Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries/ --ompython_omhome=/usr Modelica_3.2.3_cpp_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase.conf.json loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 3.2.3+maint.om/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 3.2.3+maint.om/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 3.2.3+maint.om/package.mo", uses=false) Using package ModelicaServices with version 3.2.3 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 3.2.3+maint.om/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 3.2.3 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 3.2.3+maint.om/package.mo) Running command: translateModel(Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase,tolerance=1e-06,outputFormat="mat",numberOfIntervals=30000,variableFilter="time|aimc3.is.1.|aimc3.is.2.|aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter.1..Phi.re|aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter.2..Phi.im|aimc3.stator.strayReluctance.port_p.Phi.im|aimc3.stator.strayReluctance.port_p.Phi.re|aimcM.is.1.|aimcM.is.2.|aimcM.is.3.|aimcM.is.4.|aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter.1..Phi.re|aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter.2..Phi.im|aimcM.stator.strayReluctance.port_p.Phi.im|aimcM.stator.strayReluctance.port_p.Phi.re|loadInertia3.phi|loadInertia3.w|loadInertiaM.phi|loadInertiaM.w",fileNamePrefix="Modelica_3.2.3_cpp_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase") translateModel(Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase,tolerance=1e-06,outputFormat="mat",numberOfIntervals=30000,variableFilter="time|aimc3.is.1.|aimc3.is.2.|aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter.1..Phi.re|aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter.2..Phi.im|aimc3.stator.strayReluctance.port_p.Phi.im|aimc3.stator.strayReluctance.port_p.Phi.re|aimcM.is.1.|aimcM.is.2.|aimcM.is.3.|aimcM.is.4.|aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter.1..Phi.re|aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter.2..Phi.im|aimcM.stator.strayReluctance.port_p.Phi.im|aimcM.stator.strayReluctance.port_p.Phi.re|loadInertia3.phi|loadInertia3.w|loadInertiaM.phi|loadInertiaM.w",fileNamePrefix="Modelica_3.2.3_cpp_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase") Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 3.2.3+maint.om/package.mo): time 0.002537/0.002537, allocations: 186.3 kB / 16.4 MB, free: 5.75 MB / 13.93 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 3.2.3+maint.om/package.mo): time 1.889/1.889, allocations: 205.4 MB / 222.5 MB, free: 9.121 MB / 186.7 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 3.2.3+maint.om/package.mo): time 0.001107/0.001107, allocations: 94.36 kB / 270.9 MB, free: 8.383 MB / 218.7 MB Notification: Performance of FrontEnd - loaded program: time 0.0005124/0.0005126, allocations: 8 kB / 327 MB, free: 212 kB / 266.7 MB Notification: Performance of FrontEnd - Absyn->SCode: time 0.3187/0.3192, allocations: 47.57 MB / 374.5 MB, free: 45.42 MB / 298.7 MB Notification: Performance of FrontEnd - scodeFlatten: time 0.179/0.4983, allocations: 111.9 MB / 486.5 MB, free: 0.7891 MB / 362.7 MB Notification: Performance of FrontEnd - mkProgramGraph: time 0.000334/0.4987, allocations: 87.95 kB / 486.5 MB, free: 0.7031 MB / 362.7 MB Notification: Performance of FrontEnd - DAE generated: time 1.203/1.701, allocations: 182.6 MB / 0.6535 GB, free: 49.04 MB / 426.7 MB Notification: Performance of FrontEnd: time 3.146e-06/1.702, allocations: 2.734 kB / 0.6535 GB, free: 49.04 MB / 426.7 MB Notification: Performance of Transformations before backend: time 0.0008157/1.702, allocations: 197.4 kB / 0.6537 GB, free: 49.02 MB / 426.7 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 0.03607/1.738, allocations: 8.346 MB / 0.6618 GB, free: 46.39 MB / 426.7 MB Notification: Performance of prepare preOptimizeDAE: time 4.495e-05/1.738, allocations: 7.531 kB / 0.6618 GB, free: 46.39 MB / 426.7 MB Notification: Performance of preOpt normalInlineFunction (simulation): time 0.01488/1.753, allocations: 1.831 MB / 0.6636 GB, free: 45.92 MB / 426.7 MB Notification: Performance of preOpt evaluateParameters (simulation): time 0.02428/1.778, allocations: 6.995 MB / 0.6704 GB, free: 44.96 MB / 426.7 MB Notification: Performance of preOpt simplifyIfEquations (simulation): time 0.0008635/1.779, allocations: 0.5961 MB / 0.671 GB, free: 44.94 MB / 426.7 MB Notification: Performance of preOpt expandDerOperator (simulation): time 0.003568/1.782, allocations: 0.7872 MB / 0.6718 GB, free: 44.93 MB / 426.7 MB Notification: Performance of preOpt clockPartitioning (simulation): time 0.03871/1.821, allocations: 10.99 MB / 0.6825 GB, free: 44.09 MB / 426.7 MB Notification: Performance of preOpt findStateOrder (simulation): time 0.0004662/1.821, allocations: 15.05 kB / 0.6825 GB, free: 44.08 MB / 426.7 MB Notification: Performance of preOpt replaceEdgeChange (simulation): time 0.0028/1.824, allocations: 338.9 kB / 0.6829 GB, free: 44.08 MB / 426.7 MB Notification: Performance of preOpt inlineArrayEqn (simulation): time 0.0004291/1.825, allocations: 368.2 kB / 0.6832 GB, free: 44.06 MB / 426.7 MB Notification: Performance of preOpt removeEqualRHS (simulation): time 0.03001/1.855, allocations: 9.315 MB / 0.6923 GB, free: 43.97 MB / 426.7 MB Notification: Performance of preOpt removeSimpleEquations (simulation): time 0.08767/1.943, allocations: 34.56 MB / 0.7261 GB, free: 32.49 MB / 426.7 MB Notification: Performance of preOpt comSubExp (simulation): time 0.02916/1.972, allocations: 19.87 MB / 0.7455 GB, free: 15.18 MB / 426.7 MB Notification: Performance of preOpt evalFunc (simulation): time 0.02402/1.996, allocations: 7.975 MB / 0.7532 GB, free: 11.08 MB / 426.7 MB Notification: Performance of preOpt encapsulateWhenConditions (simulation): time 7.627e-05/1.996, allocations: 73.8 kB / 0.7533 GB, free: 11.01 MB / 426.7 MB Notification: Performance of pre-optimization done (n=343): time 6.633e-06/1.996, allocations: 2.125 kB / 0.7533 GB, free: 11.01 MB / 426.7 MB Warning: The linear system: 1 : aimc3.is[1] + aimc3.is[2] + aimc3.is[3] = 0.0 2 : 3.0 * aimc3.stator.zeroInductor.i0 = aimc3.is[1] + aimc3.is[2] + aimc3.is[3] [ 1.0 , 1.0 ; -1.0 , -1.0 ] * [ aimc3.is[2] ; aimc3.is[1] ] = [ -aimc3.is[3] ; aimc3.is[3] + (-3.0) * aimc3.stator.zeroInductor.i0 ] might be structurally or numerically singular for variable aimc3.is[1] since U(2,2) = 0.0. It might be hard to solve. Compilation continues anyway. Notification: Performance of matching and sorting (n=377): time 0.06966/2.066, allocations: 17.77 MB / 0.7707 GB, free: 3.133 MB / 426.7 MB Notification: Performance of inlineWhenForInitialization (initialization): time 7.286e-05/2.066, allocations: 94.02 kB / 0.7708 GB, free: 3.066 MB / 426.7 MB Notification: Performance of selectInitializationVariablesDAE (initialization): time 0.01024/2.076, allocations: 3.848 MB / 0.7745 GB, free: 0.9219 MB / 426.7 MB Notification: Performance of collectPreVariables (initialization): time 0.0008286/2.077, allocations: 93.64 kB / 0.7746 GB, free: 0.8242 MB / 426.7 MB Notification: Performance of collectInitialEqns (initialization): time 0.003956/2.081, allocations: 3.248 MB / 0.7778 GB, free: 14 MB / 442.7 MB Notification: Performance of collectInitialBindings (initialization): time 0.002093/2.083, allocations: 1.267 MB / 0.779 GB, free: 12.86 MB / 442.7 MB Notification: Performance of simplifyInitialFunctions (initialization): time 0.000575/2.084, allocations: 90.53 kB / 0.7791 GB, free: 12.78 MB / 442.7 MB Notification: Performance of setup shared object (initialization): time 0.0003653/2.084, allocations: 473.1 kB / 0.7796 GB, free: 12.35 MB / 442.7 MB Notification: Performance of preBalanceInitialSystem (initialization): time 0.006264/2.09, allocations: 2.022 MB / 0.7815 GB, free: 10.62 MB / 442.7 MB Notification: Performance of partitionIndependentBlocks (initialization): time 0.007732/2.098, allocations: 3.016 MB / 0.7845 GB, free: 7.531 MB / 442.7 MB Notification: Performance of analyzeInitialSystem (initialization): time 0.007878/2.106, allocations: 2.534 MB / 0.787 GB, free: 5.25 MB / 442.7 MB Notification: Performance of solveInitialSystemEqSystem (initialization): time 4.572e-05/2.106, allocations: 8 kB / 0.787 GB, free: 5.242 MB / 442.7 MB Notification: Performance of matching and sorting (n=536) (initialization): time 0.02071/2.127, allocations: 6.395 MB / 0.7932 GB, free: 15.89 MB / 458.7 MB Notification: Performance of prepare postOptimizeDAE: time 6.086e-05/2.127, allocations: 19.7 kB / 0.7932 GB, free: 15.88 MB / 458.7 MB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 7.064e-05/2.127, allocations: 32.03 kB / 0.7933 GB, free: 15.85 MB / 458.7 MB Notification: Performance of postOpt tearingSystem (initialization): time 0.005051/2.132, allocations: 1.133 MB / 0.7944 GB, free: 14.89 MB / 458.7 MB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.006896/2.139, allocations: 0.8481 MB / 0.7952 GB, free: 14.23 MB / 458.7 MB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.3565/2.496, allocations: 18.41 MB / 0.8132 GB, free: 71.48 MB / 458.7 MB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.005832/2.501, allocations: 193.8 kB / 0.8134 GB, free: 71.48 MB / 458.7 MB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.001094/2.503, allocations: 166.4 kB / 0.8135 GB, free: 71.48 MB / 458.7 MB Notification: Model statistics after passing the back-end for initialization: * Number of independent subsystems: 132 * Number of states: 0 () * Number of discrete variables: 8 (booleanStepM[1].y,booleanStepM[2].y,booleanStepM[3].y,booleanStepM[4].y,booleanStepM[5].y,booleanStep3[1].y,booleanStep3[2].y,booleanStep3[3].y) * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for initialization (442): * Single equations (assignments): 433 * Array equations: 0 * Algorithm blocks: 0 * Record equations: 0 * When equations: 0 * If-equations: 0 * Equation systems (linear and non-linear blocks): 2 * Torn equation systems: 7 * Mixed (continuous/discrete) equation systems: 0 Notification: Equation system details: * Constant Jacobian: 0 * Linear Jacobian (size,density): 2 {(2,100.0%),(2,100.0%)} * Non-linear Jacobian: 0 * Without analytic Jacobian: 0 Notification: Torn system details for strict tearing set: * Linear torn systems: 7 {(3,100.0%) 31,(1,100.0%) 1,(1,100.0%) 1,(3,100.0%) 23,(1,100.0%) 2,(1,100.0%) 2,(4,68.8%) 25} * Non-linear torn systems: 0 Notification: Performance of prepare postOptimizeDAE: time 0.007508/2.51, allocations: 2.62 MB / 0.8161 GB, free: 71.37 MB / 458.7 MB Notification: Performance of postOpt lateInlineFunction (simulation): time 0.001619/2.512, allocations: 472.4 kB / 0.8165 GB, free: 71.37 MB / 458.7 MB Warning: The linear system: 1 : aimc3.is[1] + aimc3.is[2] + aimc3.is[3] = 0.0 2 : 3.0 * aimc3.stator.zeroInductor.i0 = aimc3.is[1] + aimc3.is[2] + aimc3.is[3] [ 1.0 , 1.0 ; -1.0 , -1.0 ] * [ aimc3.is[2] ; aimc3.is[1] ] = [ -aimc3.is[3] ; aimc3.is[3] + (-3.0) * aimc3.stator.zeroInductor.i0 ] might be structurally or numerically singular for variable aimc3.is[1] since U(2,2) = 0.0. It might be hard to solve. Compilation continues anyway. Notification: Performance of postOpt wrapFunctionCalls (simulation): time 0.02086/2.533, allocations: 6.37 MB / 0.8227 GB, free: 70.89 MB / 458.7 MB Notification: Performance of postOpt inlineArrayEqn (simulation): time 6.183e-05/2.533, allocations: 40.22 kB / 0.8228 GB, free: 70.89 MB / 458.7 MB Notification: Performance of postOpt constantLinearSystem (simulation): time 8.564e-05/2.533, allocations: 20.5 kB / 0.8228 GB, free: 70.89 MB / 458.7 MB Notification: Performance of postOpt simplifysemiLinear (simulation): time 0.0001032/2.533, allocations: 22.47 kB / 0.8228 GB, free: 70.89 MB / 458.7 MB Warning: The linear system: 1 : aimc3.is[1] + aimc3.is[2] + aimc3.is[3] = 0.0 2 : 3.0 * aimc3.stator.zeroInductor.i0 = aimc3.is[1] + aimc3.is[2] + aimc3.is[3] [ 1.0 , 1.0 ; -1.0 , -1.0 ] * [ aimc3.is[1] ; aimc3.is[2] ] = [ -aimc3.is[3] ; aimc3.is[3] + (-3.0) * aimc3.stator.zeroInductor.i0 ] might be structurally or numerically singular for variable aimc3.is[2] since U(2,2) = 0.0. It might be hard to solve. Compilation continues anyway. Notification: Performance of postOpt removeSimpleEquations (simulation): time 0.04299/2.576, allocations: 14.26 MB / 0.8368 GB, free: 69.88 MB / 458.7 MB Notification: Performance of postOpt simplifyComplexFunction (simulation): time 6.475e-05/2.576, allocations: 3.844 kB / 0.8368 GB, free: 69.88 MB / 458.7 MB Notification: Performance of postOpt solveSimpleEquations (simulation): time 0.004498/2.581, allocations: 487.6 kB / 0.8372 GB, free: 69.88 MB / 458.7 MB Notification: Performance of postOpt tearingSystem (simulation): time 0.006933/2.588, allocations: 1.508 MB / 0.8387 GB, free: 69.81 MB / 458.7 MB Notification: Performance of postOpt inputDerivativesUsed (simulation): time 0.000875/2.589, allocations: 98.67 kB / 0.8388 GB, free: 69.81 MB / 458.7 MB Notification: Performance of postOpt calculateStrongComponentJacobians (simulation): time 0.04135/2.63, allocations: 25.81 MB / 0.864 GB, free: 57.81 MB / 458.7 MB Notification: Performance of postOpt calculateStateSetsJacobians (simulation): time 8.296e-06/2.63, allocations: 9.875 kB / 0.864 GB, free: 57.81 MB / 458.7 MB Warning: The linear system: 1 : aimc3.is[1] + aimc3.is[2] + aimc3.is[3] = 0.0 2 : 3.0 * aimc3.stator.zeroInductor.i0 = aimc3.is[1] + aimc3.is[2] + aimc3.is[3] [ 1.0 , 1.0 ; -1.0 , -1.0 ] * [ aimc3.is[2] ; aimc3.is[1] ] = [ -aimc3.is[3] ; aimc3.is[3] + (-3.0) * aimc3.stator.zeroInductor.i0 ] might be structurally or numerically singular for variable aimc3.is[1] since U(2,2) = 0.0. It might be hard to solve. Compilation continues anyway. Notification: Performance of postOpt symbolicJacobian (simulation): time 0.02458/2.655, allocations: 9.559 MB / 0.8733 GB, free: 55.76 MB / 458.7 MB Notification: Performance of postOpt removeConstants (simulation): time 0.003797/2.658, allocations: 1.025 MB / 0.8743 GB, free: 55.28 MB / 458.7 MB Notification: Performance of postOpt simplifyTimeIndepFuncCalls (simulation): time 0.001691/2.66, allocations: 89.66 kB / 0.8744 GB, free: 55.23 MB / 458.7 MB Notification: Performance of postOpt simplifyAllExpressions (simulation): time 0.004938/2.665, allocations: 198.4 kB / 0.8746 GB, free: 55.18 MB / 458.7 MB Notification: Performance of postOpt findZeroCrossings (simulation): time 0.001622/2.667, allocations: 358.6 kB / 0.875 GB, free: 55.12 MB / 458.7 MB Notification: Performance of postOpt collapseArrayExpressions (simulation): time 0.0004873/2.667, allocations: 103.3 kB / 0.8751 GB, free: 55.1 MB / 458.7 MB Notification: Performance of sorting global known variables: time 0.0076/2.675, allocations: 2.953 MB / 0.8779 GB, free: 53.99 MB / 458.7 MB Notification: Performance of sort global known variables: time 7.81e-07/2.675, allocations: 0 / 0.8779 GB, free: 53.99 MB / 458.7 MB Notification: Performance of remove unused functions: time 0.009374/2.684, allocations: 1.551 MB / 0.8795 GB, free: 53.84 MB / 458.7 MB Notification: Model statistics after passing the back-end for simulation: * Number of independent subsystems: 18 * 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.is[3],aimc3.inertiaRotor.w,aimc3.stator.core.Phi.re,aimc3.stator.core.Phi.im,aimc3.stator.zeroInductor.i0,quadraticLoadTorque3.phi) * Number of discrete variables: 8 (booleanStepM[1].y,booleanStepM[2].y,booleanStepM[3].y,booleanStepM[4].y,booleanStepM[5].y,booleanStep3[1].y,booleanStep3[2].y,booleanStep3[3].y) * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for simulation (240): * Single equations (assignments): 232 * Array equations: 0 * Algorithm blocks: 0 * Record equations: 0 * When equations: 0 * If-equations: 0 * Equation systems (linear and non-linear blocks): 0 * Torn equation systems: 8 * Mixed (continuous/discrete) equation systems: 0 Notification: Torn system details for strict tearing set: * Linear torn systems: 8 {(5,72.0%) 29,(1,100.0%) 12,(1,100.0%) 1,(1,100.0%) 1,(6,72.2%) 46,(1,100.0%) 1,(3,100.0%) 23,(2,100.0%) 12} * Non-linear torn systems: 0 Notification: Performance of Backend phase and start with SimCode phase: time 0.001671/2.686, allocations: 492.7 kB / 0.8799 GB, free: 53.68 MB / 458.7 MB Notification: Performance of simCode: created initialization part: time 0.01669/2.703, allocations: 6.414 MB / 0.8862 GB, free: 50.67 MB / 458.7 MB Notification: Performance of simCode: created event and clocks part: time 1.319e-05/2.703, allocations: 3.125 kB / 0.8862 GB, free: 50.67 MB / 458.7 MB Notification: Performance of simCode: created simulation system equations: time 0.01159/2.714, allocations: 4.392 MB / 0.8905 GB, free: 48.38 MB / 458.7 MB Notification: Performance of simCode: created of all other equations (e.g. parameter, nominal, assert, etc): time 0.009096/2.724, allocations: 1.173 MB / 0.8916 GB, free: 48.09 MB / 458.7 MB Notification: Performance of simCode: created linear, non-linear and system jacobian parts: time 0.04276/2.766, allocations: 17.81 MB / 0.909 GB, free: 38.62 MB / 458.7 MB Notification: Performance of simCode: some other stuff during SimCode phase: time 0.01039/2.777, allocations: 5.186 MB / 0.9141 GB, free: 36.84 MB / 458.7 MB Notification: Performance of simCode: all other stuff during SimCode phase: time 0.002202/2.779, allocations: 320.5 kB / 0.9144 GB, free: 36.82 MB / 458.7 MB Notification: Performance of SimCode: time 1.402e-06/2.779, allocations: 0 / 0.9144 GB, free: 36.82 MB / 458.7 MB Notification: Performance of Templates: time 1.672/4.451, allocations: 433 MB / 1.337 GB, free: 111.1 MB / 0.4948 GB make -j1 -f Modelica_3.2.3_cpp_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase.makefile (rm -f Modelica_3.2.3_cpp_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase.pipe ; mkfifo Modelica_3.2.3_cpp_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase.pipe ; head -c 1048576 < Modelica_3.2.3_cpp_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase.pipe >> ../files/Modelica_3.2.3_cpp_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase.sim & ./Modelica_3.2.3_cpp_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase --alarm=480 -emit_protected > Modelica_3.2.3_cpp_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase.pipe 2>&1) diffSimulationResults("Modelica_3.2.3_cpp_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase_res.mat","/var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/Reference-modelica.org/ReferenceResults/MAP-LIB_ReferenceResults/v3.2.3+build.4/Modelica/Magnetic/FundamentalWave/Examples/BasicMachines/AIMC_DOL_MultiPhase/AIMC_DOL_MultiPhase.csv","../files/Modelica_3.2.3_cpp_Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase.diff",relTol=0.003,relTolDiffMinMax=0.003,rangeDelta=0.001) "Warning: Resultfile and Reference have different end time points! Reffile[30003]=1.500000 File[1]=0.000000 " Variables in the reference:time,aimc3.is[1],aimc3.is[2],aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].Phi.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].Phi.im,aimc3.stator.strayReluctance.port_p.Phi.im,aimc3.stator.strayReluctance.port_p.Phi.re,aimcM.is[1],aimcM.is[2],aimcM.is[3],aimcM.is[4],aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].Phi.im,aimcM.stator.strayReluctance.port_p.Phi.im,aimcM.stator.strayReluctance.port_p.Phi.re,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,der(aimc3.airGap.Phi_rr.im),der(aimc3.airGap.Phi_rr.re),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,der(aimc3.airGap.V_msr.im),der(aimc3.airGap.V_msr.re),aimc3.airGap.V_msr.im,aimc3.airGap.V_msr.re,aimc3.airGap.V_mss.im,aimc3.airGap.V_mss.re,der(aimc3.airGap.gamma),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,der(aimc3.airGap.rotator.im),der(aimc3.airGap.rotator.re),aimc3.airGap.rotator.im,aimc3.airGap.rotator.re,aimc3.airGap.support.phi,aimc3.airGap.support.tau,aimc3.airGap.tauElectrical,aimc3.alpha20r,aimc3.alpha20s,der(aimc3.is[1]),der(aimc3.is[2]),der(aimc3.is[3]),der(aimc3.phiMechanical),aimc3.effectiveStatorTurns,aimc3.fixed.flange.phi,aimc3.fixed.flange.tau,aimc3.fixed.phi0,aimc3.flange.phi,aimc3.flange.tau,der(aimc3.friction.phi),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.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,der(aimc3.inertiaRotor.w),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.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.w,aimc3.internalSupport.phi,aimc3.internalSupport.tau,aimc3.internalThermalPort.heatPortFriction.Q_flow,aimc3.internalThermalPort.heatPortFriction.T,aimc3.internalThermalPort.heatPortRotorCore.Q_flow,aimc3.internalThermalPort.heatPortRotorCore.T,aimc3.internalThermalPort.heatPortRotorWinding.Q_flow,aimc3.internalThermalPort.heatPortRotorWinding.T,aimc3.internalThermalPort.heatPortStatorCore.Q_flow,aimc3.internalThermalPort.heatPortStatorCore.T,aimc3.internalThermalPort.heatPortStatorWinding[1].Q_flow,aimc3.internalThermalPort.heatPortStatorWinding[1].T,aimc3.internalThermalPort.heatPortStatorWinding[2].Q_flow,aimc3.internalThermalPort.heatPortStatorWinding[2].T,aimc3.internalThermalPort.heatPortStatorWinding[3].Q_flow,aimc3.internalThermalPort.heatPortStatorWinding[3].T,aimc3.internalThermalPort.heatPortStrayLoad.Q_flow,aimc3.internalThermalPort.heatPortStrayLoad.T,aimc3.internalThermalPort.m,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.rotorCage.Lsigma,aimc3.rotorCage.Phi.im,aimc3.rotorCage.Phi.re,aimc3.rotorCage.RRef,aimc3.rotorCage.TOperational,aimc3.rotorCage.TRef,der(aimc3.rotorCage.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oMagneticConverter.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,der(aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].Phi.im),der(aimc3.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].Phi.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.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.rotorCage.resistor.heatPort[3].Q_flow,aimc3.rotorCage.resistor.heatPort[3].T,aimc3.rotorCage.resistor.i[1],aimc3.rotorCage.resistor.i[2],aimc3.rotorCage.resistor.i[3],aimc3.rotorCage.resistor.m,aimc3.rotorCage.resistor.mh,aimc3.rotorCage.resistor.plug_n.m,aimc3.rotorCage.resistor.plug_n.pin[1].i,aimc3.rotorCage.resistor.plug_n.pin[1].v,aimc3.rotorCage.resistor.plug_n.pin[2].i,aimc3.rotorCage.resistor.plug_n.pin[2].v,aimc3.rotorCage.resistor.plug_n.pin[3].i,aimc3.rotorCage.resistor.plug_n.pin[3].v,aimc3.rotorCage.resistor.plug_p.m,aimc3.rotorCage.resistor.plug_p.pin[1].i,aimc3.rotorCage.resistor.plug_p.pin[1].v,aimc3.rotorCage.resistor.plug_p.pin[2].i,aimc3.rotorCage.resistor.plug_p.pin[2].v,aimc3.rotorCage.resistor.plug_p.pin[3].i,aimc3.rotorCage.resistor.plug_p.pin[3].v,aimc3.rotorCage.resistor.resistor[1].LossPower,aimc3.rotorCage.resistor.resistor[1].R,aimc3.rotorCage.resistor.resistor[1].R_actual,aimc3.rotorCage.resistor.resistor[1].T,aimc3.rotorCage.resistor.resistor[1].T_heatPort,aimc3.rotorCage.resistor.resistor[1].T_ref,aimc3.rotorCage.resistor.resistor[1].alpha,aimc3.rotorCage.resistor.resistor[1].heatPort.Q_flow,aimc3.rotorCage.resistor.resistor[1].heatPort.T,aimc3.rotorCage.resistor.resistor[1].i,aimc3.rotorCage.resistor.resistor[1].n.i,aimc3.rotorCage.resistor.resistor[1].n.v,aimc3.rotorCage.resistor.resistor[1].p.i,aimc3.rotorCage.resistor.resistor[1].p.v,aimc3.rotorCage.resistor.resistor[1].v,aimc3.rotorCage.resistor.resistor[2].LossPower,aimc3.rotorCage.resistor.resistor[2].R,aimc3.rotorCage.resistor.resistor[2].R_actual,aimc3.rotorCage.resistor.resistor[2].T,aimc3.rotorCage.resistor.resistor[2].T_heatPort,aimc3.rotorCage.resistor.resistor[2].T_ref,aimc3.rotorCage.resistor.resistor[2].alpha,aimc3.rotorCage.resistor.resistor[2].heatPort.Q_flow,aimc3.rotorCage.resistor.resistor[2].heatPort.T,aimc3.rotorCage.resistor.resistor[2].i,aimc3.rotorCage.resistor.resistor[2].n.i,aimc3.rotorCage.resistor.resistor[2].n.v,aimc3.rotorCage.resistor.resistor[2].p.i,aimc3.rotorCage.resistor.resistor[2].p.v,aimc3.rotorCage.resistor.resistor[2].v,aimc3.rotorCage.resistor.resistor[3].LossPower,aimc3.rotorCage.resistor.resistor[3].R,aimc3.rotorCage.resistor.resistor[3].R_actual,aimc3.rotorCage.resistor.resistor[3].T,aimc3.rotorCage.resistor.resistor[3].T_heatPort,aimc3.rotorCage.resistor.resistor[3].T_ref,aimc3.rotorCage.resistor.resistor[3].alpha,aimc3.rotorCage.resistor.resistor[3].heatPort.Q_flow,aimc3.rotorCage.resistor.resistor[3].heatPort.T,aimc3.rotorCage.resistor.resistor[3].i,aimc3.rotorCage.resistor.resistor[3].n.i,aimc3.rotorCage.resistor.resistor[3].n.v,aimc3.rotorCage.resistor.resistor[3].p.i,aimc3.rotorCage.resistor.resistor[3].p.v,aimc3.rotorCage.resistor.resistor[3].v,aimc3.rotorCage.resistor.v[1],aimc3.rotorCage.resistor.v[2],aimc3.rotorCage.resistor.v[3],aimc3.rotorCage.star.m,aimc3.rotorCage.star.pin_n.i,aimc3.rotorCage.star.pin_n.v,aimc3.rotorCage.star.plug_p.m,aimc3.rotorCage.star.plug_p.pin[1].i,aimc3.rotorCage.star.plug_p.pin[1].v,der(aimc3.rotorCage.strayReluctance.Phi.im),der(aimc3.rotorCage.strayReluctance.Phi.re),aimc3.rotorCage.strayReluctance.Phi.im,aimc3.rotorCage.strayReluctance.Phi.re,aimc3.rotorCage.strayReluctance.R_m.d,aimc3.rotorCage.strayReluctance.R_m.q,aimc3.rotorCage.strayReluctance.V_m.im,aimc3.rotorCage.strayReluctance.V_m.re,aimc3.rotorCage.strayReluctance.abs_Phi,aimc3.rotorCage.strayReluctance.abs_V_m,aimc3.rotorCage.strayReluctance.arg_Phi,aimc3.rotorCage.strayReluctance.arg_V_m,aimc3.rotorCage.strayReluctance.port_n.Phi.im,aimc3.rotorCage.strayReluctance.port_n.Phi.re,aimc3.rotorCage.strayReluctance.port_n.V_m.im,aimc3.rotorCage.strayReluctance.port_n.V_m.re,aimc3.rotorCage.strayReluctance.port_p.Phi.im,aimc3.rotorCage.strayReluctance.port_p.Phi.re,aimc3.roto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oMagneticConverter[1].pin_n.v,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].pin_p.i,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].pin_p.v,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_n.Phi.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_n.Phi.re,der(aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_n.V_m.re),aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_n.V_m.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_n.V_m.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_p.Phi.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_p.Phi.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_p.V_m.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_p.V_m.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].v,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].N.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].N.re,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].Phi.im,aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].Phi.re,der(aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].V_m.im),der(aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].V_m.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,der(aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].V_m.im),der(aimc3.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].V_m.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.electroMagn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ctroMagneticConverter.singlePhaseElectroMagneticConverter[5].N.im,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].N.re,der(aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].Phi.im),der(aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].Phi.re),aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].Phi.im,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].Phi.re,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].V_m.im,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].V_m.re,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].abs_Phi,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].abs_V_m,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].arg_Phi,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].arg_V_m,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].effectiveTurns,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].i,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].orientation,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].pin_n.i,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].pin_n.v,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].pin_p.i,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].pin_p.v,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].port_n.Phi.im,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].port_n.Phi.re,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].port_n.V_m.im,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].port_n.V_m.re,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].port_p.Phi.im,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].port_p.Phi.re,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].port_p.V_m.im,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].port_p.V_m.re,aimcM.rotorCage.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].v,aimcM.rotorCage.electroMagneticConverter.v[1],aimcM.rotorCage.electroMagneticConverter.v[2],aimcM.rotorCage.electroMagneticConverter.v[3],aimcM.rotorCage.electroMagneticConverter.v[4],aimcM.rotorCage.electroMagneticConverter.v[5],aimcM.rotorCage.ground.p.i,aimcM.rotorCage.ground.p.v,aimcM.rotorCage.heatPortWinding.Q_flow,aimcM.rotorCage.heatPortWinding.T,aimcM.rotorCage.i[1],aimcM.rotorCage.i[2],aimcM.rotorCage.i[3],aimcM.rotorCage.i[4],aimcM.rotorCage.i[5],aimcM.rotorCage.m,aimcM.rotorCage.multiStar.m,aimcM.rotorCage.multiStar.mBasic,aimcM.rotorCage.multiStar.mSystems,aimcM.rotorCage.multiStar.plug_p.m,aimcM.rotorCage.multiStar.plug_p.pin[1].i,aimcM.rotorCage.multiStar.plug_p.pin[1].v,aimcM.rotorCage.multiStar.plug_p.pin[2].i,aimcM.rotorCage.multiStar.plug_p.pin[2].v,aimcM.rotorCage.multiStar.plug_p.pin[3].i,aimcM.rotorCage.multiStar.plug_p.pin[3].v,aimcM.rotorCage.multiStar.plug_p.pin[4].i,aimcM.rotorCage.multiStar.plug_p.pin[4].v,aimcM.rotorCage.multiStar.plug_p.pin[5].i,aimcM.rotorCage.multiStar.plug_p.pin[5].v,aimcM.rotorCage.multiStar.starpoints.m,aimcM.rotorCage.multiStar.starpoints.pin[1].i,aimcM.rotorCage.multiStar.starpoints.pin[1].v,aimcM.rotorCage.nBase,aimcM.rotorCage.port_n.Phi.im,aimcM.rotorCage.port_n.Phi.re,aimcM.rotorCage.port_n.V_m.im,aimcM.rotorCage.port_n.V_m.re,aimcM.rotorCage.port_p.Phi.im,aimcM.rotorCage.port_p.Phi.re,aimcM.rotorCage.port_p.V_m.im,aimcM.rotorCage.port_p.V_m.re,aimcM.rotorCage.resistor.R[1],aimcM.rotorCage.resistor.R[2],aimcM.rotorCage.resistor.R[3],aimcM.rotorCage.resistor.R[4],aimcM.rotorCage.resistor.R[5],aimcM.rotorCage.resistor.T[1],aimcM.rotorCage.resistor.T[2],aimcM.rotorCage.resistor.T[3],aimcM.rotorCage.resistor.T[4],aimcM.rotorCage.resistor.T[5],aimcM.rotorCage.resistor.T_ref[1],aimcM.rotorCage.resistor.T_ref[2],aimcM.rotorCage.resistor.T_ref[3],aimcM.rotorCage.resistor.T_ref[4],aimcM.rotorCage.resistor.T_ref[5],aimcM.rotorCage.resistor.alpha[1],aimcM.rotorCage.resistor.alpha[2],aimcM.rotorCage.resistor.alpha[3],aimcM.rotorCage.resistor.alpha[4],aimcM.rotorCage.resistor.alpha[5],aimcM.rotorCage.resistor.heatPort[1].Q_flow,aimcM.rotorCage.resistor.heatPort[1].T,aimcM.rotorCage.resistor.heatPort[2].Q_flow,aimcM.rotorCage.resistor.heatPort[2].T,aimcM.rotorCage.resistor.heatPort[3].Q_flow,aimcM.rotorCage.resistor.heatPort[3].T,aimcM.rotorCage.resistor.heatPort[4].Q_flow,aimcM.rotorCage.resistor.heatPort[4].T,aimcM.rotorCage.resistor.heatPort[5].Q_flow,aimcM.rotorCage.resistor.heatPort[5].T,aimcM.rotorCage.resistor.i[1],aimcM.rotorCage.resistor.i[2],aimcM.rotorCage.resistor.i[3],aimcM.rotorCage.resistor.i[4],aimcM.rotorCage.resistor.i[5],aimcM.rotorCage.resistor.m,aimcM.rotorCage.resistor.mh,aimcM.rotorCage.resistor.plug_n.m,aimcM.rotorCage.resistor.plug_n.pin[1].i,aimcM.rotorCage.resistor.plug_n.pin[1].v,aimcM.rotorCage.resistor.plug_n.pin[2].i,aimcM.rotorCage.resistor.plug_n.pin[2].v,aimcM.rotorCage.resistor.plug_n.pin[3].i,aimcM.rotorCage.resistor.plug_n.pin[3].v,aimcM.rotorCage.resistor.plug_n.pin[4].i,aimcM.rotorCage.resistor.plug_n.pin[4].v,aimcM.rotorCage.resistor.plug_n.pin[5].i,aimcM.rotorCage.resistor.plug_n.pin[5].v,aimcM.rotorCage.resistor.plug_p.m,aimcM.rotorCage.resistor.plug_p.pin[1].i,aimcM.rotorCage.resistor.plug_p.pin[1].v,aimcM.rotorCage.resistor.plug_p.pin[2].i,aimcM.rotorCage.resistor.plug_p.pin[2].v,aimcM.rotorCage.resistor.plug_p.pin[3].i,aimcM.rotorCage.resistor.plug_p.pin[3].v,aimcM.rotorCage.resistor.plug_p.pin[4].i,aimcM.rotorCage.resistor.plug_p.pin[4].v,aimcM.rotorCage.resistor.plug_p.pin[5].i,aimcM.rotorCage.resistor.plug_p.pin[5].v,aimcM.rotorCage.resistor.resistor[1].LossPower,aimcM.rotorCage.resistor.resistor[1].R,aimcM.rotorCage.resistor.resistor[1].R_actual,aimcM.rotorCage.resistor.resistor[1].T,aimcM.rotorCage.resistor.resistor[1].T_heatPort,aimcM.rotorCage.resistor.resistor[1].T_ref,aimcM.rotorCage.resistor.resistor[1].alpha,aimcM.rotorCage.resistor.resistor[1].heatPort.Q_flow,aimcM.rotorCage.resistor.resistor[1].heatPort.T,aimcM.rotorCage.resistor.resistor[1].i,aimcM.rotorCage.resistor.resistor[1].n.i,aimcM.rotorCage.resistor.resistor[1].n.v,aimcM.rotorCage.resistor.resistor[1].p.i,aimcM.rotorCage.resistor.resistor[1].p.v,aimcM.rotorCage.resistor.resistor[1].v,aimcM.rotorCage.resistor.resistor[2].LossPower,aimcM.rotorCage.resistor.resistor[2].R,aimcM.rotorCage.resistor.resistor[2].R_actual,aimcM.rotorCage.resistor.resistor[2].T,aimcM.rotorCage.resistor.resistor[2].T_heatPort,aimcM.rotorCage.resistor.resistor[2].T_ref,aimcM.rotorCage.resistor.resistor[2].alpha,aimcM.rotorCage.resistor.resistor[2].heatPort.Q_flow,aimcM.rotorCage.resistor.resistor[2].heatPort.T,aimcM.rotorCage.resistor.resistor[2].i,aimcM.rotorCage.resistor.resistor[2].n.i,aimcM.rotorCage.resistor.resistor[2].n.v,aimcM.rotorCage.resistor.resistor[2].p.i,aimcM.rotorCage.resistor.resistor[2].p.v,aimcM.rotorCage.resistor.resistor[2].v,aimcM.rotorCage.resistor.resistor[3].LossPower,aimcM.rotorCage.resistor.resistor[3].R,aimcM.rotorCage.resistor.resistor[3].R_actual,aimcM.rotorCage.resistor.resistor[3].T,aimcM.rotorCage.resistor.resistor[3].T_heatPort,aimcM.rotorCage.resistor.resistor[3].T_ref,aimcM.rotorCage.resistor.resistor[3].alpha,aimcM.rotorCage.resistor.resistor[3].heatPort.Q_flow,aimcM.rotorCage.resistor.resistor[3].heatPort.T,aimcM.rotorCage.resistor.resistor[3].i,aimcM.rotorCage.resistor.resistor[3].n.i,aimcM.rotorCage.resistor.resistor[3].n.v,aimcM.rotorCage.resistor.resistor[3].p.i,aimcM.rotorCage.resistor.resistor[3].p.v,aimcM.rotorCage.resistor.resistor[3].v,aimcM.rotorCage.resistor.resistor[4].LossPower,aimcM.rotorCage.resistor.resistor[4].R,aimcM.rotorCage.resistor.resistor[4].R_actual,aimcM.rotorCage.resistor.resistor[4].T,aimcM.rotorCage.resistor.resistor[4].T_heatPort,aimcM.rotorCage.resistor.resistor[4].T_ref,aimcM.rotorCage.resistor.resistor[4].alpha,aimcM.rotorCage.resistor.resistor[4].heatPort.Q_flow,aimcM.rotorCage.resistor.resistor[4].heatPort.T,aimcM.rotorCage.resistor.resistor[4].i,aimcM.rotorCage.resistor.resistor[4].n.i,aimcM.rotorCage.resistor.resistor[4].n.v,aimcM.rotorCage.resistor.resistor[4].p.i,aimcM.rotorCage.resistor.resistor[4].p.v,aimcM.rotorCage.resistor.resistor[4].v,aimcM.rotorCage.resistor.resistor[5].LossPower,aimcM.rotorCage.resistor.resistor[5].R,aimcM.rotorCage.resistor.resistor[5].R_actual,aimcM.rotorCage.resistor.resistor[5].T,aimcM.rotorCage.resistor.resistor[5].T_heatPort,aimcM.rotorCage.resistor.resistor[5].T_ref,aimcM.rotorCage.resistor.resistor[5].alpha,aimcM.rotorCage.resistor.resistor[5].heatPort.Q_flow,aimcM.rotorCage.resistor.resistor[5].heatPort.T,aimcM.rotorCage.resistor.resistor[5].i,aimcM.rotorCage.resistor.resistor[5].n.i,aimcM.rotorCage.resistor.resistor[5].n.v,aimcM.rotorCage.resistor.resistor[5].p.i,aimcM.rotorCage.resistor.resistor[5].p.v,aimcM.rotorCage.resistor.resistor[5].v,aimcM.rotorCage.resistor.v[1],aimcM.rotorCage.resistor.v[2],aimcM.rotorCage.resistor.v[3],aimcM.rotorCage.resistor.v[4],aimcM.rotorCage.resistor.v[5],aimcM.rotorCage.star.m,aimcM.rotorCage.star.pin_n.i,aimcM.rotorCage.star.pin_n.v,aimcM.rotorCage.star.plug_p.m,aimcM.rotorCage.star.plug_p.pin[1].i,aimcM.rotorCage.star.plug_p.pin[1].v,aimcM.rotorCage.strayReluctance.Phi.im,aimcM.rotorCage.strayReluctance.Phi.re,aimcM.rotorCage.strayReluctance.R_m.d,aimcM.rotorCage.strayReluctance.R_m.q,aimcM.rotorCage.strayReluctance.V_m.im,aimcM.rotorCage.strayReluctance.V_m.re,aimcM.rotorCage.strayReluctance.abs_Phi,aimcM.rotorCage.strayReluctance.abs_V_m,aimcM.rotorCage.strayReluctance.arg_Phi,aimcM.rotorCage.strayReluctance.arg_V_m,aimcM.rotorCage.strayReluctance.port_n.Phi.im,aimcM.rotorCage.strayReluctance.port_n.Phi.re,aimcM.rotorCage.strayReluctance.port_n.V_m.im,aimcM.rotorCage.strayReluctance.port_n.V_m.re,aimcM.rotorCage.strayReluctance.port_p.Phi.im,aimcM.rotorCage.strayReluctance.port_p.Phi.re,aimcM.rotorCage.strayReluctance.port_p.V_m.im,aimcM.rotorCage.strayReluctance.port_p.V_m.re,aimcM.rotorCage.thermalCollector.m,aimcM.rotorCage.thermalCollector.port_a[1].Q_flow,aimcM.rotorCage.thermalCollector.port_a[1].T,aimcM.rotorCage.thermalCollector.port_a[2].Q_flow,aimcM.rotorCage.thermalCollector.port_a[2].T,aimcM.rotorCage.thermalCollector.port_a[3].Q_flow,aimcM.rotorCage.thermalCollector.port_a[3].T,aimcM.rotorCage.thermalCollector.port_a[4].Q_flow,aimcM.rotorCage.thermalCollector.port_a[4].T,aimcM.rotorCage.thermalCollector.port_a[5].Q_flow,aimcM.rotorCage.thermalCollector.port_a[5].T,aimcM.rotorCage.thermalCollector.port_b.Q_flow,aimcM.rotorCage.thermalCollector.port_b.T,aimcM.rotorCage.useHeatPort,aimcM.stator.GcRef,aimcM.stator.Lsigma,aimcM.stator.Lzero,aimcM.stator.Phi.im,aimcM.stator.Phi.re,aimcM.stator.RRef,aimcM.stator.TOperational,aimcM.stator.TRef,aimcM.stator.V_m.im,aimcM.stator.V_m.re,aimcM.stator.abs_Phi,aimcM.stator.abs_V_m,aimcM.stator.alpha20,aimcM.stator.alphaRef,aimcM.stator.arg_Phi,aimcM.stator.arg_V_m,aimcM.stator.core.G,der(aimcM.stator.core.Phi.im),der(aimcM.stator.core.Phi.re),aimcM.stator.core.Phi.im,aimcM.stator.core.Phi.re,aimcM.stator.core.T,aimcM.stator.core.TheatPort,aimcM.stator.core.V_m.im,aimcM.stator.core.V_m.re,aimcM.stator.core.abs_Phi,aimcM.stator.core.abs_V_m,aimcM.stator.core.arg_Phi,aimcM.stator.core.arg_V_m,aimcM.stator.core.heatPort.Q_flow,aimcM.stator.core.heatPort.T,aimcM.stator.core.lossPower,aimcM.stator.core.port_n.Phi.im,aimcM.stator.core.port_n.Phi.re,aimcM.stator.core.port_n.V_m.im,aimcM.stator.core.port_n.V_m.re,aimcM.stator.core.port_p.Phi.im,aimcM.stator.core.port_p.Phi.re,aimcM.stator.core.port_p.V_m.im,aimcM.stator.core.port_p.V_m.re,aimcM.stator.effectiveTurns,aimcM.stator.electroMagneticConverter.Phi.im,aimcM.stator.electroMagneticConverter.Phi.re,aimcM.stator.electroMagneticConverter.V_m.im,aimcM.stator.electroMagneticConverter.V_m.re,aimcM.stator.electroMagneticConverter.abs_Phi,aimcM.stator.electroMagneticConverter.abs_V_m,aimcM.stator.electroMagneticConverter.arg_Phi,aimcM.stator.electroMagneticConverter.arg_V_m,aimcM.stator.electroMagneticConverter.effectiveTurns[1],aimcM.stator.electroMagneticConverter.effectiveTurns[2],aimcM.stator.electroMagneticConverter.effectiveTurns[3],aimcM.stator.electroMagneticConverter.effectiveTurns[4],aimcM.stator.electroMagneticConverter.effectiveTurns[5],aimcM.stator.electroMagneticConverter.i[1],aimcM.stator.electroMagneticConverter.i[2],aimcM.stator.electroMagneticConverter.i[3],aimcM.stator.electroMagneticConverter.i[4],aimcM.stator.electroMagneticConverter.i[5],aimcM.stator.electroMagneticConverter.m,aimcM.stator.electroMagneticConverter.orientation[1],aimcM.stator.electroMagneticConverter.orientation[2],aimcM.stator.electroMagneticConverter.orientation[3],aimcM.stator.electroMagneticConverter.orientation[4],aimcM.stator.electroMagneticConverter.orientation[5],aimcM.stator.electroMagneticConverter.plug_n.m,aimcM.stator.electroMagneticConverter.plug_n.pin[1].i,aimcM.stator.electroMagneticConverter.plug_n.pin[1].v,aimcM.stator.electroMagneticConverter.plug_n.pin[2].i,aimcM.stator.electroMagneticConverter.plug_n.pin[2].v,aimcM.stator.electroMagneticConverter.plug_n.pin[3].i,aimcM.stator.electroMagneticConverter.plug_n.pin[3].v,aimcM.stator.electroMagneticConverter.plug_n.pin[4].i,aimcM.stator.electroMagneticConverter.plug_n.pin[4].v,aimcM.stator.electroMagneticConverter.plug_n.pin[5].i,aimcM.stator.electroMagneticConverter.plug_n.pin[5].v,aimcM.stator.electroMagneticConverter.plug_p.m,aimcM.stator.electroMagneticConverter.plug_p.pin[1].i,aimcM.stator.electroMagneticConverter.plug_p.pin[1].v,aimcM.stator.electroMagneticConverter.plug_p.pin[2].i,aimcM.stator.electroMagneticConverter.plug_p.pin[2].v,aimcM.stator.electroMagneticConverter.plug_p.pin[3].i,aimcM.stator.electroMagneticConverter.plug_p.pin[3].v,aimcM.stator.electroMagneticConverter.plug_p.pin[4].i,aimcM.stator.electroMagneticConverter.plug_p.pin[4].v,aimcM.stator.electroMagneticConverter.plug_p.pin[5].i,aimcM.stator.electroMagneticConverter.plug_p.pin[5].v,aimcM.stator.electroMagneticConverter.port_n.Phi.im,aimcM.stator.electroMagneticConverter.port_n.Phi.re,aimcM.stator.electroMagneticConverter.port_n.V_m.im,aimcM.stator.electroMagneticConverter.port_n.V_m.re,aimcM.stator.electroMagneticConverter.port_p.Phi.im,aimcM.stator.electroMagneticConverter.port_p.Phi.re,aimcM.stator.electroMagneticConverter.port_p.V_m.im,aimcM.stator.electroMagneticConverter.port_p.V_m.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].N.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].N.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].Phi.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].V_m.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].V_m.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].abs_Phi,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].abs_V_m,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].arg_Phi,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].arg_V_m,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].effectiveTurns,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].i,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].orientation,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].pin_n.i,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].pin_n.v,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].pin_p.i,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].pin_p.v,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_n.Phi.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_n.Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_n.V_m.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_n.V_m.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_p.Phi.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_p.Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_p.V_m.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].port_p.V_m.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[1].v,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].N.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].N.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].Phi.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].V_m.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].V_m.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].abs_Phi,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].abs_V_m,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].arg_Phi,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].arg_V_m,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].effectiveTurns,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].i,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].orientation,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].pin_n.i,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].pin_n.v,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].pin_p.i,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].pin_p.v,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_n.Phi.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_n.Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_n.V_m.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_n.V_m.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_p.Phi.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_p.Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_p.V_m.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].port_p.V_m.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[2].v,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].N.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].N.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].Phi.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].V_m.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].V_m.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].abs_Phi,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].abs_V_m,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].arg_Phi,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].arg_V_m,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].effectiveTurns,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].i,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].orientation,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].pin_n.i,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].pin_n.v,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].pin_p.i,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].pin_p.v,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_n.Phi.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_n.Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_n.V_m.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_n.V_m.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_p.Phi.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_p.Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_p.V_m.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].port_p.V_m.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[3].v,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].N.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].N.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].Phi.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].V_m.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].V_m.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].abs_Phi,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].abs_V_m,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].arg_Phi,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].arg_V_m,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].effectiveTurns,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].i,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].orientation,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].pin_n.i,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].pin_n.v,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].pin_p.i,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].pin_p.v,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].port_n.Phi.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].port_n.Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].port_n.V_m.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].port_n.V_m.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].port_p.Phi.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].port_p.Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].port_p.V_m.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].port_p.V_m.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[4].v,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].N.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].N.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].Phi.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].Phi.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].V_m.im,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].V_m.re,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].abs_Phi,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].abs_V_m,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].arg_Phi,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].arg_V_m,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].effectiveTurns,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].i,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].orientation,aimcM.stator.electroMagneticConverter.singlePhaseElectroMagneticConverter[5].pin_n.i,aimcM.stator.el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sistor[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].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].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,aimcM.stator.resistor.resistor[3].v,aimcM.stator.resistor.resistor[4].LossPower,aimcM.stator.resistor.resistor[4].R,aimcM.stator.resistor.resistor[4].R_actual,aimcM.stator.resistor.resistor[4].T,aimcM.stator.resistor.resistor[4].T_heatPort,aimcM.stator.resistor.resistor[4].T_ref,aimcM.stator.resistor.resistor[4].alpha,aimcM.stator.resistor.resistor[4].heatPort.Q_flow,aimcM.stator.resistor.resistor[4].heatPort.T,aimcM.stator.resistor.resistor[4].i,aimcM.stator.resistor.resistor[4].n.i,aimcM.stator.resistor.resistor[4].n.v,aimcM.stator.resistor.resistor[4].p.i,aimcM.stator.resistor.resistor[4].p.v,aimcM.stator.resistor.resistor[4].v,aimcM.stator.resistor.resistor[5].LossPower,aimcM.stator.resistor.resistor[5].R,aimcM.stator.resistor.resistor[5].R_actual,aimcM.stator.resistor.resistor[5].T,aimcM.stator.resistor.resistor[5].T_heatPort,aimcM.stator.resistor.resistor[5].T_ref,aimcM.stator.resistor.resistor[5].alpha,aimcM.stator.resistor.resistor[5].heatPort.Q_flow,aimcM.stator.resistor.resistor[5].heatPort.T,aimcM.stator.resistor.resistor[5].i,aimcM.stator.resistor.resistor[5].n.i,aimcM.stator.resistor.resistor[5].n.v,aimcM.stator.resistor.resistor[5].p.i,aimcM.stator.resistor.resistor[5].p.v,aimcM.stator.resistor.resistor[5].v,aimcM.stator.resistor.v[1],aimcM.stator.resistor.v[2],aimcM.stator.resistor.v[3],aimcM.stator.resistor.v[4],aimcM.stator.resistor.v[5],aimcM.stator.strayReluctance.Phi.im,aimcM.stator.strayReluctance.Phi.re,aimcM.stator.strayReluctance.R_m.d,aimcM.stator.strayReluctance.R_m.q,aimcM.stator.strayReluctance.V_m.im,aimcM.stator.strayReluctance.V_m.re,aimcM.stator.strayReluctance.abs_Phi,aimcM.stator.strayReluctance.abs_V_m,aimcM.stator.strayReluctance.arg_Phi,aimcM.stator.strayReluctance.arg_V_m,aimcM.stator.strayReluctance.port_n.Phi.im,aimcM.stator.strayReluctance.port_n.Phi.re,aimcM.stator.strayReluctance.port_n.V_m.im,aimcM.stator.strayReluctance.port_n.V_m.re,aimcM.stator.strayReluctance.port_p.Phi.im,aimcM.stator.strayReluctance.port_p.Phi.re,aimcM.stator.strayReluctance.port_p.V_m.im,aimcM.stator.strayReluctance.port_p.V_m.re,aimcM.stator.useHeatPort,aimcM.stator.v[1],aimcM.stator.v[2],aimcM.stator.v[3],aimcM.stator.v[4],aimcM.stator.v[5],aimcM.stator.zeroInductor.Lzero,der(aimcM.stator.zeroInductor.i0),aimcM.stator.zeroInductor.i0,aimcM.stator.zeroInductor.i[1],aimcM.stator.zeroInductor.i[2],aimcM.stator.zeroInductor.i[3],aimcM.stator.zeroInductor.i[4],aimcM.stator.zeroInductor.i[5],aimcM.stator.zeroInductor.m,aimcM.stator.zeroInductor.plug_n.m,aimcM.stator.zeroInductor.plug_n.pin[1].i,aimcM.stator.zeroInductor.plug_n.pin[1].v,aimcM.stator.zeroInductor.plug_n.pin[2].i,aimcM.stator.zeroInductor.plug_n.pin[2].v,aimcM.stator.zeroInductor.plug_n.pin[3].i,aimcM.stator.zeroInductor.plug_n.pin[3].v,aimcM.stator.zeroInductor.plug_n.pin[4].i,aimcM.stator.zeroInductor.plug_n.pin[4].v,aimcM.stator.zeroInductor.plug_n.pin[5].i,aimcM.stator.zeroInductor.plug_n.pin[5].v,aimcM.stator.zeroInductor.plug_p.m,aimcM.stator.zeroInductor.plug_p.pin[1].i,aimcM.stator.zeroInductor.plug_p.pin[1].v,aimcM.stator.zeroInductor.plug_p.pin[2].i,aimcM.stator.zeroInductor.plug_p.pin[2].v,aimcM.stator.zeroInductor.plug_p.pin[3].i,aimcM.stator.zeroInductor.plug_p.pin[3].v,aimcM.stator.zeroInductor.plug_p.pin[4].i,aimcM.stator.zeroInductor.plug_p.pin[4].v,aimcM.stator.zeroInductor.plug_p.pin[5].i,aimcM.stator.zeroInductor.plug_p.pin[5].v,aimcM.stator.zeroInductor.v0,aimcM.stator.zeroInductor.v[1],aimcM.stator.zeroInductor.v[2],aimcM.stator.zeroInductor.v[3],aimcM.stator.zeroInductor.v[4],aimcM.stator.zeroInductor.v[5],aimcM.statorCor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