirstOrderAntiWindup1.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.pll.absLimRateLimFirstOrderFreeze.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.control4B.qLimiter.absLimRateLimFeedthroughFreeze.rampLimiter.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.control4B.qLimiter.absLimRateLimFeedthroughFreeze1.rampLimiter.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.control4B.pControl4B.absLimRateLimFirstOrderAntiWindup.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.control4B.pControl4B.rampLimiter.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.antiWindupIntegrator.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.antiWindupIntegrator1.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.absLimRateLimFirstOrderFreeze.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.absLimRateLimFeedthroughFreeze.rampLimiter.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.mechanical.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.mechanical.integrator1.local_reset,wPP4BCurrentSource.wT4BCurrentSource.mechanical.pI.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.protectionMeasurements.rampLimiter.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.controlMeasurements.rampLimiter.integrator.local_reset,wPP4BCurrentSource.wPPControl.pControl.antiWindupIntegrator.integrator.local_reset,wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.rampLimiter.integrator.local_reset,wPP4BCurrentSource.wPPControl.pControl.rampLimiter.integrator.local_reset,wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.rampLimiter.integrator.local_reset,wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFirstOrderFreeze.integrator.local_reset,wPP4BCurrentSource.wPPControl.qControl.antiWindupIntegrator.integrator.local_reset,wPP4BCurrentSource.wPPControl.measurements.rampLimiter.integrator.local_reset,wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.switchOffSignal1,wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.switchOffSignal2,wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.switchOffSignal3,line.switchOffSignal1,line.switchOffSignal2,line1.switchOffSignal1,line1.switchOffSignal2,line2A.switchOffSignal1,line2A.switchOffSignal2,line2B.switchOffSignal1,line2B.switchOffSignal2,line3.switchOffSignal1,line3.switchOffSignal2,transformer.switchOffSignal1,transformer.switchOffSignal2,transformer1.switchOffSignal1,transformer1.switchOffSignal2,$PRE.line.running,$PRE.line1.running,$PRE.line2A.running,$PRE.line2B.running,$PRE.line3.running,$PRE.transformer.running,$PRE.transformer1.running,$PRE.wPP4BCurrentSource.PCS.running,$PRE.wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.running,$PRE.wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.elecSystem.running,$PRE.wPP4BCurrentSource.wT4BCurrentSource.pll.fixedBooleanDelay1.y,$PRE.wPP4BCurrentSource.wT4BCurrentSource.pll.fixedBooleanDelay.y,$PRE.wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay.y,$PRE.wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay1.y,$PRE.wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay.y,$PRE.wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay1.y,$PRE.nodeFault.nodeFault,$PRE.nodeFault1.nodeFault,wPP4BCurrentSource.wT4BCurrentSource.pll.fixedBooleanDelay1.Y0,wPP4BCurrentSource.wT4BCurrentSource.pll.fixedBooleanDelay.Y0,wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay.Y0,wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay1.Y0,wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay.Y0,wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay1.Y0,$PRE.omegaRefPu.count,$PRE.omegaRefPu.T_start,$PRE.wPP4BCurrentSource.wT4BCurrentSource.gridProtection.pre1.u,$PRE.wPP4BCurrentSource.wT4BCurrentSource.gridProtection.timer3.entryTime,$PRE.wPP4BCurrentSource.wT4BCurrentSource.gridProtection.timer2.entryTime,$PRE.wPP4BCurrentSource.wT4BCurrentSource.gridProtection.timer1.entryTime,$PRE.wPP4BCurrentSource.wT4BCurrentSource.gridProtection.timer.entryTime,$PRE.wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.delayFlag.timer.entryTime,wPP4BCurrentSource.wT4BCurrentSource.control4B.currentLimiter.product1.u[2],omegaRefPu.count,omegaRefPu.T_start,nodeFault1.nodeFault,nodeFault.nodeFault,wPP4BCurrentSource.wPPControl.qControl.greaterThreshold.y,wPP4BCurrentSource.wPPControl.qControl.fWPFrt,wPP4BCurrentSource.wPPControl.qControl.or2.y,wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay1.y,wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay.y,wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.lessThreshold.y,wPP4BCurrentSource.wPPControl.qControl.absLimRateLimFeedthroughFreezeLimDetection.greaterThreshold.y,wPP4BCurrentSource.wPPControl.qControl.lessThreshold.y,wPP4BCurrentSource.wPPControl.pControl.or1.y,wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay1.y,wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.fixedBooleanDelay.y,wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.lessThreshold.y,wPP4BCurrentSource.wPPControl.pControl.absLimRateLimFeedthroughFreezeLimDetection.greaterThreshold.y,wPP4BCurrentSource.wT4BCurrentSource.gridProtection.pre1.u,wPP4BCurrentSource.wT4BCurrentSource.gridProtection.or1.u[5],wPP4BCurrentSource.wT4BCurrentSource.gridProtection.or1.u[4],wPP4BCurrentSource.wT4BCurrentSource.gridProtection.or1.u[3],wPP4BCurrentSource.wT4BCurrentSource.gridProtection.or1.u[2],wPP4BCurrentSource.wT4BCurrentSource.gridProtection.or1.u[1],wPP4BCurrentSource.wT4BCurrentSource.gridProtection.timer3.entryTime,wPP4BCurrentSource.wT4BCurrentSource.gridProtection.timer2.entryTime,wPP4BCurrentSource.wT4BCurrentSource.gridProtection.timer1.entryTime,wPP4BCurrentSource.wT4BCurrentSource.gridProtection.lessEqual3.y,wPP4BCurrentSource.wT4BCurrentSource.gridProtection.lessEqual2.y,wPP4BCurrentSource.wT4BCurrentSource.gridProtection.lessEqual1.y,wPP4BCurrentSource.wT4BCurrentSource.gridProtection.lessEqual.y,wPP4BCurrentSource.wT4BCurrentSource.gridProtection.timer.entryTime,wPP4BCurrentSource.wT4BCurrentSource.control4B.currentLimiter.greater.y,wPP4BCurrentSource.wT4BCurrentSource.control4B.currentLimiter.product1.y,wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.greaterThreshold.y,wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.booleanToInteger.y,wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.fFrt,wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.greaterEqualThreshold.y,wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.delayFlag.booleanToInteger.y,wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.delayFlag.switch1.y,wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.delayFlag.less1.y,wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.delayFlag.timer.entryTime,wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.delayFlag.fO,wPP4BCurrentSource.wT4BCurrentSource.control4B.qControl.delayFlag.fI,wPP4BCurrentSource.wT4BCurrentSource.control4B.pControl4B.less.y,wPP4BCurrentSource.wT4BCurrentSource.control4B.pControl4B.and1.y,wPP4BCurrentSource.wT4BCurrentSource.control4B.qLimiter.integerToBoolean.y,wPP4BCurrentSource.wT4BCurrentSource.pll.fixedBooleanDelay.y,wPP4BCurrentSource.wT4BCurrentSource.pll.fixedBooleanDelay1.y,wPP4BCurrentSource.wT4BCurrentSource.pll.lessThreshold1.y,wPP4BCurrentSource.wT4BCurrentSource.pll.lessThreshold.y,wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.elecSystem.running,wPP4BCurrentSource.wT4BCurrentSource.wT4Injector.running,wPP4BCurrentSource.PCS.running,transformer1.running,transformer.running,line3.running,line2B.running,line2A.running,line1.running,line.running,$whenCondition1,$whenCondition7,$whenCondition6,$whenCondition9,$whenCondition8,$whenCondition11,$whenCondition10,$whenCondition13,$whenCondition12,$whenCondition14,$whenCondition15,$whenCondition16,$whenCondition17,$whenCondition18,$whenCondition20,$whenCondition19,$whenCondition22,$whenCondition21,$whenCondition23,$whenCondition25,$whenCondition24,$whenCondition26,$whenCondition28,$whenCondition27,$whenCondition29,$whenCondition31,$whenCondition30,$whenCondition32,$whenCondition34,$whenCondition33,$whenCondition35,$whenCondition37,$whenCondition36,$whenCondition38,$whenCondition40,$whenCondition39,$whenCondition41,$whenCondition43,$whenCondition42,$whenCondition44,$whenCondition46,$whenCondition45,$whenCondition47,$whenCondition49,$whenCondition48,$whenCondition50,$whenCondition52,$whenCondition51,$whenCondition54,$whenCondition53,$whenCondition56,$whenCondition55) * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for initialization (1196): * Single equations (assignments): 1186 * Array equations: 0 * Algorithm blocks: 2 * Record equations: 0 * When equations: 0 * If-equations: 0 * Equation systems (not torn): 0 * Torn equation systems: 8 * Mixed (continuous/discrete) equation systems: 0 Notification: Torn system details for strict tearing set: * Linear torn systems (#iteration vars, #inner vars, density): 7 systems {(1,1,100.0%), (1,1,100.0%), (1,1,100.0%), (1,1,100.0%), (1,1,100.0%), (1,1,100.0%), (1,1,100.0%)} * Non-linear torn systems (#iteration vars, #inner vars): 1 system {(35,46)} Notification: Performance of prepare postOptimizeDAE: time 0.002887/0.7691, allocations: 1.268 MB / 0.6761 GB, free: 3.727 MB / 0.573 GB Notification: Performance of postOpt lateInlineFunction (simulation): time 0.002925/0.772, allocations: 0.9205 MB / 0.677 GB, free: 2.809 MB / 0.573 GB Notification: Performance of postOpt wrapFunctionCalls (simulation): time 0.1827/0.9547, allocations: 4.011 MB / 0.6809 GB, free: 158.6 MB / 0.573 GB Notification: Performance of postOpt simplifysemiLinear (simulation): time 0.0001325/0.9548, allocations: 34.12 kB / 0.681 GB, free: 158.6 MB / 0.573 GB Notification: Performance of postOpt simplifyComplexFunction (simulation): time 9.889e-06/0.9548, allocations: 6.094 kB / 0.681 GB, free: 158.6 MB / 0.573 GB Notification: Performance of postOpt removeConstants (simulation): time 0.003017/0.9578, allocations: 1.236 MB / 0.6822 GB, free: 158.6 MB / 0.573 GB Notification: Performance of postOpt simplifyTimeIndepFuncCalls (simulation): time 0.00302/0.9608, allocations: 163.6 kB / 0.6823 GB, free: 158.6 MB / 0.573 GB Notification: Performance of postOpt simplifyAllExpressions (simulation): time 0.005053/0.9659, allocations: 411.2 kB / 0.6827 GB, free: 158.6 MB / 0.573 GB Notification: Performance of postOpt findZeroCrossings (simulation): time 0.001751/0.9676, allocations: 0.5229 MB / 0.6832 GB, free: 158.6 MB / 0.573 GB Notification: Performance of postOpt createDAEmodeBDAE (simulation): time 0.008867/0.9765, allocations: 3.916 MB / 0.6871 GB, free: 157.9 MB / 0.573 GB Notification: Performance of postOpt symbolicJacobianDAE (simulation): time 0.009057/0.9856, allocations: 5.31 MB / 0.6922 GB, free: 156.8 MB / 0.573 GB Notification: Performance of postOpt setEvaluationStage (simulation): time 0.002333/0.9879, allocations: 1.448 MB / 0.6937 GB, free: 156.8 MB / 0.573 GB Notification: Performance of sorting global known variables: time 0.009172/0.9971, allocations: 4.947 MB / 0.6985 GB, free: 156.4 MB / 0.573 GB Notification: Performance of Backend: time 6.01e-07/0.9971, allocations: 3.828 kB / 0.6985 GB, free: 156.4 MB / 0.573 GB Notification: Performance of simCode: created initialization part: time 0.0266/1.024, allocations: 12.01 MB / 0.7102 GB, free: 153.8 MB / 0.573 GB Notification: Performance of SimCode: time 0.0349/1.059, allocations: 22.18 MB / 0.7319 GB, free: 141.1 MB / 0.573 GB Notification: Performance of Templates: time 0.4344/1.493, allocations: 284.8 MB / 1.01 GB, free: 106.7 MB / 0.6043 GB " [Timeout remaining time 659] make -j1 -f Dynawo_dev_Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB.makefile [Timeout 660] (rm -f Dynawo_dev_Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB.pipe ; mkfifo Dynawo_dev_Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB.pipe ; head -c 1048576 < Dynawo_dev_Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB.pipe >> ../files/Dynawo_dev_Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB.sim & ./Dynawo_dev_Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB -initialStepSize=0.001 -lv=LOG_STATS -nls=kinsol -s=ida -nlsLS=klu -maxIntegrationOrder=2 -maxStepSize=10 -abortSlowSimulation -alarm=240 -s gbode -gbm=radauIIA3 -emit_protected -lv LOG_STATS > Dynawo_dev_Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB.pipe 2>&1) [Timeout 240] diffSimulationResults("Dynawo_dev_Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB_res.mat","/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/ReferenceFiles/Dynawo/dynawo/sources/Models/Modelica/Dynawo/Examples/references/Dynawo.Examples.Wind.IEC.Neplan.WPP4BCurrentSource2020FOCB_res.csv","",relTol=0.003,relTolDiffMinMax=0.003,rangeDelta=0.001) [Timeout 660] "" [Timeout remaining time 660] Reference file matches [Calling sys.exit(0), Time elapsed: 8.855371932964772]