Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr Modelica_trunk_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.InductionMachines.ComparisonPolyphase.IMC_DOL_Polyphase.conf.json loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices trunk/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex trunk/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica trunk/package.mo", uses=false) Using package Modelica with version trunk (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica trunk/package.mo) Using package Complex with version trunk (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex trunk/package.mo) Using package ModelicaServices with version trunk (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices trunk/package.mo) Running command: "" <> buildModelFMU(Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.InductionMachines.ComparisonPolyphase.IMC_DOL_Polyphase,fileNamePrefix="Modelica_trunk_Modelica_Magnetic_FundamentalWave_Examples_BasicMachines_InductionMachines_ComparisonPolyphase_IMC_DOL_Polyphase",fmuType="me",version="2.0",platforms={"static"}) "" <> buildModelFMU(Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.InductionMachines.ComparisonPolyphase.IMC_DOL_Polyphase,fileNamePrefix="Modelica_trunk_Modelica_Magnetic_FundamentalWave_Examples_BasicMachines_InductionMachines_ComparisonPolyphase_IMC_DOL_Polyphase",fmuType="me",version="2.0",platforms={"static"}) Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices trunk/package.mo): time 0.001554/0.001554, allocations: 113.6 kB / 17.78 MB, free: 5.277 MB / 14.72 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex trunk/package.mo): time 0.001579/0.001579, allocations: 204.7 kB / 18.74 MB, free: 4.332 MB / 14.72 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica trunk/package.mo): time 1.437/1.437, allocations: 227.4 MB / 247 MB, free: 10.43 MB / 206.1 MB Notification: Performance of FrontEnd - loaded program: time 0.001844/0.001844, allocations: 59.89 kB / 358.3 MB, free: 13.3 MB / 302.1 MB Notification: Performance of FrontEnd - Absyn->SCode: time 0.2859/0.2877, allocations: 50.55 MB / 408.9 MB, free: 1.426 MB / 318.1 MB Notification: Performance of NFInst.instantiate(Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.InductionMachines.ComparisonPolyphase.IMC_DOL_Polyphase): time 0.03019/0.318, allocations: 25.37 MB / 434.2 MB, free: 7.938 MB / 350.1 MB Notification: Performance of NFInst.instExpressions: time 0.01531/0.3333, allocations: 6.947 MB / 441.2 MB, free: 0.9688 MB / 350.1 MB Notification: Performance of NFInst.updateImplicitVariability: time 0.00525/0.3386, allocations: 167.3 kB / 441.4 MB, free: 0.8047 MB / 350.1 MB Notification: Performance of NFTyping.typeComponents: time 0.005782/0.3444, allocations: 1.653 MB / 443 MB, free: 15.14 MB / 366.1 MB Notification: Performance of NFTyping.typeBindings: time 0.00883/0.3533, allocations: 2.259 MB / 445.3 MB, free: 12.87 MB / 366.1 MB Notification: Performance of NFTyping.typeClassSections: time 0.004696/0.3581, allocations: 1.485 MB / 446.8 MB, free: 11.39 MB / 366.1 MB Notification: Performance of NFFlatten.flatten: time 0.01438/0.3724, allocations: 10.08 MB / 456.8 MB, free: 1.273 MB / 366.1 MB Notification: Performance of NFFlatten.resolveConnections: time 0.01245/0.3849, allocations: 9.04 MB / 465.9 MB, free: 8.121 MB / 382.1 MB Notification: Performance of NFEvalConstants.evaluate: time 0.007923/0.3929, allocations: 4.72 MB / 470.6 MB, free: 3.387 MB / 382.1 MB Notification: Performance of NFSimplifyModel.simplify: time 0.01031/0.4032, allocations: 5.656 MB / 476.2 MB, free: 13.71 MB / 398.1 MB Notification: Performance of NFPackage.collectConstants: time 0.003844/0.4071, allocations: 1.305 MB / 477.6 MB, free: 12.41 MB / 398.1 MB Notification: Performance of NFFlatten.collectFunctions: time 0.005008/0.4121, allocations: 1.527 MB / 479.1 MB, free: 10.88 MB / 398.1 MB Notification: Performance of NFScalarize.scalarize: time 0.004566/0.4167, allocations: 2.961 MB / 482 MB, free: 7.91 MB / 398.1 MB Notification: Performance of NFVerifyModel.verify: time 0.01209/0.4288, allocations: 5.481 MB / 487.5 MB, free: 2.406 MB / 398.1 MB Notification: Performance of NFConvertDAE.convert: time 0.02457/0.4534, allocations: 17.24 MB / 0.4929 GB, free: 1.113 MB / 414.1 MB Notification: Performance of FrontEnd - DAE generated: time 6.342e-06/0.4535, allocations: 0 / 0.4929 GB, free: 1.113 MB / 414.1 MB Notification: Performance of FrontEnd: time 2.154e-06/0.4535, allocations: 0 / 0.4929 GB, free: 1.113 MB / 414.1 MB Notification: Performance of Transformations before backend: time 0.0005305/0.454, allocations: 4 kB / 0.4929 GB, free: 1.109 MB / 414.1 MB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 2135 * Number of variables: 2135 Notification: Performance of Generate backend data structure: time 0.034/0.488, allocations: 10.97 MB / 0.5036 GB, free: 6.027 MB / 430.1 MB Notification: Performance of prepare preOptimizeDAE: time 5.947e-05/0.4881, allocations: 12.03 kB / 0.5037 GB, free: 6.016 MB / 430.1 MB Notification: Performance of preOpt introduceOutputAliases (simulation): time 0.004534/0.4927, allocations: 1.103 MB / 0.5047 GB, free: 4.902 MB / 430.1 MB Notification: Performance of preOpt normalInlineFunction (simulation): time 0.01358/0.5063, allocations: 2.118 MB / 0.5068 GB, free: 2.777 MB / 430.1 MB Notification: Performance of preOpt evaluateParameters (simulation): time 0.01361/0.5199, allocations: 6.055 MB / 0.5127 GB, free: 12.66 MB / 446.1 MB Notification: Performance of preOpt simplifyIfEquations (simulation): time 0.0007127/0.5207, allocations: 0.6017 MB / 0.5133 GB, free: 12.05 MB / 446.1 MB Notification: Performance of preOpt expandDerOperator (simulation): time 0.002915/0.5236, allocations: 0.7889 MB / 0.5141 GB, free: 11.26 MB / 446.1 MB Notification: Performance of preOpt clockPartitioning (simulation): time 0.02747/0.5511, allocations: 11.34 MB / 0.5251 GB, free: 15.8 MB / 462.1 MB Notification: Performance of preOpt findStateOrder (simulation): time 0.0001977/0.5513, allocations: 11.89 kB / 0.5252 GB, free: 15.79 MB / 462.1 MB Notification: Performance of preOpt replaceEdgeChange (simulation): time 0.001199/0.5525, allocations: 331.9 kB / 0.5255 GB, free: 15.46 MB / 462.1 MB Notification: Performance of preOpt inlineArrayEqn (simulation): time 0.0003705/0.5529, allocations: 380.3 kB / 0.5258 GB, free: 15.09 MB / 462.1 MB Notification: Performance of preOpt removeEqualRHS (simulation): time 0.02146/0.5744, allocations: 9.917 MB / 0.5355 GB, free: 5.152 MB / 462.1 MB Notification: Performance of preOpt removeSimpleEquations (simulation): time 0.4685/1.043, allocations: 34.34 MB / 0.5691 GB, free: 94.73 MB / 462.1 MB Notification: Performance of preOpt comSubExp (simulation): time 0.01637/1.059, allocations: 21.1 MB / 0.5897 GB, free: 74.55 MB / 462.1 MB Notification: Performance of preOpt resolveLoops (simulation): time 0.007415/1.067, allocations: 4.426 MB / 0.594 GB, free: 70.14 MB / 462.1 MB Notification: Performance of preOpt evalFunc (simulation): time 0.01796/1.085, allocations: 10.66 MB / 0.6044 GB, free: 59.46 MB / 462.1 MB Notification: Performance of preOpt encapsulateWhenConditions (simulation): time 5.404e-05/1.085, allocations: 69.08 kB / 0.6045 GB, free: 59.39 MB / 462.1 MB Notification: Performance of pre-optimization done (n=319): time 6.482e-06/1.085, allocations: 0 / 0.6045 GB, free: 59.39 MB / 462.1 MB Notification: Performance of matching and sorting (n=325): time 0.03229/1.117, allocations: 15.91 MB / 0.62 GB, free: 43.45 MB / 462.1 MB Notification: Performance of inlineWhenForInitialization (initialization): time 3.927e-05/1.117, allocations: 85.91 kB / 0.6201 GB, free: 43.36 MB / 462.1 MB Notification: Performance of selectInitializationVariablesDAE (initialization): time 0.007902/1.125, allocations: 4.592 MB / 0.6246 GB, free: 38.78 MB / 462.1 MB Notification: Performance of collectPreVariables (initialization): time 0.0005732/1.126, allocations: 81.7 kB / 0.6246 GB, free: 38.7 MB / 462.1 MB Notification: Performance of collectInitialEqns (initialization): time 0.002205/1.128, allocations: 3.704 MB / 0.6283 GB, free: 35.47 MB / 462.1 MB Notification: Performance of collectInitialBindings (initialization): time 0.001173/1.129, allocations: 1.147 MB / 0.6294 GB, free: 34.38 MB / 462.1 MB Notification: Performance of simplifyInitialFunctions (initialization): time 0.001942/1.131, allocations: 0.7124 MB / 0.6301 GB, free: 33.66 MB / 462.1 MB Notification: Performance of setup shared object (initialization): time 5.042e-05/1.131, allocations: 305.1 kB / 0.6304 GB, free: 33.36 MB / 462.1 MB Notification: Performance of preBalanceInitialSystem (initialization): time 0.00277/1.134, allocations: 1.885 MB / 0.6322 GB, free: 31.47 MB / 462.1 MB Notification: Performance of partitionIndependentBlocks (initialization): time 0.003022/1.137, allocations: 2.987 MB / 0.6351 GB, free: 28.03 MB / 462.1 MB Notification: Performance of analyzeInitialSystem (initialization): time 0.00553/1.143, allocations: 5.107 MB / 0.6401 GB, free: 22.43 MB / 462.1 MB Notification: Performance of solveInitialSystemEqSystem (initialization): time 1.789e-05/1.143, allocations: 15.94 kB / 0.6401 GB, free: 22.42 MB / 462.1 MB Notification: Performance of matching and sorting (n=502) (initialization): time 0.009233/1.152, allocations: 6.446 MB / 0.6464 GB, free: 15.89 MB / 462.1 MB Notification: Performance of prepare postOptimizeDAE: time 3.892e-05/1.152, allocations: 20 kB / 0.6464 GB, free: 15.87 MB / 462.1 MB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 4.381e-05/1.152, allocations: 36.09 kB / 0.6465 GB, free: 15.84 MB / 462.1 MB Notification: Performance of postOpt tearingSystem (initialization): time 0.0023/1.154, allocations: 1.033 MB / 0.6475 GB, free: 14.78 MB / 462.1 MB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.002949/1.157, allocations: 0.8151 MB / 0.6483 GB, free: 13.96 MB / 462.1 MB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.01566/1.173, allocations: 17.9 MB / 0.6658 GB, free: 11.1 MB / 478.1 MB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.003816/1.177, allocations: 175.8 kB / 0.6659 GB, free: 10.93 MB / 478.1 MB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.0005003/1.177, allocations: 172.1 kB / 0.6661 GB, free: 10.76 MB / 478.1 MB Notification: Model statistics after passing the back-end for initialization: * Number of independent subsystems: 150 * Number of states: 0 () * Number of discrete variables: 8 (idealCloser3.control[3],idealCloser3.control[2],idealCloser3.control[1],idealCloserM.control[5],idealCloserM.control[4],idealCloserM.control[3],idealCloserM.control[2],idealCloserM.control[1]) * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for initialization (434): * Single equations (assignments): 425 * Array equations: 0 * Algorithm blocks: 0 * Record equations: 0 * When equations: 0 * If-equations: 0 * Equation systems (not torn): 2 * Torn equation systems: 7 * Mixed (continuous/discrete) equation systems: 0 Notification: Equation system details (not torn): * Constant Jacobian (size): 0 systems * Linear Jacobian (size,density): 2 systems {(2,100.0%), (2,100.0%)} * Non-linear Jacobian (size): 0 systems * Without analytic Jacobian (size): 0 systems Notification: Torn system details for strict tearing set: * Linear torn systems (#iteration vars, #inner vars, density): 7 systems {(1,8,100.0%), (1,1,100.0%), (3,23,100.0%), (1,1,100.0%), (1,2,100.0%), (1,2,100.0%), (4,24,93.8%)} * Non-linear torn systems (#iteration vars, #inner vars): 0 systems Notification: Performance of prepare postOptimizeDAE: time 0.005239/1.182, allocations: 2.605 MB / 0.6686 GB, free: 8.141 MB / 478.1 MB Notification: Performance of postOpt lateInlineFunction (simulation): time 0.001255/1.184, allocations: 0.4931 MB / 0.6691 GB, free: 7.645 MB / 478.1 MB Notification: Performance of postOpt wrapFunctionCalls (simulation): time 0.01137/1.195, allocations: 5.988 MB / 0.675 GB, free: 1.539 MB / 478.1 MB Notification: Performance of postOpt inlineArrayEqn (simulation): time 3.113e-05/1.195, allocations: 35.94 kB / 0.675 GB, free: 1.504 MB / 478.1 MB Notification: Performance of postOpt constantLinearSystem (simulation): time 4.423e-05/1.195, allocations: 24 kB / 0.675 GB, free: 1.48 MB / 478.1 MB Notification: Performance of postOpt simplifysemiLinear (simulation): time 4.033e-05/1.195, allocations: 19.88 kB / 0.675 GB, free: 1.461 MB / 478.1 MB Notification: Performance of postOpt removeSimpleEquations (simulation): time 0.02506/1.22, allocations: 13.21 MB / 0.6879 GB, free: 4.051 MB / 494.1 MB Notification: Performance of postOpt simplifyComplexFunction (simulation): time 1.693e-05/1.22, allocations: 7.938 kB / 0.6879 GB, free: 4.043 MB / 494.1 MB Notification: Performance of postOpt solveSimpleEquations (simulation): time 0.001782/1.222, allocations: 371.5 kB / 0.6883 GB, free: 3.68 MB / 494.1 MB Notification: Performance of postOpt tearingSystem (simulation): time 0.004572/1.227, allocations: 1.619 MB / 0.6899 GB, free: 2.035 MB / 494.1 MB Notification: Performance of postOpt inputDerivativesUsed (simulation): time 0.0004722/1.227, allocations: 99.95 kB / 0.69 GB, free: 1.938 MB / 494.1 MB Notification: Performance of postOpt calculateStrongComponentJacobians (simulation): time 0.03455/1.262, allocations: 27.9 MB / 0.7172 GB, free: 4.781 MB / 0.5138 GB Notification: Performance of postOpt calculateStateSetsJacobians (simulation): time 9.989e-06/1.262, allocations: 11.88 kB / 0.7172 GB, free: 4.77 MB / 0.5138 GB Notification: Performance of postOpt symbolicJacobian (simulation): time 0.01596/1.278, allocations: 8.594 MB / 0.7256 GB, free: 11.97 MB / 0.5294 GB Notification: Performance of postOpt removeConstants (simulation): time 0.002707/1.281, allocations: 1.005 MB / 0.7266 GB, free: 10.94 MB / 0.5294 GB Notification: Performance of postOpt simplifyTimeIndepFuncCalls (simulation): time 0.0009075/1.282, allocations: 79.98 kB / 0.7267 GB, free: 10.86 MB / 0.5294 GB Notification: Performance of postOpt simplifyAllExpressions (simulation): time 0.002213/1.284, allocations: 159.9 kB / 0.7268 GB, free: 10.71 MB / 0.5294 GB Notification: Performance of postOpt findZeroCrossings (simulation): time 0.000938/1.285, allocations: 329.8 kB / 0.7272 GB, free: 10.38 MB / 0.5294 GB Notification: Performance of postOpt collapseArrayExpressions (simulation): time 0.0002336/1.285, allocations: 95.97 kB / 0.7272 GB, free: 10.29 MB / 0.5294 GB Notification: Performance of sorting global known variables: time 0.005488/1.29, allocations: 3.136 MB / 0.7303 GB, free: 7.156 MB / 0.5294 GB Notification: Performance of sort global known variables: time 1.4e-07/1.29, allocations: 0 / 0.7303 GB, free: 7.156 MB / 0.5294 GB Notification: Performance of remove unused functions: time 0.006063/1.297, allocations: 1.473 MB / 0.7317 GB, free: 5.684 MB / 0.5294 GB Notification: Model statistics after passing the back-end for simulation: * Number of independent subsystems: 17 * Number of states: 12 (aimcM.inertiaRotor.w,aimcM.stator.core.Phi.re,aimcM.stator.core.Phi.im,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].Phi.re,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].Phi.im,quadraticLoadTorqueM.phi,aimc3.inertiaRotor.w,aimc3.stator.core.Phi.re,aimc3.stator.core.Phi.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].Phi.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].Phi.im,quadraticLoadTorque3.phi) * Number of discrete variables: 8 (idealCloserM.control[1],idealCloserM.control[2],idealCloserM.control[3],idealCloserM.control[4],idealCloserM.control[5],idealCloser3.control[1],idealCloser3.control[2],idealCloser3.control[3]) * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for simulation (194): * Single equations (assignments): 185 * Array equations: 0 * Algorithm blocks: 0 * Record equations: 0 * When equations: 0 * If-equations: 0 * Equation systems (not torn): 0 * Torn equation systems: 9 * Mixed (continuous/discrete) equation systems: 0 Notification: Torn system details for strict tearing set: * Linear torn systems (#iteration vars, #inner vars, density): 9 systems {(1,1,100.0%), (1,8,100.0%), (1,8,100.0%), (1,13,100.0%), (2,12,100.0%), (1,1,100.0%), (6,46,88.9%), (3,23,100.0%), (2,12,100.0%)} * Non-linear torn systems (#iteration vars, #inner vars): 0 systems Notification: Performance of Backend phase and start with SimCode phase: time 0.01631/1.313, allocations: 9.303 MB / 0.7408 GB, free: 12.16 MB / 0.5451 GB Notification: Performance of simCode: created initialization part: time 0.01103/1.324, allocations: 5.874 MB / 0.7466 GB, free: 6.137 MB / 0.5451 GB Notification: Performance of simCode: created event and clocks part: time 1.12e-05/1.324, allocations: 3.938 kB / 0.7466 GB, free: 6.133 MB / 0.5451 GB Notification: Performance of simCode: created simulation system equations: time 0.00833/1.332, allocations: 4.235 MB / 0.7507 GB, free: 1.777 MB / 0.5451 GB Notification: Performance of simCode: created of all other equations (e.g. parameter, nominal, assert, etc): time 0.008703/1.341, allocations: 1.305 MB / 0.752 GB, free: 0.4922 MB / 0.5451 GB Notification: Performance of simCode: created linear, non-linear and system jacobian parts: time 0.3306/1.672, allocations: 51.74 MB / 0.8025 GB, free: 165.4 MB / 0.5451 GB Notification: Performance of simCode: some other stuff during SimCode phase: time 0.00547/1.677, allocations: 5.154 MB / 0.8075 GB, free: 160.2 MB / 0.5451 GB Notification: Performance of simCode: alias equations: time 0.003262/1.681, allocations: 1.027 MB / 0.8085 GB, free: 159.1 MB / 0.5451 GB Notification: Performance of simCode: all other stuff during SimCode phase: time 0.003484/1.684, allocations: 3.092 MB / 0.8116 GB, free: 156 MB / 0.5451 GB Notification: Performance of SimCode: time 8.72e-07/1.684, allocations: 4 kB / 0.8116 GB, free: 156 MB / 0.5451 GB Notification: Performance of buildModelFMU: Generate the FMI files: time 0.2325/1.916, allocations: 131.6 MB / 0.9401 GB, free: 25.35 MB / 0.5451 GB Notification: Performance of buildModelFMU: Generate platform static: time 21.42/23.34, allocations: 16.45 kB / 0.9401 GB, free: 25.33 MB / 0.5451 GB (rm -f Modelica_trunk_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.InductionMachines.ComparisonPolyphase.IMC_DOL_Polyphase.pipe ; mkfifo Modelica_trunk_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.InductionMachines.ComparisonPolyphase.IMC_DOL_Polyphase.pipe ; head -c 1048576 < Modelica_trunk_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.InductionMachines.ComparisonPolyphase.IMC_DOL_Polyphase.pipe >> ../files/Modelica_trunk_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.InductionMachines.ComparisonPolyphase.IMC_DOL_Polyphase.sim & /home/hudson/saved_omc/OMSimulator/install/bin/OMSimulator -r=Modelica_trunk_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.InductionMachines.ComparisonPolyphase.IMC_DOL_Polyphase_res.mat --tempDir=temp_Modelica_trunk_Modelica_Magnetic_FundamentalWave_Examples_BasicMachines_InductionMachines_ComparisonPolyphase_IMC_DOL_Polyphase_fmu --startTime=0 --stopTime=1.5 --timeout=50 --tolerance=1e-06 Modelica_trunk_Modelica_Magnetic_FundamentalWave_Examples_BasicMachines_InductionMachines_ComparisonPolyphase_IMC_DOL_Polyphase.fmu > Modelica_trunk_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.InductionMachines.ComparisonPolyphase.IMC_DOL_Polyphase.pipe 2>&1) diffSimulationResults("Modelica_trunk_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.InductionMachines.ComparisonPolyphase.IMC_DOL_Polyphase_res.mat","/var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/Reference-modelica.org/ReferenceResults/MAP-LIB_ReferenceResults/v4.1.0/Modelica/Magnetic/FundamentalWave/Examples/BasicMachines/InductionMachines/ComparisonPolyphase/IMC_DOL_Polyphase/IMC_DOL_Polyphase.csv","/var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/files/Modelica_trunk_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.InductionMachines.ComparisonPolyphase.IMC_DOL_Polyphase.diff",relTol=0.003,relTolDiffMinMax=0.003,rangeDelta=0.001) "" Variables in the reference:time,aimc3.is[1],aimc3.is[2],aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].Phi.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].Phi.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].Phi.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].Phi.im,aimcM.is[1],aimcM.is[2],aimcM.is[3],aimcM.is[4],aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].Phi.re,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].Phi.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].Phi.im,loadInertia3.phi,loadInertia3.w,loadInertiaM.phi,loadInertiaM.w Variables in the result:J_Load,T_Load,VsNominal,aimc3.Jr,aimc3.Js,aimc3.L0.d,aimc3.L0.q,aimc3.Lm,aimc3.Lrsigma,aimc3.Lssigma,aimc3.Lszero,aimc3.Rr,aimc3.Rs,aimc3.TrOperational,aimc3.TrRef,aimc3.TsOperational,aimc3.TsRef,aimc3.airGap.L0.d,aimc3.airGap.L0.q,aimc3.airGap.Phi_rr.im,aimc3.airGap.Phi_rr.re,aimc3.airGap.Phi_sr.im,aimc3.airGap.Phi_sr.re,aimc3.airGap.Phi_ss.im,aimc3.airGap.Phi_ss.re,aimc3.airGap.R_m.d,aimc3.airGap.R_m.q,aimc3.airGap.V_mrr.im,aimc3.airGap.V_mrr.re,aimc3.airGap.V_msr.im,aimc3.airGap.V_msr.re,aimc3.airGap.V_mss.im,aimc3.airGap.V_mss.re,aimc3.airGap.flange_a.phi,aimc3.airGap.flange_a.tau,aimc3.airGap.gamma,aimc3.airGap.p,aimc3.airGap.port_rn.Phi.im,aimc3.airGap.port_rn.Phi.re,aimc3.airGap.port_rn.V_m.im,aimc3.airGap.port_rn.V_m.re,aimc3.airGap.port_rp.Phi.im,aimc3.airGap.port_rp.Phi.re,aimc3.airGap.port_rp.V_m.im,aimc3.airGap.port_rp.V_m.re,aimc3.airGap.port_sn.Phi.im,aimc3.airGap.port_sn.Phi.re,aimc3.airGap.port_sn.V_m.im,aimc3.airGap.port_sn.V_m.re,aimc3.airGap.port_sp.Phi.im,aimc3.airGap.port_sp.Phi.re,aimc3.airGap.port_sp.V_m.im,aimc3.airGap.port_sp.V_m.re,aimc3.airGap.rotator.im,aimc3.airGap.rotator.re,aimc3.airGap.support.phi,aimc3.airGap.support.tau,aimc3.airGap.tauElectrical,aimc3.alpha20r,aimc3.alpha20s,aimc3.effectiveStatorTurns,aimc3.fixed.flange.phi,aimc3.fixed.flange.tau,aimc3.fixed.phi0,aimc3.flange.phi,aimc3.flange.tau,aimc3.friction.flange.phi,aimc3.friction.flange.tau,aimc3.friction.frictionParameters.PRef,aimc3.friction.frictionParameters.linear,aimc3.friction.frictionParameters.power_w,aimc3.friction.frictionParameters.tauLinear,aimc3.friction.frictionParameters.tauRef,aimc3.friction.frictionParameters.wLinear,aimc3.friction.frictionParameters.wRef,aimc3.friction.heatPort.Q_flow,aimc3.friction.heatPort.T,aimc3.friction.lossPower,aimc3.friction.phi,aimc3.friction.support.phi,aimc3.friction.support.tau,aimc3.friction.tau,aimc3.friction.useHeatPort,aimc3.friction.w,aimc3.frictionParameters.PRef,aimc3.frictionParameters.linear,aimc3.frictionParameters.power_w,aimc3.frictionParameters.tauLinear,aimc3.frictionParameters.tauRef,aimc3.frictionParameters.wLinear,aimc3.frictionParameters.wRef,aimc3.fsNominal,aimc3.groundR.port_p.Phi.im,aimc3.groundR.port_p.Phi.re,aimc3.groundR.port_p.V_m.im,aimc3.groundR.port_p.V_m.re,aimc3.groundS.port_p.Phi.im,aimc3.groundS.port_p.Phi.re,aimc3.groundS.port_p.V_m.im,aimc3.groundS.port_p.V_m.re,aimc3.inertiaRotor.J,aimc3.inertiaRotor.a,aimc3.inertiaRotor.flange_a.phi,aimc3.inertiaRotor.flange_a.tau,aimc3.inertiaRotor.flange_b.phi,aimc3.inertiaRotor.flange_b.tau,aimc3.inertiaRotor.phi,aimc3.inertiaRotor.stateSelect,aimc3.inertiaRotor.w,aimc3.inertiaStator.J,aimc3.inertiaStator.a,aimc3.inertiaStator.flange_a.phi,aimc3.inertiaStator.flange_a.tau,aimc3.inertiaStator.flange_b.phi,aimc3.inertiaStator.flange_b.tau,aimc3.inertiaStator.phi,aimc3.inertiaStator.stateSelect,aimc3.inertiaStator.w,aimc3.ir[1],aimc3.ir[2],aimc3.ir[3],aimc3.is[1],aimc3.is[2],aimc3.is[3],aimc3.m,aimc3.p,aimc3.phiMechanical,aimc3.plug_sn.m,aimc3.plug_sn.pin[1].i,aimc3.plug_sn.pin[1].v,aimc3.plug_sn.pin[2].i,aimc3.plug_sn.pin[2].v,aimc3.plug_sn.pin[3].i,aimc3.plug_sn.pin[3].v,aimc3.plug_sp.m,aimc3.plug_sp.pin[1].i,aimc3.plug_sp.pin[1].v,aimc3.plug_sp.pin[2].i,aimc3.plug_sp.pin[2].v,aimc3.plug_sp.pin[3].i,aimc3.plug_sp.pin[3].v,aimc3.powerBalance.lossPowerFriction,aimc3.powerBalance.lossPowerRotorCore,aimc3.powerBalance.lossPowerRotorWinding,aimc3.powerBalance.lossPowerStatorCore,aimc3.powerBalance.lossPowerStatorWinding,aimc3.powerBalance.lossPowerStrayLoad,aimc3.powerBalance.lossPowerTotal,aimc3.powerBalance.powerInertiaRotor,aimc3.powerBalance.powerInertiaStator,aimc3.powerBalance.powerMechanical,aimc3.powerBalance.powerStator,aimc3.ratioCommonStatorLeakage,aimc3.rotorCage.Lsigma,aimc3.rotorCage.Phi.im,aimc3.rotorCage.Phi.re,aimc3.rotorCage.RRef,aimc3.rotorCage.TOperational,aimc3.rotorCage.TRef,aimc3.rotorCage.V_m.im,aimc3.rotorCage.V_m.re,aimc3.rotorCage.abs_Phi,aimc3.rotorCage.abs_V_m,aimc3.rotorCage.alpha20,aimc3.rotorCage.alphaRef,aimc3.rotorCage.arg_Phi,aimc3.rotorCage.arg_V_m,aimc3.rotorCage.effectiveTurns,aimc3.rotorCage.electroMagneticConverter.Lsigma,aimc3.rotorCage.electroMagneticConverter.Phi.im,aimc3.rotorCage.electroMagneticConverter.Phi.re,aimc3.rotorCage.electroMagneticConverter.V_m.im,aimc3.rotorCage.electroMagneticConverter.V_m.re,aimc3.rotorCage.electroMagneticConverter.abs_Phi,aimc3.rotorCage.electroMagneticConverter.abs_V_m,aimc3.rotorCage.electroMagneticConverter.arg_Phi,aimc3.rotorCage.electroMagneticConverter.arg_V_m,aimc3.rotorCage.electroMagneticConverter.effectiveTurns[1],aimc3.rotorCage.electroMagneticConverter.effectiveTurns[2],aimc3.rotorCage.electroMagneticConverter.effectiveTurns[3],aimc3.rotorCage.electroMagneticConverter.i[1],aimc3.rotorCage.electroMagneticConverter.i[2],aimc3.rotorCage.electroMagneticConverter.i[3],aimc3.rotorCage.electroMagneticConverter.m,aimc3.rotorCage.electroMagneticConverter.orientation[1],aimc3.rotorCage.electroMagneticConverter.orientation[2],aimc3.rotorCage.electroMagneticConverter.orientation[3],aimc3.rotorCage.electroMagneticConverter.plug_n.m,aimc3.rotorCage.electroMagneticConverter.plug_n.pin[1].i,aimc3.rotorCage.electroMagneticConverter.plug_n.pin[1].v,aimc3.rotorCage.electroMagneticConverter.plug_n.pin[2].i,aimc3.rotorCage.electroMagneticConverter.plug_n.pin[2].v,aimc3.rotorCage.electroMagneticConverter.plug_n.pin[3].i,aimc3.rotorCage.electroMagneticConverter.plug_n.pin[3].v,aimc3.rotorCage.electroMagneticConverter.plug_p.m,aimc3.rotorCage.electroMagneticConverter.plug_p.pin[1].i,aimc3.rotorCage.electroMagneticConverter.plug_p.pin[1].v,aimc3.rotorCage.electroMagneticConverter.plug_p.pin[2].i,aimc3.rotorCage.electroMagneticConverter.plug_p.pin[2].v,aimc3.rotorCage.electroMagneticConverter.plug_p.pin[3].i,aimc3.rotorCage.electroMagneticConverter.plug_p.pin[3].v,aimc3.rotorCage.electroMagneticConverter.port_n.Phi.im,aimc3.rotorCage.electroMagneticConverter.port_n.Phi.re,aimc3.rotorCage.electroMagneticConverter.port_n.V_m.im,aimc3.rotorCage.electroMagneticConverter.port_n.V_m.re,aimc3.rotorCage.electroMagneticConverter.port_p.Phi.im,aimc3.rotorCage.electroMagneticConverter.port_p.Phi.re,aimc3.rotorCage.electroMagneticConverter.port_p.V_m.im,aimc3.rotorCage.electroMagneticConverter.port_p.V_m.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].N.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].N.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].Phi.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].Phi.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].V_m.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].V_m.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].abs_Phi,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].abs_V_m,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].arg_Phi,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].arg_V_m,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].effectiveTurns,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].i,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].orientation,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].pin_n.i,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].pin_n.v,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].pin_p.i,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].pin_p.v,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_n.Phi.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_n.Phi.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_n.V_m.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_n.V_m.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_p.Phi.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_p.Phi.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_p.V_m.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_p.V_m.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].v,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].N.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].N.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].Phi.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].Phi.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].V_m.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].V_m.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].abs_Phi,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].abs_V_m,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].arg_Phi,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].arg_V_m,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].effectiveTurns,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].i,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].orientation,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].pin_n.i,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].pin_n.v,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].pin_p.i,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].pin_p.v,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_n.Phi.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_n.Phi.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_n.V_m.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_n.V_m.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_p.Phi.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_p.Phi.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_p.V_m.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_p.V_m.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].v,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].N.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].N.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].Phi.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].Phi.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].V_m.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].V_m.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].abs_Phi,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].abs_V_m,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].arg_Phi,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].arg_V_m,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].effectiveTurns,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].i,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].orientation,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].pin_n.i,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].pin_n.v,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].pin_p.i,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].pin_p.v,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_n.Phi.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_n.Phi.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_n.V_m.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_n.V_m.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_p.Phi.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_p.Phi.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_p.V_m.im,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_p.V_m.re,aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].v,aimc3.rotorCage.electroMagneticConverter.useStrayPermeance,aimc3.rotorCage.electroMagneticConverter.v[1],aimc3.rotorCage.electroMagneticConverter.v[2],aimc3.rotorCage.electroMagneticConverter.v[3],aimc3.rotorCage.ground.p.i,aimc3.rotorCage.ground.p.v,aimc3.rotorCage.heatPortWinding.Q_flow,aimc3.rotorCage.heatPortWinding.T,aimc3.rotorCage.i[1],aimc3.rotorCage.i[2],aimc3.rotorCage.i[3],aimc3.rotorCage.m,aimc3.rotorCage.multiStar.m,aimc3.rotorCage.multiStar.mBasic,aimc3.rotorCage.multiStar.mSystems,aimc3.rotorCage.multiStar.plug_p.m,aimc3.rotorCage.multiStar.plug_p.pin[1].i,aimc3.rotorCage.multiStar.plug_p.pin[1].v,aimc3.rotorCage.multiStar.plug_p.pin[2].i,aimc3.rotorCage.multiStar.plug_p.pin[2].v,aimc3.rotorCage.multiStar.plug_p.pin[3].i,aimc3.rotorCage.multiStar.plug_p.pin[3].v,aimc3.rotorCage.multiStar.starpoints.m,aimc3.rotorCage.multiStar.starpoints.pin[1].i,aimc3.rotorCage.multiStar.starpoints.pin[1].v,aimc3.rotorCage.nBase,aimc3.rotorCage.port_n.Phi.im,aimc3.rotorCage.port_n.Phi.re,aimc3.rotorCage.port_n.V_m.im,aimc3.rotorCage.port_n.V_m.re,aimc3.rotorCage.port_p.Phi.im,aimc3.rotorCage.port_p.Phi.re,aimc3.rotorCage.port_p.V_m.im,aimc3.rotorCage.port_p.V_m.re,aimc3.rotorCage.resistor.R[1],aimc3.rotorCage.resistor.R[2],aimc3.rotorCage.resistor.R[3],aimc3.rotorCage.resistor.T[1],aimc3.rotorCage.resistor.T[2],aimc3.rotorCage.resistor.T[3],aimc3.rotorCage.resistor.T_ref[1],aimc3.rotorCage.resistor.T_ref[2],aimc3.rotorCage.resistor.T_ref[3],aimc3.rotorCage.resistor.alpha[1],aimc3.rotorCage.resistor.alpha[2],aimc3.rotorCage.resistor.alpha[3],aimc3.rotorCage.resistor.heatPort[1].Q_flow,aimc3.rotorCage.resistor.heatPort[1].T,aimc3.rotorCage.resistor.heatPort[2].Q_flow,aimc3.rotorCage.resistor.heatPort[2].T,aimc3.r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agneticConverter[2].Phi.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].V_m.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].V_m.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].abs_Phi,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].abs_V_m,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].arg_Phi,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].arg_V_m,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].effectiveTurns,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].i,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].orientation,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].pin_n.i,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].pin_n.v,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].pin_p.i,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].pin_p.v,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_n.Phi.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_n.Phi.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_n.V_m.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_n.V_m.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_p.Phi.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_p.Phi.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_p.V_m.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_p.V_m.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].v,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].N.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].N.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].Phi.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].Phi.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].V_m.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].V_m.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].abs_Phi,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].abs_V_m,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].arg_Phi,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].arg_V_m,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].effectiveTurns,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].i,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].orientation,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].pin_n.i,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].pin_n.v,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].pin_p.i,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].pin_p.v,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_n.Phi.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_n.Phi.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_n.V_m.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_n.V_m.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_p.Phi.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_p.Phi.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_p.V_m.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_p.V_m.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].v,aimc3.stator.electroMagneticConverter.useStrayPermeance,aimc3.stator.electroMagneticConverter.v[1],aimc3.stator.electroMagneticConverter.v[2],aimc3.stator.electroMagneticConverter.v[3],aimc3.stator.heatPortCore.Q_flow,aimc3.stator.heatPortCore.T,aimc3.stator.heatPortWinding[1].Q_flow,aimc3.stator.heatPortWinding[1].T,aimc3.stator.heatPortWinding[2].Q_flow,aimc3.stator.heatPortWinding[2].T,aimc3.stator.heatPortWinding[3].Q_flow,aimc3.stator.heatPortWinding[3].T,aimc3.stator.i[1],aimc3.stator.i[2],aimc3.stator.i[3],aimc3.stator.m,aimc3.stator.mBase,aimc3.stator.nBase,aimc3.stator.plug_n.m,aimc3.stator.plug_n.pin[1].i,aimc3.stator.plug_n.pin[1].v,aimc3.stator.plug_n.pin[2].i,aimc3.stator.plug_n.pin[2].v,aimc3.stator.plug_n.pin[3].i,aimc3.stator.plug_n.pin[3].v,aimc3.stator.plug_p.m,aimc3.stator.plug_p.p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.T,aimcM.stator.heatPortWinding[4].Q_flow,aimcM.stator.heatPortWinding[4].T,aimcM.stator.heatPortWinding[5].Q_flow,aimcM.stator.heatPortWinding[5].T,aimcM.stator.i[1],aimcM.stator.i[2],aimcM.stator.i[3],aimcM.stator.i[4],aimcM.stator.i[5],aimcM.stator.m,aimcM.stator.mBase,aimcM.stator.nBase,aimcM.stator.plug_n.m,aimcM.stator.plug_n.pin[1].i,aimcM.stator.plug_n.pin[1].v,aimcM.stator.plug_n.pin[2].i,aimcM.stator.plug_n.pin[2].v,aimcM.stator.plug_n.pin[3].i,aimcM.stator.plug_n.pin[3].v,aimcM.stator.plug_n.pin[4].i,aimcM.stator.plug_n.pin[4].v,aimcM.stator.plug_n.pin[5].i,aimcM.stator.plug_n.pin[5].v,aimcM.stator.plug_p.m,aimcM.stator.plug_p.pin[1].i,aimcM.stator.plug_p.pin[1].v,aimcM.stator.plug_p.pin[2].i,aimcM.stator.plug_p.pin[2].v,aimcM.stator.plug_p.pin[3].i,aimcM.stator.plug_p.pin[3].v,aimcM.stator.plug_p.pin[4].i,aimcM.stator.plug_p.pin[4].v,aimcM.stator.plug_p.pin[5].i,aimcM.stator.plug_p.pin[5].v,aimcM.stator.port_n.Phi.im,aimcM.stator.port_n.Phi.re,aimcM.stator.port_n.V_m.im,aimcM.stator.port_n.V_m.re,aimcM.stator.port_p.Phi.im,aimcM.stator.port_p.Phi.re,aimcM.stator.port_p.V_m.im,aimcM.stator.port_p.V_m.re,aimcM.stator.ratioCommonLeakage,aimcM.stator.resistor.R[1],aimcM.stator.resistor.R[2],aimcM.stator.resistor.R[3],aimcM.stator.resistor.R[4],aimcM.stator.resistor.R[5],aimcM.stator.resistor.T[1],aimcM.stator.resistor.T[2],aimcM.stator.resistor.T[3],aimcM.stator.resistor.T[4],aimcM.stator.resistor.T[5],aimcM.stator.resistor.T_ref[1],aimcM.stator.resistor.T_ref[2],aimcM.stator.resistor.T_ref[3],aimcM.stator.resistor.T_ref[4],aimcM.stator.resistor.T_ref[5],aimcM.stator.resistor.alpha[1],aimcM.stator.resistor.alpha[2],aimcM.stator.resistor.alpha[3],aimcM.stator.resistor.alpha[4],aimcM.stator.resistor.alpha[5],aimcM.stator.resistor.heatPort[1].Q_flow,aimcM.stator.resistor.heatPort[1].T,aimcM.stator.resistor.heatPort[2].Q_flow,aimcM.stator.resistor.heatPort[2].T,aimcM.stator.resistor.heatPort[3].Q_flow,aimcM.stator.resistor.heatPort[3].T,aimcM.stator.resistor.heatPort[4].Q_flow,aimcM.stator.resistor.heatPort[4].T,aimcM.stator.resistor.heatPort[5].Q_flow,aimcM.stator.resistor.heatPort[5].T,aimcM.stator.resistor.i[1],aimcM.stator.resistor.i[2],aimcM.stator.resistor.i[3],aimcM.stator.resistor.i[4],aimcM.stator.resistor.i[5],aimcM.stator.resistor.m,aimcM.stator.resistor.mh,aimcM.stator.resistor.plug_n.m,aimcM.stator.resistor.plug_n.pin[1].i,aimcM.stator.resistor.plug_n.pin[1].v,aimcM.stator.resistor.plug_n.pin[2].i,aimcM.stator.resistor.plug_n.pin[2].v,aimcM.stator.resistor.plug_n.pin[3].i,aimcM.stator.resistor.plug_n.pin[3].v,aimcM.stator.resistor.plug_n.pin[4].i,aimcM.stator.resistor.plug_n.pin[4].v,aimcM.stator.resistor.plug_n.pin[5].i,aimcM.stator.resistor.plug_n.pin[5].v,aimcM.stator.resistor.plug_p.m,aimcM.stator.resistor.plug_p.pin[1].i,aimcM.stator.resistor.plug_p.pin[1].v,aimcM.stator.resistor.plug_p.pin[2].i,aimcM.stator.resistor.plug_p.pin[2].v,aimcM.stator.resistor.plug_p.pin[3].i,aimcM.stator.resistor.plug_p.pin[3].v,aimcM.stator.resistor.plug_p.pin[4].i,aimcM.stator.resistor.plug_p.pin[4].v,aimcM.stator.resistor.plug_p.pin[5].i,aimcM.stator.resistor.plug_p.pin[5].v,aimcM.stator.resistor.resistor[1].LossPower,aimcM.stator.resistor.resistor[1].R,aimcM.stator.resistor.resistor[1].R_actual,aimcM.stator.resistor.resistor[1].T,aimcM.stator.resistor.resistor[1].T_heatPort,aimcM.stator.resistor.resistor[1].T_ref,aimcM.stator.resistor.resistor[1].alpha,aimcM.stator.resistor.resistor[1].heatPort.Q_flow,aimcM.stator.resistor.resistor[1].heatPort.T,aimcM.stator.resistor.resistor[1].i,aimcM.stator.resistor.resistor[1].n.i,aimcM.stator.resistor.resistor[1].n.v,aimcM.stator.resistor.resistor[1].p.i,aimcM.stator.resistor.resistor[1].p.v,aimcM.stator.resistor.resistor[1].useHeatPort,aimcM.stator.resistor.resistor[1].v,aimcM.stator.resistor.resistor[2].LossPower,aimcM.stator.resistor.resistor[2].R,aimcM.stator.resistor.resistor[2].R_actual,aimcM.stator.resistor.resistor[2].T,aimcM.stator.resistor.resistor[2].T_heatPort,aimcM.stator.resistor.resistor[2].T_ref,aimcM.stator.resistor.resistor[2].alpha,aimcM.stator.resistor.resistor[2].heatPort.Q_flow,aimcM.stator.resistor.resistor[2].heatPort.T,aimcM.stator.resistor.resistor[2].i,aimcM.stator.resistor.resistor[2].n.i,aimcM.stator.resistor.resistor[2].n.v,aimcM.stator.resistor.resistor[2].p.i,aimcM.stator.resistor.resistor[2].p.v,aimcM.stator.resistor.resistor[2].useHeatPort,aimcM.stator.resistor.resistor[2].v,aimcM.stator.resistor.resistor[3].LossPower,aimcM.stator.resistor.resistor[3].R,aimcM.stator.resistor.resistor[3].R_actual,aimcM.stator.resistor.resistor[3].T,aimcM.stator.resistor.resistor[3].T_heatPort,aimcM.stator.resistor.resistor[3].T_ref,aimcM.stator.resistor.resistor[3].alpha,aimcM.stator.resistor.resistor[3].heatPort.Q_flow,aimcM.stator.resistor.resistor[3].heatPort.T,aimcM.stator.resistor.resistor[3].i,aimcM.stator.resistor.resistor[3].n.i,aimcM.stator.resistor.resistor[3].n.v,aimcM.stator.resistor.resistor[3].p.i,aimcM.stator.resistor.resistor[3].p.v,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oltageM.sineVoltage[3].signalSource.y,sineVoltageM.sineVoltage[3].startTime,sineVoltageM.sineVoltage[3].v,sineVoltageM.sineVoltage[4].V,sineVoltageM.sineVoltage[4].f,sineVoltageM.sineVoltage[4].i,sineVoltageM.sineVoltage[4].n.i,sineVoltageM.sineVoltage[4].n.v,sineVoltageM.sineVoltage[4].offset,sineVoltageM.sineVoltage[4].p.i,sineVoltageM.sineVoltage[4].p.v,sineVoltageM.sineVoltage[4].phase,sineVoltageM.sineVoltage[4].signalSource.amplitude,sineVoltageM.sineVoltage[4].signalSource.continuous,sineVoltageM.sineVoltage[4].signalSource.f,sineVoltageM.sineVoltage[4].signalSource.offset,sineVoltageM.sineVoltage[4].signalSource.phase,sineVoltageM.sineVoltage[4].signalSource.startTime,sineVoltageM.sineVoltage[4].signalSource.y,sineVoltageM.sineVoltage[4].startTime,sineVoltageM.sineVoltage[4].v,sineVoltageM.sineVoltage[5].V,sineVoltageM.sineVoltage[5].f,sineVoltageM.sineVoltage[5].i,sineVoltageM.sineVoltage[5].n.i,sineVoltageM.sineVoltage[5].n.v,sineVoltageM.sineVoltage[5].offset,sineVoltageM.sineVoltage[5].p.i,sineVoltageM.sineVoltage[5].p.v,sineVoltageM.sineVoltage[5].phase,sineVoltageM.sineVoltage[5].signalSource.amplitude,sineVoltageM.sineVoltage[5].signalSource.continuous,sineVoltageM.sineVoltage[5].signalSource.f,sineVoltageM.sineVoltage[5].signalSource.offset,sineVoltageM.sineVoltage[5].signalSource.phase,sineVoltageM.sineVoltage[5].signalSource.startTime,sineVoltageM.sineVoltage[5].signalSource.y,sineVoltageM.sineVoltage[5].startTime,sineVoltageM.sineVoltage[5].v,sineVoltageM.startTime[1],sineVoltageM.startTime[2],sineVoltageM.startTime[3],sineVoltageM.startTime[4],sineVoltageM.startTime[5],sineVoltageM.v[1],sineVoltageM.v[2],sineVoltageM.v[3],sineVoltageM.v[4],sineVoltageM.v[5],star3.m,star3.pin_n.i,star3.pin_n.v,star3.plug_p.m,star3.plug_p.pin[1].i,star3.plug_p.pin[1].v,star3.plug_p.pin[2].i,star3.plug_p.pin[2].v,star3.plug_p.pin[3].i,star3.plug_p.pin[3].v,starM.m,starM.pin_n.i,starM.pin_n.v,starM.plug_p.m,starM.plug_p.pin[1].i,starM.plug_p.pin[1].v,starM.plug_p.pin[2].i,starM.plug_p.pin[2].v,starM.plug_p.pin[3].i,starM.plug_p.pin[3].v,starM.plug_p.pin[4].i,starM.plug_p.pin[4].v,starM.plug_p.pin[5].i,starM.plug_p.pin[5].v,tOn,terminalBox3.m,terminalBox3.plugSupply.m,terminalBox3.plugSupply.pin[1].i,terminalBox3.plugSupply.pin[1].v,terminalBox3.plugSupply.pin[2].i,terminalBox3.plugSupply.pin[2].v,terminalBox3.plugSupply.pin[3].i,terminalBox3.plugSupply.pin[3].v,terminalBox3.plug_sn.m,terminalBox3.plug_sn.pin[1].i,terminalBox3.plug_sn.pin[1].v,terminalBox3.plug_sn.pin[2].i,terminalBox3.plug_sn.pin[2].v,terminalBox3.plug_sn.pin[3].i,terminalBox3.plug_sn.pin[3].v,terminalBox3.plug_sp.m,terminalBox3.plug_sp.pin[1].i,terminalBox3.plug_sp.pin[1].v,terminalBox3.plug_sp.pin[2].i,terminalBox3.plug_sp.pin[2].v,terminalBox3.plug_sp.pin[3].i,terminalBox3.plug_sp.pin[3].v,terminalBox3.star.m,terminalBox3.star.pin_n.i,terminalBox3.star.pin_n.v,terminalBox3.star.plug_p.m,terminalBox3.star.plug_p.pin[1].i,terminalBox3.star.plug_p.pin[1].v,terminalBox3.star.plug_p.pin[2].i,terminalBox3.star.plug_p.pin[2].v,terminalBox3.star.plug_p.pin[3].i,terminalBox3.star.plug_p.pin[3].v,terminalBox3.starpoint.i,terminalBox3.starpoint.v,terminalBoxM.m,terminalBoxM.plugSupply.m,terminalBoxM.plugSupply.pin[1].i,terminalBoxM.plugSupply.pin[1].v,terminalBoxM.plugSupply.pin[2].i,terminalBoxM.plugSupply.pin[2].v,terminalBoxM.plugSupply.pin[3].i,terminalBoxM.plugSupply.pin[3].v,terminalBoxM.plugSupply.pin[4].i,terminalBoxM.plugSupply.pin[4].v,terminalBoxM.plugSupply.pin[5].i,terminalBoxM.plugSupply.pin[5].v,terminalBoxM.plug_sn.m,terminalBoxM.plug_sn.pin[1].i,terminalBoxM.plug_sn.pin[1].v,terminalBoxM.plug_sn.pin[2].i,terminalBoxM.plug_sn.pin[2].v,terminalBoxM.plug_sn.pin[3].i,terminalBoxM.plug_sn.pin[3].v,terminalBoxM.plug_sn.pin[4].i,terminalBoxM.plug_sn.pin[4].v,terminalBoxM.plug_sn.pin[5].i,terminalBoxM.plug_sn.pin[5].v,terminalBoxM.plug_sp.m,terminalBoxM.plug_sp.pin[1].i,terminalBoxM.plug_sp.pin[1].v,terminalBoxM.plug_sp.pin[2].i,terminalBoxM.plug_sp.pin[2].v,terminalBoxM.plug_sp.pin[3].i,terminalBoxM.plug_sp.pin[3].v,terminalBoxM.plug_sp.pin[4].i,terminalBoxM.plug_sp.pin[4].v,terminalBoxM.plug_sp.pin[5].i,terminalBoxM.plug_sp.pin[5].v,terminalBoxM.star.m,terminalBoxM.star.pin_n.i,terminalBoxM.star.pin_n.v,terminalBoxM.star.plug_p.m,terminalBoxM.star.plug_p.pin[1].i,terminalBoxM.star.plug_p.pin[1].v,terminalBoxM.star.plug_p.pin[2].i,terminalBoxM.star.plug_p.pin[2].v,terminalBoxM.star.plug_p.pin[3].i,terminalBoxM.star.plug_p.pin[3].v,terminalBoxM.star.plug_p.pin[4].i,terminalBoxM.star.plug_p.pin[4].v,terminalBoxM.star.plug_p.pin[5].i,terminalBoxM.star.plug_p.pin[5].v,terminalBoxM.starpoint.i,terminalBoxM.starpoint.v,time,w_Load