Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr ModelicaTest_trunk_ModelicaTest.Electrical.Machines.Examples.InductionMachines.IMC_Conveyor.conf.json loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices trunk/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices trunk/package.mo): time 0.001927/0.001927, allocations: 103.5 kB / 21.7 MB, free: 2.852 MB / 18.57 MB " [Timeout remaining time 180] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex trunk/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex trunk/package.mo): time 0.001982/0.001982, allocations: 164.7 kB / 24.99 MB, free: 8.305 MB / 18.57 MB " [Timeout remaining time 180] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica trunk/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica trunk/package.mo): time 1.578/1.578, allocations: 177 MB / 205.2 MB, free: 5.66 MB / 186.7 MB " [Timeout remaining time 178] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaTest trunk/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaTest trunk/package.mo): time 0.393/0.393, allocations: 34.87 MB / 296.5 MB, free: 492 kB / 266.7 MB " [Timeout remaining time 179] Using package ModelicaTest with version trunk (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaTest trunk/package.mo) 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: translateModel(ModelicaTest.Electrical.Machines.Examples.InductionMachines.IMC_Conveyor,tolerance=1e-06,outputFormat="empty",numberOfIntervals=350,variableFilter="",fileNamePrefix="ModelicaTest_trunk_ModelicaTest.Electrical.Machines.Examples.InductionMachines.IMC_Conveyor") translateModel(ModelicaTest.Electrical.Machines.Examples.InductionMachines.IMC_Conveyor,tolerance=1e-06,outputFormat="empty",numberOfIntervals=350,variableFilter="",fileNamePrefix="ModelicaTest_trunk_ModelicaTest.Electrical.Machines.Examples.InductionMachines.IMC_Conveyor") [Timeout 660] "Notification: Performance of FrontEnd - Absyn->SCode: time 2.47e-05/2.47e-05, allocations: 4.984 kB / 378.7 MB, free: 2.449 MB / 346.7 MB Notification: Performance of NFInst.instantiate(ModelicaTest.Electrical.Machines.Examples.InductionMachines.IMC_Conveyor): time 0.01425/0.01427, allocations: 9.541 MB / 388.3 MB, free: 8.859 MB / 362.7 MB Notification: Performance of NFInst.instExpressions: time 0.008091/0.02236, allocations: 3.572 MB / 391.8 MB, free: 5.277 MB / 362.7 MB Notification: Performance of NFInst.updateImplicitVariability: time 0.001517/0.02388, allocations: 63.56 kB / 391.9 MB, free: 5.215 MB / 362.7 MB Notification: Performance of NFTyping.typeComponents: time 0.002036/0.02592, allocations: 0.7182 MB / 392.6 MB, free: 4.492 MB / 362.7 MB Notification: Performance of NFTyping.typeBindings: time 0.002811/0.02873, allocations: 0.9161 MB / 393.5 MB, free: 3.57 MB / 362.7 MB Notification: Performance of NFTyping.typeClassSections: time 0.001286/0.03001, allocations: 470.8 kB / 394 MB, free: 3.109 MB / 362.7 MB Notification: Performance of NFFlatten.flatten: time 0.004047/0.03406, allocations: 2.885 MB / 396.9 MB, free: 220 kB / 362.7 MB Notification: Performance of NFFlatten.resolveConnections: time 0.001215/0.03528, allocations: 0.5586 MB / 397.4 MB, free: 15.62 MB / 378.7 MB Notification: Performance of NFEvalConstants.evaluate: time 0.002873/0.03815, allocations: 1.493 MB / 398.9 MB, free: 14.12 MB / 378.7 MB Notification: Performance of NFSimplifyModel.simplify: time 0.001859/0.04001, allocations: 1.025 MB / 399.9 MB, free: 13.09 MB / 378.7 MB Notification: Performance of NFPackage.collectConstants: time 0.0003192/0.04033, allocations: 172 kB / 400.1 MB, free: 12.93 MB / 378.7 MB Notification: Performance of NFFlatten.collectFunctions: time 0.001395/0.04172, allocations: 0.5146 MB / 400.6 MB, free: 12.41 MB / 378.7 MB Notification: Performance of combineBinaries: time 0.003633/0.04536, allocations: 3.088 MB / 403.7 MB, free: 9.305 MB / 378.7 MB Notification: Performance of replaceArrayConstructors: time 0.002353/0.04771, allocations: 1.792 MB / 405.5 MB, free: 7.5 MB / 378.7 MB Notification: Performance of NFVerifyModel.verify: time 0.0004895/0.0482, allocations: 140 kB / 405.6 MB, free: 7.363 MB / 378.7 MB Notification: Performance of FrontEnd: time 0.0004106/0.04861, allocations: 47.8 kB / 405.7 MB, free: 7.316 MB / 378.7 MB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 490 (309) * Number of variables: 490 (293) Notification: Performance of [SIM] Bindings: time 0.01268/0.06129, allocations: 9.086 MB / 414.8 MB, free: 13.91 MB / 394.7 MB Notification: Performance of [SIM] FunctionAlias: time 0.003077/0.06436, allocations: 1.404 MB / 416.2 MB, free: 12.45 MB / 394.7 MB Notification: Performance of [SIM] Early Inline: time 0.007936/0.0723, allocations: 5.971 MB / 422.2 MB, free: 6.402 MB / 394.7 MB Notification: Performance of [SIM] Simplify 1: time 0.001531/0.07383, allocations: 0.558 MB / 422.7 MB, free: 5.785 MB / 394.7 MB Notification: Performance of [SIM] Alias: time 0.01235/0.08618, allocations: 6.379 MB / 429.1 MB, free: 14.77 MB / 410.7 MB Notification: Performance of [SIM] Simplify 2: time 0.0008947/0.08708, allocations: 419.9 kB / 429.5 MB, free: 14.32 MB / 410.7 MB Notification: Performance of [SIM] Remove Stream: time 0.00055/0.08763, allocations: 336 kB / 429.8 MB, free: 13.95 MB / 410.7 MB Notification: Performance of [SIM] Detect States: time 0.00185/0.08948, allocations: 1.123 MB / 431 MB, free: 12.76 MB / 410.7 MB Notification: Performance of [SIM] Events: time 0.0005646/0.09004, allocations: 375.7 kB / 431.3 MB, free: 12.39 MB / 410.7 MB Notification: Performance of [SIM] Partitioning: time 0.002393/0.09244, allocations: 1.424 MB / 432.7 MB, free: 10.89 MB / 410.7 MB Notification: Performance of [SIM] Causalize: time 0.01515/0.1076, allocations: 8.067 MB / 440.8 MB, free: 2.527 MB / 410.7 MB Notification: Performance of [SIM] After Index Reduction Inline: time 0.1897/0.2973, allocations: 3.255 MB / 444.1 MB, free: 79.66 MB / 410.7 MB Notification: Performance of [INI] Simplify: time 0.007076/0.3044, allocations: 2.472 MB / 446.5 MB, free: 79.21 MB / 410.7 MB Notification: Performance of [INI] Inline: time 0.008086/0.3125, allocations: 7.248 MB / 453.8 MB, free: 78.81 MB / 410.7 MB Notification: Performance of [INI] Partitioning: time 0.0002983/0.3128, allocations: 109 kB / 453.9 MB, free: 78.74 MB / 410.7 MB Notification: Performance of [INI] Cleanup: time 0.0009896/0.3138, allocations: 1.115 MB / 455 MB, free: 78.06 MB / 410.7 MB Warning: NBResolveSingularities.balanceInitialization reports an overdetermined initialization! Checking for consistency is not yet supported, following equations had to be removed: [FOR-] (18) ($RES_BND_605) [----] for $i1 in 1:3 loop [----] [ARRY] (6) currentQuasiRMSSensor.ToSpacePhasor1.TransformationMatrix = 0.6666666666666666 * {$FUN_24[$i1], $FUN_25[1.0 + ((-1.0) + $i1)]}; ($RES_BND_606) [----] end for; slice: {1, 2, 4, 5, 7, 8, 10, 11, 13, 14, ...} [FOR-] (18) ($RES_BND_586) [----] for $i1 in 1:3 loop [----] [ARRY] (6) aimc.spacePhasorS.TransformationMatrix = 0.6666666666666666 * {$FUN_21[1.0 + ((-1.0) + $i1)], $FUN_22[1.0 + ((-1.0) + $i1)]}; ($RES_BND_587) [----] end for; slice: {1, 2, 4, 5, 7, 8, 10, 11, 13, 14, ...} Error: Internal error NBSorting.tarjan failed to sort system: System Variables (349/561) **************************** (1|1) [STAT] (1) Real aimc.phiMechanical = idealGearR2T.flangeR.phi - aimc.fixed.phi0 (fixed = true, start = 0.0) (2|2) [ALGB] (1) Real aimc.wMechanical = der(aimc.phiMechanical) (fixed = true, start = 0.0) (3|3) [ALGB] (1) Real aimc.tauElectrical = aimc.tauElectrical (4|4) [ALGB] (1) Real aimc.tauShaft = -(-aimc.tauShaft) (5|5) [ALGB] (1) flow Real aimc.inertiaRotor.flange_b.tau (6|6) [STAT] (1) Real aimc.inertiaRotor.w (StateSelect = default) (7|7) [ALGB] (1) Real aimc.inertiaRotor.a (8|8) [ALGB] (1) flow Real aimc.inertiaStator.flange_a.tau (9|9) [DSTA] (1) Real aimc.inertiaStator.w (StateSelect = default) (10|10) [ALGB] (1) Real aimc.inertiaStator.a (11|11) [ALGB] (1) flow Real aimc.fixed.flange.tau (12|12) [DSTA] (1) Real aimc.friction.phi (13|13) [ALGB] (1) Real aimc.friction.w (14|14) [ALGB] (1) Real aimc.friction.lossPower (15|15) [ALGB] (1) final output Real aimc.powerBalance.powerStator = Modelica.Electrical.Machines.SpacePhasors.Functions.activePower(aimc.vs, aimc.is) (16|16) [ALGB] (1) final output Real aimc.powerBalance.powerMechanical = aimc.wMechanical * aimc.tauShaft (17|17) [ALGB] (1) final output Real aimc.powerBalance.powerInertiaStator = aimc.inertiaStator.a * aimc.inertiaStator.J * aimc.inertiaStator.w (18|18) [ALGB] (1) final output Real aimc.powerBalance.powerInertiaRotor = aimc.inertiaRotor.a * aimc.inertiaRotor.J * aimc.inertiaRotor.w (19|19) [ALGB] (1) final output Real aimc.powerBalance.lossPowerTotal = aimc.powerBalance.lossPowerFriction + aimc.powerBalance.lossPowerRotorCore + aimc.powerBalance.lossPowerStatorWinding + aimc.powerBalance.lossPowerStatorCore + aimc.powerBalance.lossPowerStrayLoad + aimc.powerBalance.lossPowerRotorWinding (20|20) [ALGB] (1) final output Real aimc.powerBalance.lossPowerStatorWinding = sum(aimc.rs.resistor.LossPower) (21|21) [ALGB] (1) final output Real aimc.powerBalance.lossPowerStatorCore = aimc.statorCore.lossPower (22|22) [ALGB] (1) final output Real aimc.powerBalance.lossPowerRotorCore = 0.0 (23|23) [ALGB] (1) final output Real aimc.powerBalance.lossPowerStrayLoad = aimc.strayLoad.lossPower (24|24) [ALGB] (1) final output Real aimc.powerBalance.lossPowerFriction = aimc.friction.lossPower (25|25) [ALGB] (1) final output Real aimc.powerBalance.lossPowerRotorWinding = aimc.squirrelCageR.LossPower (26|26) [ALGB] (3) Real[3] aimc.vs = aimc.plug_sp.pin.v - aimc.plug_sn.pin.v (27|29) [ALGB] (3) Real[3] aimc.is = aimc.is (28|32) [DSTA] (1) Real aimc.i_0_s = aimc.i_0_s (start = 0.0, StateSelect = prefer) (29|33) [DSTA] (2) final Real[2] aimc.idq_ss = aimc.idq_ss (30|35) [STAT] (2) final Real[2] aimc.idq_sr = aimc.idq_sr (StateSelect = prefer) (31|37) [DSTA] (2) final Real[2] aimc.idq_rs = aimc.idq_rs (32|39) [STAT] (2) final Real[2] aimc.idq_rr = aimc.idq_rr (StateSelect = prefer) (33|41) [ALGB] (3) Real[3] aimc.plug_sp.pin.v (34|44) [ALGB] (3) Real[3] aimc.plug_sn.pin.v (35|47) [DSTA] (3) flow Real[3] aimc.plug_sn.pin.i (36|50) [ALGB] (3) Real[3] aimc.rs.v (37|53) [ALGB] (3) Real[3] aimc.rs.i (38|56) [ALGB] (3) flow Real[3] aimc.rs.plug_n.pin.i (39|59) [ALGB] (3) Real[3] aimc.rs.heatPort.T (start = {288.15 for $f2 in 1:3}, min = max({0.0 for $f3 in 1:3}, {0.0 for $f3 in 1:3}), nominal = {300.0 for $f1 in 1:3}) (40|62) [ALGB] (3) flow Real[3] aimc.rs.heatPort.Q_flow (41|65) [ALGB] (3) Real[3] aimc.rs.resistor.v (42|68) [ALGB] (3) flow Real[3] aimc.rs.resistor.p.i (43|71) [ALGB] (3) flow Real[3] aimc.rs.resistor.n.i (44|74) [ALGB] (3) Real[3] aimc.rs.resistor.i (45|77) [ALGB] (3) flow Real[3] aimc.rs.resistor.heatPort.Q_flow = {-aimc.rs.resistor[$resistor1].LossPower for $resistor1 in 1:3} (46|80) [ALGB] (3) Real[3] aimc.rs.resistor.LossPower (47|83) [ALGB] (3) Real[3] aimc.rs.resistor.T_heatPort (start = {288.15 for $f2 in 1:3}, min = {0.0 for $f3 in 1:3}, nominal = {300.0 for $f1 in 1:3}) (48|86) [ALGB] (3) Real[3] aimc.rs.resistor.R_actual (49|89) [ALGB] (2) Real[2] aimc.lssigma.v_ (50|91) [DSTA] (2) Real[2] aimc.lssigma.i_ (51|93) [ALGB] (2) Real[2] aimc.lssigma.spacePhasor_a.v_ (52|95) [ALGB] (2) Real[2] aimc.lssigma.spacePhasor_b.v_ (53|97) [DSTA] (2) flow Real[2] aimc.lssigma.spacePhasor_b.i_ (54|99) [ALGB] (1) Real aimc.lszero.v (55|100) [ALGB] (1) Real aimc.statorCore.lossPower (56|101) [ALGB] (2) Real[2] aimc.statorCore.spacePhasor.v_ (57|103) [DSTA] (2) flow Real[2] aimc.statorCore.spacePhasor.i_ (58|105) [ALGB] (1) protected Real aimc.statorCore.wLimit = noEvent(max(noEvent(abs(aimc.statorCoreParameters.wRef)), aimc.statorCore.coreParameters.wMin)) (59|106) [ALGB] (3) Real[3] aimc.spacePhasorS.v (60|109) [DSTA] (3) Real[3] aimc.spacePhasorS.i (61|112) [ALGB] (3) Real[3] aimc.spacePhasorS.plug_p.pin.v (62|115) [ALGB] (3) flow Real[3] aimc.spacePhasorS.plug_p.pin.i (63|118) [DSTA] (3) flow Real[3] aimc.spacePhasorS.plug_n.pin.i (64|121) [ALGB] (1) Real aimc.spacePhasorS.zero.v (65|122) [ALGB] (2) Real[2] aimc.spacePhasorS.spacePhasor.v_ (66|124) [DSTA] (2) flow Real[2] aimc.spacePhasorS.spacePhasor.i_ (67|126) [ALGB] (3) Real[3] aimc.strayLoad.v (68|129) [ALGB] (3) Real[3] aimc.strayLoad.i (69|132) [ALGB] (3) Real[3] aimc.strayLoad.plug_n.pin.v (70|135) [ALGB] (3) flow Real[3] aimc.strayLoad.plug_n.pin.i (71|138) [DSTA] (1) Real aimc.strayLoad.phi (72|139) [ALGB] (1) Real aimc.strayLoad.w (73|140) [ALGB] (1) Real aimc.strayLoad.lossPower (74|141) [ALGB] (1) Real aimc.strayLoad.iRMS = Modelica.Electrical.Polyphase.Functions.quasiRMS(aimc.strayLoad.i) (75|142) [ALGB] (1) final Real aimc.thermalAmbient.Q_flowStatorWinding = aimc.thermalAmbient.Q_flowStatorWinding (76|143) [ALGB] (1) final Real aimc.thermalAmbient.Q_flowStatorCore = aimc.thermalAmbient.Q_flowStatorCore (77|144) [ALGB] (1) final Real aimc.thermalAmbient.Q_flowStrayLoad = aimc.thermalAmbient.Q_flowStrayLoad (78|145) [ALGB] (1) final Real aimc.thermalAmbient.Q_flowFriction = aimc.thermalAmbient.Q_flowFriction (79|146) [ALGB] (3) flow Real[3] aimc.thermalAmbient.thermalPort.heatPortStatorWinding.Q_flow (80|149) [ALGB] (3) Real[3] aimc.thermalAmbient.thermalCollectorStator.port_a.T (start = {288.15 for $f2 in 1:3}, min = max({0.0 for $f3 in 1:3}, {0.0 for $f3 in 1:3}), nominal = {300.0 for $f1 in 1:3}) (81|152) [ALGB] (3) flow Real[3] aimc.thermalAmbient.thermalCollectorStator.port_a.Q_flow (82|155) [ALGB] (1) final Real aimc.thermalAmbient.Q_flowRotorWinding = aimc.thermalAmbient.Q_flowRotorWinding (83|156) [ALGB] (1) final Real aimc.thermalAmbient.Q_flowTotal = aimc.thermalAmbient.Q_flowStrayLoad + aimc.thermalAmbient.Q_flowStatorCore + aimc.thermalAmbient.Q_flowStatorWinding + aimc.thermalAmbient.Q_flowRotorWinding + 0.0 + aimc.thermalAmbient.Q_flowFriction (84|157) [ALGB] (3) protected Real[3] aimc.internalThermalPort.heatPortStatorWinding.T (start = {288.15 for $f2 in 1:3}, min = {0.0 for $f3 in 1:3}, nominal = {300.0 for $f1 in 1:3}) (85|160) [ALGB] (3) protected flow Real[3] aimc.internalThermalPort.heatPortStatorWinding.Q_flow (86|163) [DSTA] (2) Real[2] aimc.ir = aimc.ir (87|165) [DSTA] (1) Real aimc.airGap.gamma (88|166) [DSTA] (2) Real[2] aimc.airGap.psi_ms (89|168) [DSTA] (2) Real[2] aimc.airGap.psi_mr (90|170) [DSTA] (4) Real[2, 2] aimc.airGap.RotationMatrix (91|174) [ALGB] (2) Real[2] aimc.airGap.spacePhasor_r.v_ (92|176) [DSTA] (2) Real[2] aimc.airGap.i_ms (93|178) [ALGB] (1) Real aimc.squirrelCageR.LossPower (94|179) [ALGB] (1) Real aimc.squirrelCageR.Rr_actual (95|180) [ALGB] (1) Real currentQuasiRMSSensor.I (96|181) [ALGB] (3) Real[3] currentQuasiRMSSensor.plug_p.pin.v (97|184) [ALGB] (3) flow Real[3] currentQuasiRMSSensor.plug_p.pin.i (98|187) [ALGB] (3) flow Real[3] currentQuasiRMSSensor.plug_n.pin.i (99|190) [ALGB] (3) flow Real[3] currentQuasiRMSSensor.CurrentSensor1.plug_p.pin.i (100|193) [ALGB] (3) flow Real[3] currentQuasiRMSSensor.CurrentSensor1.plug_n.pin.i (101|196) [ALGB] (3) flow Real[3] currentQuasiRMSSensor.CurrentSensor1.currentSensor.p.i (102|199) [ALGB] (3) flow Real[3] currentQuasiRMSSensor.CurrentSensor1.currentSensor.n.i (103|202) [ALGB] (1) Real currentQuasiRMSSensor.Gain1.u (104|203) [ALGB] (3) Real[3] currentQuasiRMSSensor.ToSpacePhasor1.u (105|206) [ALGB] (2) Real[2] currentQuasiRMSSensor.ToSpacePhasor1.y (106|208) [ALGB] (1) Real currentQuasiRMSSensor.ToSpacePhasor1.zero (107|209) [ALGB] (2) Real[2] currentQuasiRMSSensor.ToPolar1.y (108|211) [ALGB] (1) Real[1] dutyCycle.y (109|212) [DISS] (1) protected discrete Real dutyCycle.nextTimeEvent (fixed = true, start = 0.0) (110|213) [DISS] (1) protected discrete Real dutyCycle.nextTimeEventScaled (fixed = true, start = 0.0) (111|214) [ALGB] (1) Real vfController.u (112|215) [ALGB] (3) Real[3] vfController.y (113|218) [STAT] (1) Real vfController.x (fixed = true, start = 0.0) (114|219) [ALGB] (1) Real vfController.amplitude (115|220) [ALGB] (3) Real[3] signalVoltage.i = signalVoltage.i (116|223) [ALGB] (3) flow Real[3] signalVoltage.plug_n.pin.i (117|226) [ALGB] (3) flow Real[3] signalVoltage.signalVoltage.p.i (118|229) [ALGB] (3) flow Real[3] signalVoltage.signalVoltage.n.i (119|232) [ALGB] (3) Real[3] signalVoltage.signalVoltage.i (120|235) [ALGB] (3) Real[3] star.plug_p.pin.v (121|238) [ALGB] (3) flow Real[3] star.plug_p.pin.i (122|241) [ALGB] (1) flow Real ground.p.i (123|242) [ALGB] (3) flow Real[3] terminalBox.plug_sp.pin.i (124|245) [DSTA] (3) flow Real[3] terminalBox.plug_sn.pin.i (125|248) [DSTA] (3) flow Real[3] terminalBox.star.plug_p.pin.i (126|251) [ALGB] (3) flow Real[3] terminalBox.plugSupply.pin.i (127|254) [ALGB] (1) Real terminalBox.starpoint.v (128|255) [ALGB] (1) Real gain.u (129|256) [DSTA] (1) Real idealGearR2T.flangeR.phi (130|257) [DSTA] (1) Real mass.s (start = 0.0, StateSelect = default) (131|258) [ALGB] (1) flow Real mass.flange_a.f (132|259) [DSTA] (1) Real mass.v (start = 0.0, StateSelect = default) (133|260) [ALGB] (1) Real mass.a (start = 0.0) (134|261) [DSTA] (1) Real signForce.s (135|262) [ALGB] (1) Real signForce.f (136|263) [ALGB] (1) Real signForce.v (137|264) [DSTA] (1) Real $FUN_4 (138|265) [DSTA] (1) Real $FUN_5 (139|266) [ALGB] (1) Real $FUN_7 (140|267) [ALGB] (1) Real $FUN_8 (141|268) [ALGB] (1) Real $FUN_9 (142|269) [ALGB] (1) Real $FUN_10 (143|270) [ALGB] (3) Real[3] $FUN_11 (144|273) [ALGB] (3) Real[3] $FUN_12 (145|276) [ALGB] (1) Real $FUN_13 (146|277) [ALGB] (1) Real $FUN_15 (147|278) [ALGB] (1) Real $FUN_16 (148|279) [ALGB] (1) Real $FUN_17 (149|280) [DDER] (1) Real $DER.aimc.i_0_s (StateSelect = avoid) (150|281) [DDER] (2) Real[2] $DER.aimc.ir (StateSelect = avoid) (151|283) [DER-] (1) Real $DER.aimc.phiMechanical (152|284) [DDER] (1) Real $DER.idealGearR2T.flangeR.phi (StateSelect = avoid) (153|285) [DER-] (1) Real $DER.aimc.inertiaRotor.w (154|286) [DDER] (1) Real $DER.aimc.inertiaStator.w (StateSelect = avoid) (155|287) [DDER] (1) Real $DER.aimc.friction.phi (StateSelect = avoid) (156|288) [DDER] (2) Real[2] $DER.aimc.lssigma.i_ (StateSelect = avoid) (157|290) [DDER] (1) Real $DER.aimc.strayLoad.phi (StateSelect = avoid) (158|291) [DDER] (2) Real[2] $DER.aimc.airGap.psi_ms (StateSelect = avoid) (159|293) [DDER] (2) Real[2] $DER.aimc.airGap.psi_mr (StateSelect = avoid) (160|295) [DER-] (1) Real $DER.vfController.x (161|296) [DDER] (1) Real $DER.mass.s (StateSelect = avoid) (162|297) [DDER] (1) Real $DER.mass.v (StateSelect = avoid) (163|298) [DDER] (1) Real $DER.signForce.s (StateSelect = avoid) (164|299) [DER-] (2) final Real[2] $DER.aimc.idq_rr (165|301) [DER-] (2) final Real[2] $DER.aimc.idq_sr (166|303) [PRE-] (1) discrete Real $PRE.dutyCycle.nextTimeEvent (167|304) [PRE-] (1) discrete Real $PRE.dutyCycle.nextTimeEventScaled (168|305) [DISC] (1) Boolean $SEV_1 (169|306) [DISC] (1) Boolean $SEV_0 (170|307) [DISC] (1) Real $TEV_0 (171|308) [DDER] (3) Real[3] $DER.aimc.spacePhasorS.i (StateSelect = avoid) (172|311) [DDER] (3) flow Real[3] $DER.aimc.spacePhasorS.plug_n.pin.i (StateSelect = avoid) (173|314) [DDER] (2) final Real[2] $DER.aimc.idq_ss (StateSelect = avoid) (174|316) [DDER] (3) flow Real[3] $DER.terminalBox.plug_sn.pin.i (StateSelect = avoid) (175|319) [DDER] (3) flow Real[3] $DER.terminalBox.star.plug_p.pin.i (StateSelect = avoid) (176|322) [DDER] (4) Real[2, 2] $DER.aimc.airGap.RotationMatrix (StateSelect = avoid) (177|326) [DDER] (2) flow Real[2] $DER.aimc.statorCore.spacePhasor.i_ (StateSelect = avoid) (178|328) [DDER] (1) Real $DER.aimc.airGap.gamma (StateSelect = avoid) (179|329) [DDER] (2) Real[2] $DER.aimc.airGap.i_ms (StateSelect = avoid) (180|331) [DDER] (2) flow Real[2] $DER.aimc.lssigma.spacePhasor_b.i_ (StateSelect = avoid) (181|333) [DDER] (1) Real $DER.$FUN_4 (StateSelect = avoid) (182|334) [DDER] (2) final Real[2] $DER.aimc.idq_rs (StateSelect = avoid) (183|336) [DDER] (1) Real $DER.$FUN_5 (StateSelect = avoid) (184|337) [DDER] (3) flow Real[3] $DER.aimc.plug_sn.pin.i (StateSelect = avoid) (185|340) [DDER] (2) flow Real[2] $DER.aimc.spacePhasorS.spacePhasor.i_ (StateSelect = avoid) (186|342) [PRMT] (1) protected Real aimc.internalThermalPort.heatPortRotorWinding.T = aimc.thermalAmbient.constTr.k (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (187|343) [PRMT] (1) Real aimc.squirrelCageR.T_heatPort = aimc.thermalAmbient.constTr.k (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (188|344) [PRMT] (1) Real aimc.squirrelCageR.heatPort.T = aimc.thermalAmbient.constTr.k (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (189|345) [PRMT] (1) Real aimc.thermalAmbient.thermalPort.heatPortRotorWinding.T = aimc.thermalAmbient.constTr.k (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (190|346) [PRMT] (1) Real aimc.thermalAmbient.temperatureRotorWinding.port.T = aimc.thermalAmbient.constTr.k (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (191|347) [PRMT] (1) Real aimc.thermalAmbient.temperatureRotorWinding.T = aimc.thermalAmbient.constTr.k (fixed = true, start = aimc.thermalAmbient.constTr.k) (192|348) [PRMT] (1) Real aimc.thermalAmbient.constTr.y = aimc.thermalAmbient.constTr.k (fixed = true, start = aimc.thermalAmbient.constTr.k) (193|349) [PRMT] (1) Real aimc.thermalAmbient.thermalCollectorStator.port_b.T = aimc.thermalAmbient.constTs.k (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (194|350) [PRMT] (1) Real aimc.thermalAmbient.temperatureStatorWinding.port.T = aimc.thermalAmbient.constTs.k (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (195|351) [PRMT] (1) Real aimc.thermalAmbient.temperatureStatorWinding.T = aimc.thermalAmbient.constTs.k (fixed = true, start = aimc.thermalAmbient.constTs.k) (196|352) [PRMT] (1) Real aimc.thermalAmbient.constTs.y = aimc.thermalAmbient.constTs.k (fixed = true, start = aimc.thermalAmbient.constTs.k) (197|353) [PRMT] (1) protected Real aimc.internalThermalPort.heatPortStrayLoad.T = aimc.thermalAmbient.temperatureStrayLoad.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (198|354) [PRMT] (1) Real aimc.strayLoad.heatPort.T = aimc.thermalAmbient.temperatureStrayLoad.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (199|355) [PRMT] (1) Real aimc.thermalAmbient.thermalPort.heatPortStrayLoad.T = aimc.thermalAmbient.temperatureStrayLoad.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (200|356) [PRMT] (1) Real aimc.thermalAmbient.temperatureStrayLoad.port.T = aimc.thermalAmbient.temperatureStrayLoad.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (201|357) [PRMT] (1) protected Real aimc.internalThermalPort.heatPortFriction.T = aimc.thermalAmbient.temperatureFriction.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (202|358) [PRMT] (1) Real aimc.friction.heatPort.T = aimc.thermalAmbient.temperatureFriction.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (203|359) [PRMT] (1) Real aimc.thermalAmbient.thermalPort.heatPortFriction.T = aimc.thermalAmbient.temperatureFriction.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (204|360) [PRMT] (1) Real aimc.thermalAmbient.temperatureFriction.port.T = aimc.thermalAmbient.temperatureFriction.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (205|361) [PRMT] (1) protected Real aimc.internalThermalPort.heatPortStatorCore.T = aimc.thermalAmbient.temperatureStatorCore.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (206|362) [PRMT] (1) Real aimc.statorCore.heatPort.T = aimc.thermalAmbient.temperatureStatorCore.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (207|363) [PRMT] (1) Real aimc.thermalAmbient.thermalPort.heatPortStatorCore.T = aimc.thermalAmbient.temperatureStatorCore.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (208|364) [PRMT] (1) Real aimc.thermalAmbient.temperatureStatorCore.port.T = aimc.thermalAmbient.temperatureStatorCore.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (209|365) [PRMT] (1) protected Real aimc.internalThermalPort.heatPortRotorCore.T = aimc.thermalAmbient.temperatureRotorCore.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (210|366) [PRMT] (1) Real aimc.thermalAmbient.thermalPort.heatPortRotorCore.T = aimc.thermalAmbient.temperatureRotorCore.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (211|367) [PRMT] (1) Real aimc.thermalAmbient.temperatureRotorCore.port.T = aimc.thermalAmbient.temperatureRotorCore.T (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (212|368) [PRMT] (1) protected Real aimc.internalSupport.phi = aimc.fixed.phi0 (fixed = true, start = aimc.fixed.phi0) (213|369) [PRMT] (1) Real aimc.strayLoad.support.phi = aimc.fixed.phi0 (fixed = true, start = aimc.fixed.phi0) (214|370) [PRMT] (1) Real aimc.airGap.support.phi = aimc.fixed.phi0 (fixed = true, start = aimc.fixed.phi0) (215|371) [PRMT] (1) Real aimc.inertiaStator.flange_b.phi = aimc.fixed.phi0 (fixed = true, start = aimc.fixed.phi0) (216|372) [PRMT] (1) Real aimc.inertiaStator.phi = aimc.fixed.phi0 (fixed = true, start = aimc.fixed.phi0, StateSelect = default) (217|373) [PRMT] (1) Real aimc.inertiaStator.flange_a.phi = aimc.fixed.phi0 (fixed = true, start = aimc.fixed.phi0) (218|374) [PRMT] (1) Real aimc.friction.support.phi = aimc.fixed.phi0 (fixed = true, start = aimc.fixed.phi0) (219|375) [PRMT] (1) Real aimc.fixed.flange.phi = aimc.fixed.phi0 (fixed = true, start = aimc.fixed.phi0) (220|376) [PRMT] (1) protected Real idealGearR2T.internalSupportR.phi = idealGearR2T.fixedR.phi0 (fixed = true, start = idealGearR2T.fixedR.phi0) (221|377) [PRMT] (1) protected Real idealGearR2T.internalSupportR.flange.phi = idealGearR2T.fixedR.phi0 (fixed = true, start = idealGearR2T.fixedR.phi0) (222|378) [PRMT] (1) protected Real idealGearR2T.fixedR.flange.phi = idealGearR2T.fixedR.phi0 (fixed = true, start = idealGearR2T.fixedR.phi0) (223|379) [PRMT] (1) protected Real idealGearR2T.internalSupportT.s = idealGearR2T.fixedT.s0 (fixed = true, start = idealGearR2T.fixedT.s0) (224|380) [PRMT] (1) protected Real idealGearR2T.internalSupportT.flange.s = idealGearR2T.fixedT.s0 (fixed = true, start = idealGearR2T.fixedT.s0) (225|381) [PRMT] (1) protected Real idealGearR2T.fixedT.flange.s = idealGearR2T.fixedT.s0 (fixed = true, start = idealGearR2T.fixedT.s0) (226|382) [PRMT] (1) final Real aimc.statorCore.w = aimc.statorCoreParameters.wRef (fixed = true, start = aimc.statorCoreParameters.wRef) (227|383) [PRMT] (1) Real[1] $FUN_30 (fixed = {false for $i68 in 1:1}) (228|384) [PRMT] (1) Real $FUN_29 (fixed = false) (229|385) [PRMT] (1) Real $FUN_28 (fixed = false) (230|386) [PRMT] (3) Real[3] $FUN_27 (fixed = {false for $i69 in 1:3}) (231|389) [PRMT] (3) Real[3] $FUN_26 (fixed = {false for $i70 in 1:3}) (232|392) [PRMT] (3) Real[3] $FUN_25 (fixed = {false for $i71 in 1:3}) (233|395) [PRMT] (3) Real[3] $FUN_24 (fixed = {false for $i72 in 1:3}) (234|398) [PRMT] (1) Real $FUN_23 (fixed = false) (235|399) [PRMT] (3) Real[3] $FUN_22 (fixed = {false for $i73 in 1:3}) (236|402) [PRMT] (3) Real[3] $FUN_21 (fixed = {false for $i74 in 1:3}) (237|405) [PRMT] (3) Real[3] $FUN_20 (fixed = {false for $i75 in 1:3}) (238|408) [PRMT] (3) Real[3] $FUN_19 (fixed = {false for $i76 in 1:3}) (239|411) [PRMT] (1) Real $FUN_18 (fixed = false) (240|412) [PRMT] (1) parameter Real signForce.v0 = wNominal * 0.01 * r (fixed = true, start = 0.1, min = 2.220446049250313e-16) (241|413) [PRMT] (1) parameter Real signForce.f_nominal = -TLoad / r (fixed = true) (242|414) [PRMT] (1) parameter Real mass.m = JLoad / r ^ 2.0 (fixed = true, start = 1.0, min = 0.0) (243|415) [PRMT] (1) parameter Real idealGearR2T.ratio = 1.0 / r (fixed = true, start = 1.0) (244|416) [PRMT] (1) parameter Real gain.k = fNominal (fixed = true, start = 1.0) (245|417) [PRMT] (1) parameter Real aimcData.Lrsigma = 0.10177640614116878 / (aimcData.fsNominal * 6.283185307179586) (fixed = true) (246|418) [PRMT] (1) parameter Real aimcData.Lm = 2.898223593858831 / (aimcData.fsNominal * 6.283185307179586) (fixed = true) (247|419) [PRMT] (1) final parameter Real aimcData.strayLoadParameters.tauRef = if aimcData.strayLoadParameters.PRef <= 0.0 then 0.0 else aimcData.strayLoadParameters.PRef / aimcData.strayLoadParameters.wRef (fixed = true, start = if aimcData.strayLoadParameters.PRef <= 0.0 then 0.0 else aimcData.strayLoadParameters.PRef / aimcData.strayLoadParameters.wRef) (248|420) [PRMT] (1) parameter Real aimcData.strayLoadParameters.wRef = (aimcData.fsNominal * 6.283185307179586) / CAST(Real, aimcData.p) (fixed = true, start = (aimcData.fsNominal * 6.283185307179586) / CAST(Real, aimcData.p), min = 2.2250738585072014e-308) (249|421) [PRMT] (1) final parameter Real aimcData.statorCoreParameters.wMin = 1e-6 * aimcData.statorCoreParameters.wRef (fixed = true, start = 1e-6 * aimcData.statorCoreParameters.wRef) (250|422) [PRMT] (1) final parameter Real aimcData.statorCoreParameters.GcRef = if aimcData.statorCoreParameters.PRef <= 0.0 then 0.0 else aimcData.statorCoreParameters.PRef / (aimcData.statorCoreParameters.VRef ^ 2.0 * 3.0) (fixed = true, start = if aimcData.statorCoreParameters.PRef <= 0.0 then 0.0 else aimcData.statorCoreParameters.PRef / (aimcData.statorCoreParameters.VRef ^ 2.0 * 3.0)) (251|423) [PRMT] (1) parameter Real aimcData.statorCoreParameters.wRef = 6.283185307179586 * aimcData.fsNominal (fixed = true, start = 6.283185307179586 * aimcData.fsNominal, min = 2.2250738585072014e-308) (252|424) [PRMT] (1) final parameter Real aimcData.frictionParameters.tauLinear = if aimcData.frictionParameters.PRef <= 0.0 then 0.0 else (aimcData.frictionParameters.wLinear / aimcData.frictionParameters.wRef) ^ aimcData.frictionParameters.power_w * aimcData.frictionParameters.tauRef (fixed = true, start = if aimcData.frictionParameters.PRef <= 0.0 then 0.0 else (aimcData.frictionParameters.wLinear / aimcData.frictionParameters.wRef) ^ aimcData.frictionParameters.power_w * aimcData.frictionParameters.tauRef) (253|425) [PRMT] (1) final parameter Real aimcData.frictionParameters.wLinear = aimcData.frictionParameters.linear * aimcData.frictionParameters.wRef (fixed = true, start = aimcData.frictionParameters.linear * aimcData.frictionParameters.wRef) (254|426) [PRMT] (1) final parameter Real aimcData.frictionParameters.tauRef = if aimcData.frictionParameters.PRef <= 0.0 then 0.0 else aimcData.frictionParameters.PRef / aimcData.frictionParameters.wRef (fixed = true, start = if aimcData.frictionParameters.PRef <= 0.0 then 0.0 else aimcData.frictionParameters.PRef / aimcData.frictionParameters.wRef) (255|427) [PRMT] (1) parameter Real aimcData.frictionParameters.wRef = (aimcData.fsNominal * 6.283185307179586) / CAST(Real, aimcData.p) (fixed = true, start = (aimcData.fsNominal * 6.283185307179586) / CAST(Real, aimcData.p), min = 2.2250738585072014e-308) (256|428) [PRMT] (1) parameter Real aimcData.Lssigma = 0.10177640614116878 / (aimcData.fsNominal * 6.283185307179586) (fixed = true) (257|429) [PRMT] (1) parameter Real aimcData.Lszero = aimcData.Lssigma (fixed = true) (258|430) [PRMT] (1) parameter Real aimcData.Js = aimcData.Jr (fixed = true) (259|431) [PRMT] (1) parameter Real vfController.fNominal = fNominal (fixed = true) (260|432) [PRMT] (1) parameter Real vfController.VNominal = VNominal (fixed = true) (261|433) [PRMT] (1) protected final parameter Real[1] dutyCycle.p_offset = $FUN_30 .* dutyCycle.offset[1] (fixed = {true for $i42 in 1:1}) (262|434) [PRMT] (1) final parameter Real dutyCycle.t_maxScaled = $FUN_29 (fixed = true) (263|435) [PRMT] (1) final parameter Real dutyCycle.t_minScaled = $FUN_28 (fixed = true) (264|436) [PRMT] (1) final parameter Real dutyCycle.t_max = dutyCycle.t_maxScaled (fixed = true) (265|437) [PRMT] (1) final parameter Real dutyCycle.t_min = dutyCycle.t_minScaled (fixed = true) (266|438) [PRMT] (1) parameter Real dutyCycle.shiftTime = dutyCycle.startTime (fixed = true) (267|439) [PRMT] (6) protected parameter Real[3, 2] currentQuasiRMSSensor.ToSpacePhasor1.InverseTransformation = {{$FUN_26[k], -$FUN_27[k]} for k in 1:3} (fixed = {true for $i47 in 1:3, $i48 in 1:2}) (268|445) [PRMT] (6) protected parameter Real[2, 3] currentQuasiRMSSensor.ToSpacePhasor1.TransformationMatrix = 0.6666666666666666 * {{$FUN_24[$i0] for $i0 in 1:3}, {$FUN_25[$i1] for $i1 in 1:3}} (fixed = {true for $i49 in 1:2, $i50 in 1:3}) (269|451) [PRMT] (1) parameter Real aimc.squirrelCageR.T = aimc.squirrelCageR.T_ref (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (270|452) [PRMT] (1) final parameter Real aimc.squirrelCageR.alpha = $FUN_23 (fixed = true) (271|453) [PRMT] (1) final parameter Real aimc.squirrelCageR.T_ref = aimc.TrRef (fixed = true, start = 288.15, min = 0.0, nominal = 300.0) (272|454) [PRMT] (1) final parameter Real aimc.squirrelCageR.Rr = aimc.Rr (fixed = true) (273|455) [PRMT] (1) final parameter Real aimc.squirrelCageR.Lrsigma = aimc.Lrsigma (fixed = true) (274|456) [PRMT] (1) parameter Real aimc.alpha20r = aimcData.alpha20r (fixed = true, start = 0.0) (275|457) [PRMT] (1) parameter Real aimc.TrRef = aimcData.TrRef (fixed = true, start = 293.15, min = 0.0, nominal = 300.0) (276|458) [PRMT] (1) parameter Real aimc.Rr = aimcData.Rr (fixed = true, start = 0.04 * aimc.ZsRef) (277|459) [PRMT] (1) parameter Real aimc.Lrsigma = aimcData.Lrsigma (fixed = true, start = (0.03392546871372293 * 3.0 * aimc.ZsRef) / (aimc.fsNominal * 6.283185307179586)) (278|460) [PRMT] (1) parameter Real aimc.Lm = aimcData.Lm (fixed = true, start = (0.9660745312862771 * 3.0 * aimc.ZsRef) / (aimc.fsNominal * 6.283185307179586)) (279|461) [PRMT] (4) protected parameter Real[2, 2] aimc.airGap.L = {{aimc.airGap.Lm, 0.0}, {0.0, aimc.airGap.Lm}} (fixed = {true for $i52 in 1:2, $i53 in 1:2}) (280|465) [PRMT] (1) final parameter Integer aimc.airGap.p = aimc.p (fixed = true, min = 1) (281|466) [PRMT] (1) final parameter Real aimc.airGap.Lm = aimc.Lm (fixed = true) (282|467) [PRMT] (1) final parameter Real aimc.thermalAmbient.constTr.k = aimc.thermalAmbient.Tr (fixed = true, start = 1.0) (283|468) [PRMT] (1) final parameter Real aimc.thermalAmbient.Tr = aimc.TrOperational (fixed = true, start = 293.15, min = 0.0, nominal = 300.0) (284|469) [PRMT] (1) final parameter Real aimc.thermalAmbient.constTs.k = aimc.thermalAmbient.Ts (fixed = true, start = 1.0) (285|470) [PRMT] (1) final parameter Real aimc.thermalAmbient.Ts = aimc.TsOperational (fixed = true, start = 293.15, min = 0.0, nominal = 300.0) (286|471) [PRMT] (6) protected parameter Real[2, 3] aimc.spacePhasorS.TransformationMatrix = 0.6666666666666666 * {{$FUN_21[k] for k in 1:3}, {$FUN_22[k] for k in 1:3}} (fixed = {true for $i54 in 1:2, $i55 in 1:3}) (287|477) [PRMT] (6) protected parameter Real[3, 2] aimc.spacePhasorS.InverseTransformation = {{$FUN_19[k], -$FUN_20[k]} for k in 1:3} (fixed = {true for $i56 in 1:3, $i57 in 1:2}) (288|483) [PRMT] (1) final parameter Real aimc.lszero.L = aimc.Lszero (fixed = true, start = 1.0) (289|484) [PRMT] (2) final parameter Real[2] aimc.lssigma.L = {aimc.Lssigma for $f1 in 1:2} (fixed = {true for $i58 in 1:2}) (290|486) [PRMT] (3) final parameter Real[3] aimc.rs.resistor.T = {aimc.rs.T[$resistor1] for $resistor1 in 1:3} (fixed = {true for $i59 in 1:3}, start = {288.15 for $f2 in 1:3}, min = {0.0 for $f3 in 1:3}, nominal = {300.0 for $f1 in 1:3}) (291|489) [PRMT] (3) final parameter Real[3] aimc.rs.resistor.alpha = {aimc.rs.alpha[$resistor1] for $resistor1 in 1:3} (fixed = {true for $i61 in 1:3}) (292|492) [PRMT] (3) final parameter Real[3] aimc.rs.resistor.T_ref = {aimc.rs.T_ref[$resistor1] for $resistor1 in 1:3} (fixed = {true for $i62 in 1:3}, start = {288.15 for $f2 in 1:3}, min = {0.0 for $f3 in 1:3}, nominal = {300.0 for $f1 in 1:3}) (293|495) [PRMT] (3) final parameter Real[3] aimc.rs.resistor.R = {aimc.rs.R[$resistor1] for $resistor1 in 1:3} (fixed = {true for $i63 in 1:3}, start = {1.0 for $f1 in 1:3}) (294|498) [PRMT] (3) final parameter Real[3] aimc.rs.T = {aimc.TsRef for $f1 in 1:3} (fixed = {true for $i64 in 1:3}, start = {288.15 for $f3 in 1:3}, min = {0.0 for $f4 in 1:3}, nominal = {300.0 for $f2 in 1:3}) (295|501) [PRMT] (3) final parameter Real[3] aimc.rs.alpha = {$FUN_18 for $f1 in 1:3} (fixed = {true for $i65 in 1:3}) (296|504) [PRMT] (3) final parameter Real[3] aimc.rs.T_ref = {aimc.TsRef for $f1 in 1:3} (fixed = {true for $i66 in 1:3}, start = {288.15 for $f3 in 1:3}, min = {0.0 for $f4 in 1:3}, nominal = {300.0 for $f2 in 1:3}) (297|507) [PRMT] (3) final parameter Real[3] aimc.rs.R = {aimc.Rs for $f1 in 1:3} (fixed = {true for $i67 in 1:3}, start = {1.0 for $f2 in 1:3}) (298|510) [PRMT] (1) final parameter Real aimc.inertiaStator.J = aimc.Js (fixed = true, start = 1.0, min = 0.0) (299|511) [PRMT] (1) final parameter Real aimc.inertiaRotor.J = aimc.Jr (fixed = true, start = 1.0, min = 0.0) (300|512) [PRMT] (1) parameter Real aimc.Js = aimcData.Js (fixed = true) (301|513) [PRMT] (1) parameter Real aimc.Jr = aimcData.Jr (fixed = true, start = 0.29) (302|514) [PRMT] (1) parameter Real aimc.Lssigma = aimcData.Lssigma (fixed = true, start = (0.03392546871372293 * 3.0 * aimc.ZsRef) / (aimc.fsNominal * 6.283185307179586)) (303|515) [PRMT] (1) parameter Real aimc.Lszero = aimcData.Lszero (fixed = true) (304|516) [PRMT] (1) parameter Real aimc.alpha20s = aimcData.alpha20s (fixed = true, start = 0.0) (305|517) [PRMT] (1) parameter Real aimc.TsRef = aimcData.TsRef (fixed = true, start = 293.15, min = 0.0, nominal = 300.0) (306|518) [PRMT] (1) parameter Real aimc.Rs = aimcData.Rs (fixed = true, start = 0.03 * aimc.ZsRef) (307|519) [PRMT] (1) parameter Real aimc.fsNominal = aimcData.fsNominal (fixed = true, start = 50.0) (308|520) [PRMT] (1) parameter Integer aimc.p = aimcData.p (fixed = true, start = 2, min = 1) (309|521) [PRMT] (1) parameter Real wNominal = (fNominal * 6.283185307179586) / CAST(Real, aimcData.p) (fixed = true) (310|522) [PRMT] (1) parameter Real fNominal = aimcData.fsNominal (fixed = true) (311|523) [PRMT] (1) final parameter Real aimc.strayLoad.strayLoadParameters.PRef = aimc.strayLoadParameters.PRef (fixed = true, min = 0.0) (312|524) [PRMT] (1) final parameter Real aimc.strayLoad.strayLoadParameters.IRef = aimc.strayLoadParameters.IRef (fixed = true, min = 2.2250738585072014e-308) (313|525) [PRMT] (1) final parameter Real aimc.strayLoad.strayLoadParameters.wRef = aimc.strayLoadParameters.wRef (fixed = true, min = 2.2250738585072014e-308) (314|526) [PRMT] (1) final parameter Real aimc.strayLoad.strayLoadParameters.power_w = aimc.strayLoadParameters.power_w (fixed = true, min = 2.2250738585072014e-308) (315|527) [PRMT] (1) final parameter Real aimc.strayLoad.strayLoadParameters.tauRef = aimc.strayLoadParameters.tauRef (fixed = true) (316|528) [PRMT] (1) final parameter Integer aimc.statorCore.coreParameters.m = 3 (fixed = true) (317|529) [PRMT] (1) final parameter Real aimc.statorCore.coreParameters.PRef = aimc.statorCoreParameters.PRef (fixed = true, min = 0.0) (318|530) [PRMT] (1) final parameter Real aimc.statorCore.coreParameters.VRef = aimc.statorCoreParameters.VRef (fixed = true, min = 2.2250738585072014e-308) (319|531) [PRMT] (1) final parameter Real aimc.statorCore.coreParameters.wRef = aimc.statorCoreParameters.wRef (fixed = true, min = 2.2250738585072014e-308) (320|532) [PRMT] (1) final parameter Real aimc.statorCore.coreParameters.ratioHysteresis = aimc.statorCoreParameters.ratioHysteresis (fixed = true, start = 0.775, min = 0.0, max = 1.0) (321|533) [PRMT] (1) final parameter Real aimc.statorCore.coreParameters.GcRef = aimc.statorCoreParameters.GcRef (fixed = true) (322|534) [PRMT] (1) final parameter Real aimc.statorCore.coreParameters.wMin = aimc.statorCoreParameters.wMin (fixed = true) (323|535) [PRMT] (1) parameter Real aimc.strayLoadParameters.PRef = aimcData.strayLoadParameters.PRef (fixed = true, min = 0.0) (324|536) [PRMT] (1) parameter Real aimc.strayLoadParameters.IRef = aimcData.strayLoadParameters.IRef (fixed = true, start = 100.0, min = 2.2250738585072014e-308) (325|537) [PRMT] (1) parameter Real aimc.strayLoadParameters.wRef = aimcData.strayLoadParameters.wRef (fixed = true, min = 2.2250738585072014e-308) (326|538) [PRMT] (1) parameter Real aimc.strayLoadParameters.power_w = aimcData.strayLoadParameters.power_w (fixed = true, min = 2.2250738585072014e-308) (327|539) [PRMT] (1) final parameter Real aimc.strayLoadParameters.tauRef = aimcData.strayLoadParameters.tauRef (fixed = true) (328|540) [PRMT] (1) final parameter Integer aimc.statorCoreParameters.m = 3 (fixed = true) (329|541) [PRMT] (1) parameter Real aimc.statorCoreParameters.PRef = aimcData.statorCoreParameters.PRef (fixed = true, min = 0.0) (330|542) [PRMT] (1) parameter Real aimc.statorCoreParameters.VRef = aimcData.statorCoreParameters.VRef (fixed = true, start = 100.0, min = 2.2250738585072014e-308) (331|543) [PRMT] (1) parameter Real aimc.statorCoreParameters.wRef = aimcData.statorCoreParameters.wRef (fixed = true, min = 2.2250738585072014e-308) (332|544) [PRMT] (1) final parameter Real aimc.statorCoreParameters.ratioHysteresis = aimcData.statorCoreParameters.ratioHysteresis (fixed = true, start = 0.775, min = 0.0, max = 1.0) (333|545) [PRMT] (1) final parameter Real aimc.statorCoreParameters.GcRef = aimcData.statorCoreParameters.GcRef (fixed = true) (334|546) [PRMT] (1) final parameter Real aimc.statorCoreParameters.wMin = aimcData.statorCoreParameters.wMin (fixed = true) (335|547) [PRMT] (1) final parameter Real aimc.friction.frictionParameters.PRef = aimc.frictionParameters.PRef (fixed = true, min = 0.0) (336|548) [PRMT] (1) final parameter Real aimc.friction.frictionParameters.wRef = aimc.frictionParameters.wRef (fixed = true, min = 2.2250738585072014e-308) (337|549) [PRMT] (1) final parameter Real aimc.friction.frictionParameters.power_w = aimc.frictionParameters.power_w (fixed = true, min = 2.2250738585072014e-308) (338|550) [PRMT] (1) final parameter Real aimc.friction.frictionParameters.tauRef = aimc.frictionParameters.tauRef (fixed = true) (339|551) [PRMT] (1) final parameter Real aimc.friction.frictionParameters.linear = aimc.frictionParameters.linear (fixed = true) (340|552) [PRMT] (1) final parameter Real aimc.friction.frictionParameters.wLinear = aimc.frictionParameters.wLinear (fixed = true) (341|553) [PRMT] (1) final parameter Real aimc.friction.frictionParameters.tauLinear = aimc.frictionParameters.tauLinear (fixed = true) (342|554) [PRMT] (1) parameter Real aimc.frictionParameters.PRef = aimcData.frictionParameters.PRef (fixed = true, min = 0.0) (343|555) [PRMT] (1) parameter Real aimc.frictionParameters.wRef = aimcData.frictionParameters.wRef (fixed = true, min = 2.2250738585072014e-308) (344|556) [PRMT] (1) parameter Real aimc.frictionParameters.power_w = aimcData.frictionParameters.power_w (fixed = true, min = 2.2250738585072014e-308) (345|557) [PRMT] (1) final parameter Real aimc.frictionParameters.tauRef = aimcData.frictionParameters.tauRef (fixed = true) (346|558) [PRMT] (1) final parameter Real aimc.frictionParameters.linear = aimcData.frictionParameters.linear (fixed = true) (347|559) [PRMT] (1) final parameter Real aimc.frictionParameters.wLinear = aimcData.frictionParameters.wLinear (fixed = true) (348|560) [PRMT] (1) final parameter Real aimc.frictionParameters.tauLinear = aimcData.frictionParameters.tauLinear (fixed = true) (349|561) [EXTO] (1) protected parameter Modelica.Blocks.Types.ExternalCombiTimeTable dutyCycle.tableID = Modelica.Blocks.Types.ExternalCombiTimeTable.constructor(\"NoName\", \"NoName\", dutyCycle.table, dutyCycle.startTime, dutyCycle.columns, Modelica.Blocks.Types.Smoothness.LinearSegments, Modelica.Blocks.Types.Extrapolation.Periodic, dutyCycle.shiftTime, dutyCycle.timeEvents, false, dutyCycle.delimiter, dutyCycle.nHeaderLines) (fixed = true) System Equations (346/549) **************************** (1|1) [ARRY] (2) aimc.ir = fill(0.0, 2); ($RES_SIM_0) (2|3) [ARRY] (2) aimc.is[{1, 2}] = fill(0.0, 2); ($RES_SIM_1) (3|5) [SCAL] (1) signForce.s = mass.s + 0.5 * mass.L; ($RES_SIM_3) (4|6) [SCAL] (1) signForce.f = -signForce.f_nominal * ((-1.0) + 2.0 / (1.0 + $FUN_13)); ($RES_SIM_5) (5|7) [SCAL] (1) signForce.v = $DER.signForce.s; ($RES_SIM_6) (6|8) [SCAL] (1) mass.m * mass.a = mass.flange_a.f - signForce.f; ($RES_SIM_9) (7|9) [SCAL] (1) mass.a = $DER.mass.v; ($RES_SIM_10) (8|10) [SCAL] (1) mass.v = $DER.mass.s; ($RES_SIM_11) (9|11) [SCAL] (1) 0.0 = idealGearR2T.ratio * aimc.tauShaft - mass.flange_a.f; ($RES_SIM_12) (10|12) [SCAL] (1) idealGearR2T.flangeR.phi - idealGearR2T.fixedR.phi0 = idealGearR2T.ratio * ((mass.s - 0.5 * mass.L) - idealGearR2T.fixedT.s0); ($RES_SIM_13) (11|13) [SCAL] (1) vfController.u = gain.k * gain.u; ($RES_SIM_20) (12|14) [FOR-] (3) ($RES_SIM_22) (12|14) [----] for $i1 in 1:3 loop (12|14) [----] [SCAL] (1) signalVoltage.signalVoltage[$i1].i = signalVoltage.signalVoltage[$i1].p.i; ($RES_SIM_23) (12|14) [----] end for; (13|17) [FOR-] (3) ($RES_SIM_24) (13|17) [----] for $i1 in 1:3 loop (13|17) [----] [SCAL] (1) 0.0 = signalVoltage.signalVoltage[$i1].p.i + signalVoltage.signalVoltage[$i1].n.i; ($RES_SIM_25) (13|17) [----] end for; (14|20) [FOR-] (3) ($RES_SIM_26) (14|20) [----] for $i1 in 1:3 loop (14|20) [----] [SCAL] (1) vfController.y[$i1] = currentQuasiRMSSensor.plug_p.pin[$i1].v - star.plug_p.pin[$i1].v; ($RES_SIM_27) (14|20) [----] end for; (15|23) [ARRY] (3) vfController.y = vfController.amplitude * $FUN_12; ($RES_SIM_28) (16|26) [SCAL] (1) $DER.vfController.x = 6.283185307179586 * vfController.u; ($RES_SIM_29) (17|27) [SCAL] (1) vfController.amplitude = 1.4142135623730951 * vfController.VNominal * (if $SEV_1 then $FUN_10 / vfController.fNominal else 1.0); ($RES_SIM_30) (18|28) [SCAL] (1) dutyCycle.y[1] = dutyCycle.p_offset[1] + $FUN_9; ($RES_SIM_31) (19|29) [ALGO] (1) ($RES_SIM_32) (19|29) [----] dutyCycle.nextTimeEvent := if dutyCycle.nextTimeEventScaled < 1e60 then dutyCycle.nextTimeEventScaled else 1e60; (20|30) [ALGO] (1) ($RES_SIM_33) (20|30) [----] dutyCycle.nextTimeEventScaled := Modelica.Blocks.Tables.Internal.getNextTimeEvent(dutyCycle.tableID, time); (21|31) [SCAL] (1) currentQuasiRMSSensor.ToPolar1.y[2] = if noEvent(currentQuasiRMSSensor.ToPolar1.y[1] <= 2.2250738585072014e-308) then 0.0 else $FUN_8; ($RES_SIM_35) (22|32) [SCAL] (1) currentQuasiRMSSensor.ToPolar1.y[1] = $FUN_7; ($RES_SIM_36) (23|33) [ARRY] (2) currentQuasiRMSSensor.ToSpacePhasor1.y = currentQuasiRMSSensor.ToSpacePhasor1.TransformationMatrix * currentQuasiRMSSensor.ToSpacePhasor1.u; ($RES_SIM_37) (24|35) [SCAL] (1) currentQuasiRMSSensor.I = currentQuasiRMSSensor.Gain1.k * currentQuasiRMSSensor.Gain1.u; ($RES_SIM_39) (25|36) [FOR-] (3) ($RES_SIM_40) (25|36) [----] for $i1 in 1:3 loop (25|36) [----] [SCAL] (1) currentQuasiRMSSensor.CurrentSensor1.currentSensor[$i1].n.i = -currentQuasiRMSSensor.ToSpacePhasor1.u[$i1]; ($RES_SIM_41) (25|36) [----] end for; (26|39) [FOR-] (3) ($RES_SIM_42) (26|39) [----] for $i1 in 1:3 loop (26|39) [----] [SCAL] (1) currentQuasiRMSSensor.CurrentSensor1.currentSensor[$i1].p.i = currentQuasiRMSSensor.ToSpacePhasor1.u[$i1]; ($RES_SIM_43) (26|39) [----] end for; (27|42) [FOR-] (3) ($RES_SIM_44) (27|42) [----] for $i1 in 1:3 loop (27|42) [----] [SCAL] (1) currentQuasiRMSSensor.plug_p.pin[$i1].v = aimc.plug_sp.pin[$i1].v; ($RES_SIM_45) (27|42) [----] end for; (28|45) [SCAL] (1) 0.6666666666666666 * aimc.squirrelCageR.LossPower = aimc.squirrelCageR.Rr_actual * ((-aimc.ir)[1] * (-aimc.ir)[1] + (-aimc.ir)[2] * (-aimc.ir)[2]); ($RES_SIM_46) (29|46) [ARRY] (2) aimc.airGap.spacePhasor_r.v_ = -(aimc.squirrelCageR.Rr_actual * aimc.ir + aimc.squirrelCageR.Lrsigma * $DER.aimc.ir); ($RES_SIM_47) (30|48) [SCAL] (1) aimc.squirrelCageR.Rr_actual = aimc.squirrelCageR.Rr * (1.0 + aimc.squirrelCageR.alpha * (aimc.thermalAmbient.constTr.k - aimc.squirrelCageR.T_ref)); ($RES_SIM_48) (31|49) [ALGO] (0) ($RES_SIM_49) (31|49) [----] assert(noEvent(1.0 + aimc.squirrelCageR.alpha * (aimc.thermalAmbient.constTr.k - aimc.squirrelCageR.T_ref) >= 2.220446049250313e-16), \"Temperature outside scope of model!\", AssertionLevel.error); (32|49) [SCAL] (1) aimc.tauElectrical = 1.5 * CAST(Real, aimc.airGap.p) * (aimc.idq_ss[2] * aimc.airGap.psi_ms[1] - aimc.idq_ss[1] * aimc.airGap.psi_ms[2]); ($RES_SIM_52) (33|50) [ARRY] (2) aimc.airGap.spacePhasor_r.v_ = $DER.aimc.airGap.psi_mr; ($RES_SIM_53) (34|52) [ARRY] (2) aimc.lssigma.spacePhasor_b.v_ = $DER.aimc.airGap.psi_ms; ($RES_SIM_54) (35|54) [ARRY] (2) aimc.idq_rs = aimc.airGap.RotationMatrix * aimc.idq_rr; ($RES_SIM_55) (36|56) [ARRY] (2) aimc.idq_ss = aimc.airGap.RotationMatrix * aimc.idq_sr; ($RES_SIM_57) (37|58) [SCAL] (1) aimc.airGap.gamma = CAST(Real, aimc.airGap.p) * (idealGearR2T.flangeR.phi - aimc.fixed.phi0); ($RES_SIM_60) (38|59) [ARRY] (2) aimc.airGap.psi_mr = transpose(aimc.airGap.RotationMatrix) * aimc.airGap.psi_ms; ($RES_SIM_61) (39|61) [ARRY] (2) aimc.airGap.psi_ms = aimc.airGap.L * aimc.airGap.i_ms; ($RES_SIM_62) (40|63) [ARRY] (2) aimc.airGap.i_ms = aimc.idq_ss + aimc.idq_rs; ($RES_SIM_63) (41|65) [FOR-] (3) ($RES_SIM_355) (41|65) [----] for $f5 in 1:3 loop (41|65) [----] [SCAL] (1) aimc.thermalAmbient.thermalCollectorStator.port_a[$f5].T = aimc.thermalAmbient.constTs.k; ($RES_SIM_356) (41|65) [----] end for; (42|68) [ARRY] (3) aimc.strayLoad.v = aimc.plug_sp.pin.v - aimc.strayLoad.plug_n.pin.v; ($RES_SIM_75) (43|71) [ARRY] (3) aimc.strayLoad.i + aimc.strayLoad.plug_n.pin.i = {0.0 for $f4 in 1:3}; ($RES_SIM_76) (44|74) [SCAL] (1) aimc.strayLoad.w = $DER.aimc.strayLoad.phi; ($RES_SIM_79) (45|75) [SCAL] (1) aimc.strayLoad.phi = idealGearR2T.flangeR.phi - aimc.fixed.phi0; ($RES_SIM_80) (46|76) [SCAL] (1) aimc.strayLoad.lossPower = 0.0; ($RES_SIM_81) (47|77) [FOR-] (3) ($RES_SIM_353) (47|77) [----] for $f3 in 1:3 loop (47|77) [----] [SCAL] (1) aimc.strayLoad.v[$f3] = 0.0; ($RES_SIM_354) (47|77) [----] end for; (48|80) [ARRY] (2) -aimc.spacePhasorS.spacePhasor.i_ = aimc.spacePhasorS.TransformationMatrix * aimc.spacePhasorS.i; ($RES_SIM_85) (49|82) [ARRY] (2) aimc.spacePhasorS.spacePhasor.v_ = aimc.spacePhasorS.TransformationMatrix * aimc.spacePhasorS.v; ($RES_SIM_87) (50|84) [ARRY] (3) aimc.spacePhasorS.i .* aimc.spacePhasorS.turnsRatio = -aimc.spacePhasorS.plug_n.pin.i; ($RES_SIM_89) (51|87) [ARRY] (3) aimc.spacePhasorS.i .* aimc.spacePhasorS.turnsRatio = aimc.spacePhasorS.plug_p.pin.i; ($RES_SIM_90) (52|90) [ARRY] (3) aimc.spacePhasorS.v / aimc.spacePhasorS.turnsRatio = aimc.spacePhasorS.plug_p.pin.v - aimc.plug_sn.pin.v; ($RES_SIM_91) (53|93) [SCAL] (1) aimc.statorCore.lossPower = 1.5 * (aimc.statorCore.spacePhasor.v_[1] * aimc.statorCore.spacePhasor.i_[1] + aimc.statorCore.spacePhasor.v_[2] * aimc.statorCore.spacePhasor.i_[2]); ($RES_SIM_92) (54|94) [FOR-] (2) ($RES_SIM_351) (54|94) [----] for $f2 in 1:2 loop (54|94) [----] [SCAL] (1) aimc.statorCore.spacePhasor.i_[$f2] = 0.0; ($RES_SIM_352) (54|94) [----] end for; (55|96) [SCAL] (1) aimc.lszero.v = aimc.spacePhasorS.zero.v; ($RES_SIM_95) (56|97) [SCAL] (1) -aimc.lszero.L * $DER.aimc.i_0_s = aimc.lszero.v; ($RES_SIM_98) (57|98) [SCAL] (1) aimc.lssigma.v_[2] = aimc.lssigma.L[2] * $DER.aimc.lssigma.i_[2]; ($RES_SIM_99) (58|99) [SCAL] (1) aimc.lssigma.v_[1] = aimc.lssigma.L[1] * $DER.aimc.lssigma.i_[1]; ($RES_SIM_100) (59|100) [ARRY] (2) aimc.lssigma.v_ = aimc.lssigma.spacePhasor_a.v_ - aimc.lssigma.spacePhasor_b.v_; ($RES_SIM_102) (60|102) [ARRY] (2) aimc.lssigma.i_ + aimc.lssigma.spacePhasor_b.i_ = {0.0 for $f1 in 1:2}; ($RES_SIM_103) (61|104) [ARRY] (3) aimc.rs.v = aimc.strayLoad.plug_n.pin.v - aimc.spacePhasorS.plug_p.pin.v; ($RES_SIM_105) (62|107) [FOR-] (3) ($RES_SIM_106) (62|107) [----] for $i1 in 1:3 loop (62|107) [----] [SCAL] (1) aimc.rs.resistor[$i1].v = aimc.strayLoad.plug_n.pin[$i1].v - aimc.spacePhasorS.plug_p.pin[$i1].v; ($RES_SIM_107) (62|107) [----] end for; (63|110) [FOR-] (3) ($RES_SIM_108) (63|110) [----] for $i1 in 1:3 loop (63|110) [----] [SCAL] (1) aimc.rs.resistor[$i1].i = aimc.rs.resistor[$i1].p.i; ($RES_SIM_109) (63|110) [----] end for; (64|113) [FOR-] (3) ($RES_SIM_110) (64|113) [----] for $i1 in 1:3 loop (64|113) [----] [SCAL] (1) 0.0 = aimc.rs.resistor[$i1].p.i + aimc.rs.resistor[$i1].n.i; ($RES_SIM_111) (64|113) [----] end for; (65|116) [FOR-] (3) ($RES_SIM_112) (65|116) [----] for $i1 in 1:3 loop (65|116) [----] [SCAL] (1) aimc.rs.resistor[$i1].LossPower = aimc.rs.resistor[$i1].v * aimc.rs.resistor[$i1].i; ($RES_SIM_113) (65|116) [----] end for; (66|119) [FOR-] (3) ($RES_SIM_114) (66|119) [----] for $i1 in 1:3 loop (66|119) [----] [SCAL] (1) aimc.rs.resistor[$i1].v = aimc.rs.resistor[$i1].R_actual * aimc.rs.resistor[$i1].i; ($RES_SIM_115) (66|119) [----] end for; (67|122) [FOR-] (3) ($RES_SIM_116) (67|122) [----] for $i1 in 1:3 loop (67|122) [----] [SCAL] (1) aimc.rs.resistor[$i1].R_actual = aimc.rs.resistor[$i1].R * (1.0 + aimc.rs.resistor[$i1].alpha * (aimc.rs.resistor[$i1].T_heatPort - aimc.rs.resistor[$i1].T_ref)); ($RES_SIM_117) (67|122) [----] end for; (68|125) [ALGO] (0) ($RES_SIM_118) (68|125) [----] for $i10 in 1:3 loop (68|125) [----] assert(noEvent(1.0 + aimc.rs.resistor[$i10].alpha * (aimc.rs.resistor[$i10].T_heatPort - aimc.rs.resistor[$i10].T_ref) >= 2.220446049250313e-16), \"Temperature outside scope of model!\", AssertionLevel.error); (68|125) [----] end for; (69|125) [SCAL] (1) aimc.friction.w = $DER.aimc.friction.phi; ($RES_SIM_121) (70|126) [SCAL] (1) aimc.friction.phi = idealGearR2T.flangeR.phi - aimc.fixed.phi0; ($RES_SIM_122) (71|127) [SCAL] (1) aimc.friction.lossPower = 0.0; ($RES_SIM_123) (72|128) [SCAL] (1) aimc.inertiaStator.J * aimc.inertiaStator.a = aimc.inertiaStator.flange_a.tau; ($RES_SIM_126) (73|129) [SCAL] (1) aimc.inertiaStator.a = $DER.aimc.inertiaStator.w; ($RES_SIM_127) (74|130) [SCAL] (1) aimc.inertiaStator.w = 0.0; ($RES_SIM_128) (75|131) [SCAL] (1) aimc.inertiaRotor.J * aimc.inertiaRotor.a = aimc.tauElectrical + aimc.inertiaRotor.flange_b.tau; ($RES_SIM_131) (76|132) [SCAL] (1) aimc.inertiaRotor.a = $DER.aimc.inertiaRotor.w; ($RES_SIM_132) (77|133) [SCAL] (1) aimc.inertiaRotor.w = $DER.idealGearR2T.flangeR.phi; ($RES_SIM_133) (78|134) [SCAL] (1) aimc.thermalAmbient.Q_flowRotorWinding - aimc.squirrelCageR.LossPower = 0.0; ($RES_SIM_143) (79|135) [SCAL] (1) aimc.inertiaStator.flange_a.tau + aimc.fixed.flange.tau + aimc.tauElectrical = 0.0; ($RES_SIM_144) (80|136) [FOR-] (3) ($RES_SIM_151) (80|136) [----] for $i1 in 1:3 loop (80|136) [----] [SCAL] (1) aimc.internalThermalPort.heatPortStatorWinding[$i1].Q_flow = 0.0; ($RES_SIM_152) (80|136) [----] end for; (81|139) [SCAL] (1) aimc.thermalAmbient.Q_flowStrayLoad - aimc.strayLoad.lossPower = 0.0; ($RES_SIM_160) (82|140) [SCAL] (1) aimc.tauShaft + aimc.inertiaRotor.flange_b.tau = 0.0; ($RES_SIM_161) (83|141) [SCAL] (1) aimc.thermalAmbient.Q_flowStatorCore - aimc.statorCore.lossPower = 0.0; ($RES_SIM_163) (84|142) [SCAL] (1) aimc.thermalAmbient.Q_flowFriction - aimc.friction.lossPower = 0.0; ($RES_SIM_166) (85|143) [SCAL] (1) dutyCycle.y[1] = gain.u; ($RES_SIM_172) (86|144) [FOR-] (3) ($RES_SIM_174) (86|144) [----] for $i1 in 1:3 loop (86|144) [----] [SCAL] (1) aimc.is[$i1] + terminalBox.plug_sp.pin[$i1].i = 0.0; ($RES_SIM_175) (86|144) [----] end for; (87|147) [FOR-] (3) ($RES_SIM_177) (87|147) [----] for $i1 in 1:3 loop (87|147) [----] [SCAL] (1) aimc.plug_sn.pin[$i1].i + terminalBox.plug_sn.pin[$i1].i = 0.0; ($RES_SIM_178) (87|147) [----] end for; (88|150) [FOR-] (3) ($RES_SIM_180) (88|150) [----] for $i1 in 1:3 loop (88|150) [----] [SCAL] (1) currentQuasiRMSSensor.plug_n.pin[$i1].i + terminalBox.plugSupply.pin[$i1].i = 0.0; ($RES_SIM_181) (88|150) [----] end for; (89|153) [FOR-] (3) ($RES_SIM_183) (89|153) [----] for $i1 in 1:3 loop (89|153) [----] [SCAL] (1) currentQuasiRMSSensor.plug_p.pin[$i1].i + signalVoltage.i[$i1] = 0.0; ($RES_SIM_184) (89|153) [----] end for; (90|156) [FOR-] (3) ($RES_SIM_188) (90|156) [----] for $i1 in 1:3 loop (90|156) [----] [SCAL] (1) star.plug_p.pin[$i1].i + signalVoltage.plug_n.pin[$i1].i = 0.0; ($RES_SIM_189) (90|156) [----] end for; (91|159) [FOR-] (3) ($RES_SIM_194) (91|159) [----] for $i1 in 1:3 loop (91|159) [----] [SCAL] (1) -(terminalBox.plugSupply.pin[$i1].i + terminalBox.plug_sp.pin[$i1].i) = 0.0; ($RES_SIM_195) (91|159) [----] end for; (92|162) [FOR-] (3) ($RES_SIM_197) (92|162) [----] for $i1 in 1:3 loop (92|162) [----] [SCAL] (1) terminalBox.star.plug_p.pin[$i1].i - terminalBox.plug_sn.pin[$i1].i = 0.0; ($RES_SIM_198) (92|162) [----] end for; (93|165) [SCAL] (1) -(terminalBox.star.plug_p.pin[1].i + terminalBox.star.plug_p.pin[2].i + terminalBox.star.plug_p.pin[3].i) = 0.0; ($RES_SIM_200) (94|166) [SCAL] (1) aimc.plug_sn.pin[3].v = aimc.plug_sn.pin[1].v; ($RES_SIM_201) (95|167) [SCAL] (1) aimc.plug_sn.pin[3].v = aimc.plug_sn.pin[2].v; ($RES_SIM_202) (96|168) [SCAL] (1) aimc.plug_sn.pin[3].v = terminalBox.starpoint.v; ($RES_SIM_203) (97|169) [SCAL] (1) ground.p.i - (star.plug_p.pin[1].i + star.plug_p.pin[2].i + star.plug_p.pin[3].i) = 0.0; ($RES_SIM_204) (98|170) [SCAL] (1) star.plug_p.pin[3].v = star.plug_p.pin[1].v; ($RES_SIM_205) (99|171) [SCAL] (1) star.plug_p.pin[3].v = star.plug_p.pin[2].v; ($RES_SIM_206) (100|172) [SCAL] (1) star.plug_p.pin[3].v = 0.0; ($RES_SIM_207) (101|173) [FOR-] (3) ($RES_SIM_209) (101|173) [----] for $i1 in 1:3 loop (101|173) [----] [SCAL] (1) signalVoltage.signalVoltage[$i1].n.i - signalVoltage.plug_n.pin[$i1].i = 0.0; ($RES_SIM_210) (101|173) [----] end for; (102|176) [FOR-] (3) ($RES_SIM_212) (102|176) [----] for $i1 in 1:3 loop (102|176) [----] [SCAL] (1) signalVoltage.signalVoltage[$i1].p.i - signalVoltage.i[$i1] = 0.0; ($RES_SIM_213) (102|176) [----] end for; (103|179) [SCAL] (1) currentQuasiRMSSensor.ToPolar1.y[1] = currentQuasiRMSSensor.Gain1.u; ($RES_SIM_216) (104|180) [FOR-] (3) ($RES_SIM_219) (104|180) [----] for $i1 in 1:3 loop (104|180) [----] [SCAL] (1) currentQuasiRMSSensor.CurrentSensor1.plug_n.pin[$i1].i - currentQuasiRMSSensor.plug_n.pin[$i1].i = 0.0; ($RES_SIM_220) (104|180) [----] end for; (105|183) [FOR-] (3) ($RES_SIM_222) (105|183) [----] for $i1 in 1:3 loop (105|183) [----] [SCAL] (1) currentQuasiRMSSensor.CurrentSensor1.plug_p.pin[$i1].i - currentQuasiRMSSensor.plug_p.pin[$i1].i = 0.0; ($RES_SIM_223) (105|183) [----] end for; (106|186) [FOR-] (3) ($RES_SIM_226) (106|186) [----] for $i1 in 1:3 loop (106|186) [----] [SCAL] (1) currentQuasiRMSSensor.CurrentSensor1.currentSensor[$i1].n.i - currentQuasiRMSSensor.CurrentSensor1.plug_n.pin[$i1].i = 0.0; ($RES_SIM_227) (106|186) [----] end for; (107|189) [FOR-] (3) ($RES_SIM_229) (107|189) [----] for $i1 in 1:3 loop (107|189) [----] [SCAL] (1) currentQuasiRMSSensor.CurrentSensor1.currentSensor[$i1].p.i - currentQuasiRMSSensor.CurrentSensor1.plug_p.pin[$i1].i = 0.0; ($RES_SIM_230) (107|189) [----] end for; (108|192) [SCAL] (1) (aimc.rs.heatPort[3].Q_flow + aimc.thermalAmbient.thermalPort.heatPortStatorWinding[3].Q_flow) - aimc.internalThermalPort.heatPortStatorWinding[3].Q_flow = 0.0; ($RES_SIM_238) (109|193) [SCAL] (1) (aimc.rs.heatPort[2].Q_flow + aimc.thermalAmbient.thermalPort.heatPortStatorWinding[2].Q_flow) - aimc.internalThermalPort.heatPortStatorWinding[2].Q_flow = 0.0; ($RES_SIM_239) (110|194) [SCAL] (1) (aimc.rs.heatPort[1].Q_flow + aimc.thermalAmbient.thermalPort.heatPortStatorWinding[1].Q_flow) - aimc.internalThermalPort.heatPortStatorWinding[1].Q_flow = 0.0; ($RES_SIM_240) (111|195) [SCAL] (1) aimc.thermalAmbient.thermalCollectorStator.port_a[3].T = aimc.rs.heatPort[3].T; ($RES_SIM_241) (112|196) [SCAL] (1) aimc.thermalAmbient.thermalCollectorStator.port_a[3].T = aimc.internalThermalPort.heatPortStatorWinding[3].T; ($RES_SIM_242) (113|197) [SCAL] (1) aimc.thermalAmbient.thermalCollectorStator.port_a[2].T = aimc.rs.heatPort[2].T; ($RES_SIM_243) (114|198) [SCAL] (1) aimc.thermalAmbient.thermalCollectorStator.port_a[2].T = aimc.internalThermalPort.heatPortStatorWinding[2].T; ($RES_SIM_244) (115|199) [SCAL] (1) aimc.thermalAmbient.thermalCollectorStator.port_a[1].T = aimc.rs.heatPort[1].T; ($RES_SIM_245) (116|200) [SCAL] (1) aimc.thermalAmbient.thermalCollectorStator.port_a[1].T = aimc.internalThermalPort.heatPortStatorWinding[1].T; ($RES_SIM_246) (117|201) [SCAL] (1) aimc.spacePhasorS.spacePhasor.i_[2] + aimc.statorCore.spacePhasor.i_[2] + aimc.lssigma.i_[2] = 0.0; ($RES_SIM_251) (118|202) [SCAL] (1) aimc.spacePhasorS.spacePhasor.i_[1] + aimc.statorCore.spacePhasor.i_[1] + aimc.lssigma.i_[1] = 0.0; ($RES_SIM_252) (119|203) [SCAL] (1) aimc.statorCore.spacePhasor.v_[2] = aimc.spacePhasorS.spacePhasor.v_[2]; ($RES_SIM_253) (120|204) [SCAL] (1) aimc.statorCore.spacePhasor.v_[2] = aimc.lssigma.spacePhasor_a.v_[2]; ($RES_SIM_254) (121|205) [SCAL] (1) aimc.statorCore.spacePhasor.v_[1] = aimc.spacePhasorS.spacePhasor.v_[1]; ($RES_SIM_255) (122|206) [SCAL] (1) aimc.statorCore.spacePhasor.v_[1] = aimc.lssigma.spacePhasor_a.v_[1]; ($RES_SIM_256) (123|207) [FOR-] (3) ($RES_SIM_259) (123|207) [----] for $i1 in 1:3 loop (123|207) [----] [SCAL] (1) aimc.rs.plug_n.pin[$i1].i + aimc.spacePhasorS.plug_p.pin[$i1].i = 0.0; ($RES_SIM_260) (123|207) [----] end for; (124|210) [FOR-] (3) ($RES_SIM_262) (124|210) [----] for $i1 in 1:3 loop (124|210) [----] [SCAL] (1) aimc.strayLoad.i[$i1] - aimc.is[$i1] = 0.0; ($RES_SIM_263) (124|210) [----] end for; (125|213) [FOR-] (3) ($RES_SIM_265) (125|213) [----] for $i1 in 1:3 loop (125|213) [----] [SCAL] (1) aimc.rs.i[$i1] + aimc.strayLoad.plug_n.pin[$i1].i = 0.0; ($RES_SIM_266) (125|213) [----] end for; (126|216) [FOR-] (3) ($RES_SIM_268) (126|216) [----] for $i1 in 1:3 loop (126|216) [----] [SCAL] (1) aimc.spacePhasorS.plug_n.pin[$i1].i - aimc.plug_sn.pin[$i1].i = 0.0; ($RES_SIM_269) (126|216) [----] end for; (127|219) [FOR-] (2) ($RES_SIM_278) (127|219) [----] for $i1 in 1:2 loop (127|219) [----] [SCAL] (1) aimc.idq_ss[$i1] + aimc.lssigma.spacePhasor_b.i_[$i1] = 0.0; ($RES_SIM_279) (127|219) [----] end for; (128|221) [FOR-] (2) ($RES_SIM_282) (128|221) [----] for $i1 in 1:2 loop (128|221) [----] [SCAL] (1) (-aimc.ir)[$i1] + aimc.idq_rr[$i1] = 0.0; ($RES_SIM_283) (128|221) [----] end for; (129|223) [FOR-] (3) ($RES_SIM_287) (129|223) [----] for $i1 in 1:3 loop (129|223) [----] [SCAL] (1) aimc.thermalAmbient.thermalCollectorStator.port_a[$i1].Q_flow - aimc.thermalAmbient.thermalPort.heatPortStatorWinding[$i1].Q_flow = 0.0; ($RES_SIM_288) (129|223) [----] end for; (130|226) [FOR-] (3) ($RES_SIM_296) (130|226) [----] for $i1 in 1:3 loop (130|226) [----] [SCAL] (1) aimc.rs.resistor[$i1].heatPort.Q_flow - aimc.rs.heatPort[$i1].Q_flow = 0.0; ($RES_SIM_297) (130|226) [----] end for; (131|229) [FOR-] (3) ($RES_SIM_299) (131|229) [----] for $i1 in 1:3 loop (131|229) [----] [SCAL] (1) aimc.rs.resistor[$i1].n.i - aimc.rs.plug_n.pin[$i1].i = 0.0; ($RES_SIM_300) (131|229) [----] end for; (132|232) [FOR-] (3) ($RES_SIM_302) (132|232) [----] for $i1 in 1:3 loop (132|232) [----] [SCAL] (1) aimc.rs.resistor[$i1].p.i - aimc.rs.i[$i1] = 0.0; ($RES_SIM_303) (132|232) [----] end for; (133|235) [SCAL] (1) aimc.thermalAmbient.Q_flowTotal = aimc.thermalAmbient.Q_flowStrayLoad + aimc.thermalAmbient.Q_flowStatorCore + aimc.thermalAmbient.Q_flowStatorWinding + aimc.thermalAmbient.Q_flowRotorWinding + aimc.thermalAmbient.Q_flowFriction; ($RES_BND_343) (134|236) [SCAL] (1) aimc.statorCore.wLimit = noEvent(max(noEvent($FUN_15), aimc.statorCore.coreParameters.wMin)); ($RES_BND_334) (135|237) [FOR-] (3) ($RES_BND_330) (135|237) [----] for $i1 in 1:3 loop (135|237) [----] [SCAL] (1) aimc.rs.resistor[$i1].heatPort.Q_flow = -aimc.rs.resistor[$i1].LossPower; ($RES_BND_331) (135|237) [----] end for; (136|240) [FOR-] (3) ($RES_BND_328) (136|240) [----] for $i1 in 1:3 loop (136|240) [----] [SCAL] (1) aimc.rs.heatPort[$i1].T = aimc.rs.resistor[$i1].T_heatPort; ($RES_BND_329) (136|240) [----] end for; (137|243) [ARRY] (3) aimc.vs = aimc.plug_sp.pin.v - aimc.plug_sn.pin.v; ($RES_BND_321) (138|246) [SCAL] (1) aimc.powerBalance.lossPowerRotorWinding = aimc.squirrelCageR.LossPower; ($RES_BND_320) (139|247) [SCAL] (1) aimc.powerBalance.lossPowerFriction = aimc.friction.lossPower; ($RES_BND_319) (140|248) [SCAL] (1) aimc.powerBalance.lossPowerStrayLoad = aimc.strayLoad.lossPower; ($RES_BND_318) (141|249) [SCAL] (1) aimc.powerBalance.lossPowerRotorCore = 0.0; ($RES_BND_317) (142|250) [SCAL] (1) aimc.powerBalance.lossPowerStatorCore = aimc.statorCore.lossPower; ($RES_BND_316) (143|251) [SCAL] (1) aimc.powerBalance.lossPowerStatorWinding = $FUN_16; ($RES_BND_315) (144|252) [SCAL] (1) aimc.powerBalance.lossPowerTotal = aimc.powerBalance.lossPowerFriction + aimc.powerBalance.lossPowerRotorCore + aimc.powerBalance.lossPowerStatorWinding + aimc.powerBalance.lossPowerStatorCore + aimc.powerBalance.lossPowerStrayLoad + aimc.powerBalance.lossPowerRotorWinding; ($RES_BND_314) (145|253) [SCAL] (1) aimc.powerBalance.powerInertiaRotor = aimc.inertiaRotor.a * aimc.inertiaRotor.J * aimc.inertiaRotor.w; ($RES_BND_313) (146|254) [SCAL] (1) aimc.powerBalance.powerInertiaStator = aimc.inertiaStator.a * aimc.inertiaStator.J * aimc.inertiaStator.w; ($RES_BND_312) (147|255) [SCAL] (1) aimc.powerBalance.powerMechanical = aimc.wMechanical * aimc.tauShaft; ($RES_BND_311) (148|256) [SCAL] (1) aimc.powerBalance.powerStator = $FUN_17; ($RES_BND_310) (149|257) [SCAL] (1) aimc.wMechanical = $DER.aimc.phiMechanical; ($RES_BND_306) (150|258) [SCAL] (1) aimc.phiMechanical = idealGearR2T.flangeR.phi - aimc.fixed.phi0; ($RES_BND_305) (151|259) [SCAL] (1) 3.0 * aimc.spacePhasorS.zero.v = sum(aimc.spacePhasorS.v); ($RES_AUX_374) (152|260) [SCAL] (1) -3.0 * aimc.i_0_s = sum(aimc.spacePhasorS.i); ($RES_AUX_373) (153|261) [SCAL] (1) aimc.thermalAmbient.Q_flowStatorWinding = sum(aimc.thermalAmbient.thermalCollectorStator.port_a.Q_flow); ($RES_AUX_372) (154|262) [SCAL] (1) $FUN_4 = cos(aimc.airGap.gamma); ($RES_AUX_371) (155|263) [SCAL] (1) $FUN_5 = sin(aimc.airGap.gamma); ($RES_AUX_370) (156|264) [SCAL] (1) 3.0 * currentQuasiRMSSensor.ToSpacePhasor1.zero = sum(currentQuasiRMSSensor.ToSpacePhasor1.u); ($RES_AUX_369) (157|265) [SCAL] (1) $FUN_7 = sqrt(currentQuasiRMSSensor.ToSpacePhasor1.y[1] ^ 2.0 + currentQuasiRMSSensor.ToSpacePhasor1.y[2] ^ 2.0); ($RES_AUX_368) (158|266) [SCAL] (1) $FUN_8 = atan2(currentQuasiRMSSensor.ToSpacePhasor1.y[2], currentQuasiRMSSensor.ToSpacePhasor1.y[1]); ($RES_AUX_367) (159|267) [SCAL] (1) $FUN_9 = Modelica.Blocks.Tables.Internal.getTimeTableValueNoDer2(dutyCycle.tableID, 1, time, dutyCycle.nextTimeEventScaled, $TEV_0); ($RES_AUX_366) (160|268) [SCAL] (1) $FUN_10 = abs(vfController.u); ($RES_AUX_365) (161|269) [FOR-] (3) ($RES_AUX_363) (161|269) [----] for $i2 in 1:3 loop (161|269) [----] [SCAL] (1) $FUN_11[$i2] = sin((fill(vfController.x + vfController.BasePhase, 3) + vfController.orientation)[$i2]); ($RES_AUX_364) (161|269) [----] end for; (162|272) [SCAL] (1) $FUN_13 = exp(-(100.0 * signForce.v) / signForce.v0); ($RES_AUX_361) (163|273) [SCAL] (1) aimc.strayLoad.iRMS = sqrt(sum(0.3333333333333333 .* aimc.strayLoad.i .^ 2.0)); ($RES_AUX_360) (164|274) [SCAL] (1) $FUN_15 = abs(aimc.statorCoreParameters.wRef); ($RES_AUX_359) (165|275) [SCAL] (1) $FUN_16 = sum(aimc.rs.resistor.LossPower); ($RES_AUX_358) (166|276) [SCAL] (1) $FUN_17 = Modelica.Electrical.Machines.SpacePhasors.Functions.activePower(aimc.vs, aimc.is); ($RES_AUX_357) (167|277) [SCAL] (1) $FUN_18 = aimc.alpha20s / (1.0 + aimc.alpha20s * ((-293.15) + aimc.TsRef)); ($RES_AUX_395) (168|278) [FOR-] (3) ($RES_AUX_393) (168|278) [----] for k in 1:3 loop (168|278) [----] [SCAL] (1) $FUN_19[k] = cos(-2.0943951023931953 * (CAST(Real, (-1) + k))); ($RES_AUX_394) (168|278) [----] end for; (169|281) [FOR-] (3) ($RES_AUX_391) (169|281) [----] for k in 1:3 loop (169|281) [----] [SCAL] (1) $FUN_20[k] = sin(-2.0943951023931953 * (CAST(Real, (-1) + k))); ($RES_AUX_392) (169|281) [----] end for; (170|284) [FOR-] (3) ($RES_AUX_389) (170|284) [----] for k in 1:3 loop (170|284) [----] [SCAL] (1) $FUN_21[k] = cos(2.0943951023931953 * (CAST(Real, (-1) + k))); ($RES_AUX_390) (170|284) [----] end for; (171|287) [FOR-] (3) ($RES_AUX_387) (171|287) [----] for k in 1:3 loop (171|287) [----] [SCAL] (1) $FUN_22[k] = sin(2.0943951023931953 * (CAST(Real, (-1) + k))); ($RES_AUX_388) (171|287) [----] end for; (172|290) [SCAL] (1) $FUN_23 = aimc.alpha20r / (1.0 + aimc.alpha20r * ((-293.15) + aimc.TrRef)); ($RES_AUX_386) (173|291) [FOR-] (3) ($RES_AUX_384) (173|291) [----] for $i0 in 1:3 loop (173|291) [----] [SCAL] (1) $FUN_24[$i0] = cos(currentQuasiRMSSensor.ToSpacePhasor1.phi[$i0]); ($RES_AUX_385) (173|291) [----] end for; (174|294) [FOR-] (3) ($RES_AUX_382) (174|294) [----] for $i1 in 1:3 loop (174|294) [----] [SCAL] (1) $FUN_25[$i1] = sin(currentQuasiRMSSensor.ToSpacePhasor1.phi[$i1]); ($RES_AUX_383) (174|294) [----] end for; (175|297) [FOR-] (3) ($RES_AUX_380) (175|297) [----] for k in 1:3 loop (175|297) [----] [SCAL] (1) $FUN_26[k] = cos(-currentQuasiRMSSensor.ToSpacePhasor1.phi[k]); ($RES_AUX_381) (175|297) [----] end for; (176|300) [FOR-] (3) ($RES_AUX_378) (176|300) [----] for k in 1:3 loop (176|300) [----] [SCAL] (1) $FUN_27[k] = sin(-currentQuasiRMSSensor.ToSpacePhasor1.phi[k]); ($RES_AUX_379) (176|300) [----] end for; (177|303) [SCAL] (1) $FUN_28 = Modelica.Blocks.Tables.Internal.getTimeTableTmin(dutyCycle.tableID); ($RES_AUX_377) (178|304) [SCAL] (1) $FUN_29 = Modelica.Blocks.Tables.Internal.getTimeTableTmax(dutyCycle.tableID); ($RES_AUX_376) (179|305) [SCAL] (1) $FUN_30[1] = 1.0; ($RES_SIM_404) (180|306) [FOR-] (3) ($RES_SIM_402) (180|306) [----] for $i2 in 1:3 loop (180|306) [----] [SCAL] (1) $FUN_12[$i2] = $FUN_11[$i2]; ($RES_SIM_403) (180|306) [----] end for; (181|309) [SCAL] (1) aimc.airGap.RotationMatrix[1, 2] = -$FUN_5; ($RES_SIM_398) (182|310) [SCAL] (1) aimc.airGap.RotationMatrix[1, 1] = $FUN_4; ($RES_SIM_397) (183|311) [SCAL] (1) aimc.airGap.RotationMatrix[2, 2] = $FUN_4; ($RES_SIM_401) (184|312) [SCAL] (1) aimc.airGap.RotationMatrix[2, 1] = $FUN_5; ($RES_SIM_400) (185|313) [SCAL] (1) $SEV_1 = $FUN_10 < vfController.fNominal; ($RES_EVT_510) (186|314) [SCAL] (1) $SEV_0 = time >= $PRE.dutyCycle.nextTimeEvent; ($RES_EVT_509) (187|315) [SCAL] (1) $TEV_0 = $PRE.dutyCycle.nextTimeEventScaled; ($RES_EVT_508) (188|316) [SCAL] (1) aimc.inertiaRotor.w = idealGearR2T.ratio * mass.v; ($RES_SIM_511) (189|317) [ARRY] (2) $DER.aimc.airGap.i_ms = $DER.aimc.idq_ss + $DER.aimc.idq_rs; ($RES_SIM_512) (190|319) [SCAL] (1) $DER.aimc.airGap.RotationMatrix[2, 2] = $DER.$FUN_4; ($RES_SIM_513) (191|320) [ARRY] (2) aimc.lssigma.spacePhasor_b.v_ = {{0.0, 0.0}, {0.0, 0.0}} * aimc.airGap.i_ms .+ aimc.airGap.L * $DER.aimc.airGap.i_ms; ($RES_SIM_514) (192|322) [SCAL] (1) $DER.aimc.airGap.RotationMatrix[2, 1] = $DER.$FUN_5; ($RES_SIM_515) (193|323) [ARRY] (2) aimc.airGap.spacePhasor_r.v_ = transpose($DER.aimc.airGap.RotationMatrix) * aimc.airGap.psi_ms .+ transpose(aimc.airGap.RotationMatrix) * aimc.lssigma.spacePhasor_b.v_; ($RES_SIM_516) (194|325) [FOR-] (3) ($RES_SIM_517) (194|325) [----] for $i1 in 1:3 loop (194|325) [----] [SCAL] (1) $DER.aimc.spacePhasorS.plug_n.pin[$i1].i - $DER.aimc.plug_sn.pin[$i1].i = 0.0; ($RES_SIM_518) (194|325) [----] end for; (195|328) [SCAL] (1) aimc.inertiaStator.a = 0.0; ($RES_SIM_519) (196|329) [SCAL] (1) $DER.aimc.airGap.gamma = CAST(Real, aimc.airGap.p) * aimc.inertiaRotor.w; ($RES_SIM_520) (197|330) [SCAL] (1) $DER.aimc.airGap.RotationMatrix[1, 2] = -$DER.$FUN_5; ($RES_SIM_521) (198|331) [SCAL] (1) $DER.aimc.airGap.RotationMatrix[1, 1] = $DER.$FUN_4; ($RES_SIM_522) (199|332) [FOR-] (2) ($RES_SIM_523) (199|332) [----] for $i1 in 1:2 loop (199|332) [----] [SCAL] (1) (-$DER.aimc.ir)[$i1] + $DER.aimc.idq_rr[$i1] = 0.0; ($RES_SIM_524) (199|332) [----] end for; (200|334) [SCAL] (1) aimc.friction.w = aimc.inertiaRotor.w; ($RES_SIM_525) (201|335) [ARRY] (2) $DER.aimc.idq_ss = $DER.aimc.airGap.RotationMatrix * aimc.idq_sr .+ aimc.airGap.RotationMatrix * $DER.aimc.idq_sr; ($RES_SIM_526) (202|337) [ARRY] (2) $DER.aimc.idq_rs = $DER.aimc.airGap.RotationMatrix * aimc.idq_rr .+ aimc.airGap.RotationMatrix * $DER.aimc.idq_rr; ($RES_SIM_527) (203|339) [ARRY] (2) $DER.aimc.lssigma.i_ + $DER.aimc.lssigma.spacePhasor_b.i_ = {0.0 for $f1 in 1:2}; ($RES_SIM_528) (204|341) [SCAL] (1) -($DER.terminalBox.star.plug_p.pin[1].i + $DER.terminalBox.star.plug_p.pin[2].i + $DER.terminalBox.star.plug_p.pin[3].i) = 0.0; ($RES_SIM_529) (205|342) [SCAL] (1) signForce.v = mass.v; ($RES_SIM_530) (206|343) [ARRY] (3) $DER.aimc.spacePhasorS.i .* aimc.spacePhasorS.turnsRatio = -$DER.aimc.spacePhasorS.plug_n.pin.i; ($RES_SIM_531) (207|346) [ARRY] (2) -$DER.aimc.spacePhasorS.spacePhasor.i_ = {{0.0, 0.0, 0.0}, {0.0, 0.0, 0.0}} * aimc.spacePhasorS.i .+ aimc.spacePhasorS.TransformationMatrix * $DER.aimc.spacePhasorS.i; ($RES_SIM_532) (208|348) [SCAL] (1) -3.0 * $DER.aimc.i_0_s = sum($DER.aimc.spacePhasorS.i); ($RES_SIM_533) (209|349) [SCAL] (1) aimc.strayLoad.w = aimc.inertiaRotor.w; ($RES_SIM_534) (210|350) [SCAL] (1) $DER.$FUN_4 = -sin(aimc.airGap.gamma) * $DER.aimc.airGap.gamma; ($RES_SIM_535) (211|351) [FOR-] (3) ($RES_SIM_536) (211|351) [----] for $i1 in 1:3 loop (211|351) [----] [SCAL] (1) $DER.terminalBox.star.plug_p.pin[$i1].i - $DER.terminalBox.plug_sn.pin[$i1].i = 0.0; ($RES_SIM_537) (211|351) [----] end for; (212|354) [SCAL] (1) $DER.$FUN_5 = cos(aimc.airGap.gamma) * $DER.aimc.airGap.gamma; ($RES_SIM_538) (213|355) [FOR-] (3) ($RES_SIM_539) (213|355) [----] for $i1 in 1:3 loop (213|355) [----] [SCAL] (1) $DER.aimc.plug_sn.pin[$i1].i + $DER.terminalBox.plug_sn.pin[$i1].i = 0.0; ($RES_SIM_540) (213|355) [----] end for; (214|358) [FOR-] (2) ($RES_SIM_541) (214|358) [----] for $i1 in 1:2 loop (214|358) [----] [SCAL] (1) $DER.aimc.idq_ss[$i1] + $DER.aimc.lssigma.spacePhasor_b.i_[$i1] = 0.0; ($RES_SIM_542) (214|358) [----] end for; (215|360) [SCAL] (1) $DER.aimc.spacePhasorS.spacePhasor.i_[1] + $DER.aimc.statorCore.spacePhasor.i_[1] + $DER.aimc.lssigma.i_[1] = 0.0; ($RES_SIM_543) (216|361) [SCAL] (1) $DER.aimc.spacePhasorS.spacePhasor.i_[2] + $DER.aimc.statorCore.spacePhasor.i_[2] + $DER.aimc.lssigma.i_[2] = 0.0; ($RES_SIM_544) (217|362) [FOR-] (2) ($RES_SIM_545) (217|362) [----] for $f2 in 1:2 loop (217|362) [----] [SCAL] (1) $DER.aimc.statorCore.spacePhasor.i_[$f2] = 0.0; ($RES_SIM_546) (217|362) [----] end for; (218|364) [SCAL] (1) aimc.wMechanical = aimc.inertiaRotor.w; ($RES_SIM_547) (219|365) [SCAL] (1) aimc.inertiaRotor.a = idealGearR2T.ratio * mass.a; ($RES_SIM_548) (220|366) [SCAL] (1) vfController.x = $START.vfController.x; ($RES_SRT_550) (221|367) [SCAL] (1) aimc.phiMechanical = $START.aimc.phiMechanical; ($RES_SRT_549) (222|368) [SCAL] (1) aimc.wMechanical = $START.aimc.wMechanical; ($RES_SRT_551) (223|369) [SCAL] (1) aimc.internalThermalPort.heatPortRotorWinding.T = aimc.thermalAmbient.constTr.k; ($RES_BND_676) (224|370) [SCAL] (1) aimc.squirrelCageR.T_heatPort = aimc.thermalAmbient.constTr.k; ($RES_BND_675) (225|371) [SCAL] (1) aimc.squirrelCageR.heatPort.T = aimc.thermalAmbient.constTr.k; ($RES_BND_674) (226|372) [SCAL] (1) aimc.thermalAmbient.thermalPort.heatPortRotorWinding.T = aimc.thermalAmbient.constTr.k; ($RES_BND_673) (227|373) [SCAL] (1) aimc.thermalAmbient.temperatureRotorWinding.port.T = aimc.thermalAmbient.constTr.k; ($RES_BND_672) (228|374) [SCAL] (1) aimc.thermalAmbient.temperatureRotorWinding.T = aimc.thermalAmbient.constTr.k; ($RES_BND_671) (229|375) [SCAL] (1) aimc.thermalAmbient.constTr.y = aimc.thermalAmbient.constTr.k; ($RES_BND_670) (230|376) [SCAL] (1) aimc.thermalAmbient.thermalCollectorStator.port_b.T = aimc.thermalAmbient.constTs.k; ($RES_BND_669) (231|377) [SCAL] (1) aimc.thermalAmbient.temperatureStatorWinding.port.T = aimc.thermalAmbient.constTs.k; ($RES_BND_668) (232|378) [SCAL] (1) aimc.thermalAmbient.temperatureStatorWinding.T = aimc.thermalAmbient.constTs.k; ($RES_BND_667) (233|379) [SCAL] (1) aimc.thermalAmbient.constTs.y = aimc.thermalAmbient.constTs.k; ($RES_BND_666) (234|380) [SCAL] (1) aimc.internalThermalPort.heatPortStrayLoad.T = aimc.thermalAmbient.temperatureStrayLoad.T; ($RES_BND_665) (235|381) [SCAL] (1) aimc.strayLoad.heatPort.T = aimc.thermalAmbient.temperatureStrayLoad.T; ($RES_BND_664) (236|382) [SCAL] (1) aimc.thermalAmbient.thermalPort.heatPortStrayLoad.T = aimc.thermalAmbient.temperatureStrayLoad.T; ($RES_BND_663) (237|383) [SCAL] (1) aimc.thermalAmbient.temperatureStrayLoad.port.T = aimc.thermalAmbient.temperatureStrayLoad.T; ($RES_BND_662) (238|384) [SCAL] (1) aimc.internalThermalPort.heatPortFriction.T = aimc.thermalAmbient.temperatureFriction.T; ($RES_BND_661) (239|385) [SCAL] (1) aimc.friction.heatPort.T = aimc.thermalAmbient.temperatureFriction.T; ($RES_BND_660) (240|386) [SCAL] (1) aimc.thermalAmbient.thermalPort.heatPortFriction.T = aimc.thermalAmbient.temperatureFriction.T; ($RES_BND_659) (241|387) [SCAL] (1) aimc.thermalAmbient.temperatureFriction.port.T = aimc.thermalAmbient.temperatureFriction.T; ($RES_BND_658) (242|388) [SCAL] (1) aimc.internalThermalPort.heatPortStatorCore.T = aimc.thermalAmbient.temperatureStatorCore.T; ($RES_BND_657) (243|389) [SCAL] (1) aimc.statorCore.heatPort.T = aimc.thermalAmbient.temperatureStatorCore.T; ($RES_BND_656) (244|390) [SCAL] (1) aimc.thermalAmbient.thermalPort.heatPortStatorCore.T = aimc.thermalAmbient.temperatureStatorCore.T; ($RES_BND_655) (245|391) [SCAL] (1) aimc.thermalAmbient.temperatureStatorCore.port.T = aimc.thermalAmbient.temperatureStatorCore.T; ($RES_BND_654) (246|392) [SCAL] (1) aimc.internalThermalPort.heatPortRotorCore.T = aimc.thermalAmbient.temperatureRotorCore.T; ($RES_BND_653) (247|393) [SCAL] (1) aimc.thermalAmbient.thermalPort.heatPortRotorCore.T = aimc.thermalAmbient.temperatureRotorCore.T; ($RES_BND_652) (248|394) [SCAL] (1) aimc.thermalAmbient.temperatureRotorCore.port.T = aimc.thermalAmbient.temperatureRotorCore.T; ($RES_BND_651) (249|395) [SCAL] (1) aimc.internalSupport.phi = aimc.fixed.phi0; ($RES_BND_650) (250|396) [SCAL] (1) aimc.strayLoad.support.phi = aimc.fixed.phi0; ($RES_BND_649) (251|397) [SCAL] (1) aimc.airGap.support.phi = aimc.fixed.phi0; ($RES_BND_648) (252|398) [SCAL] (1) aimc.inertiaStator.flange_b.phi = aimc.fixed.phi0; ($RES_BND_647) (253|399) [SCAL] (1) aimc.inertiaStator.phi = aimc.fixed.phi0; ($RES_BND_646) (254|400) [SCAL] (1) aimc.inertiaStator.flange_a.phi = aimc.fixed.phi0; ($RES_BND_645) (255|401) [SCAL] (1) aimc.friction.support.phi = aimc.fixed.phi0; ($RES_BND_644) (256|402) [SCAL] (1) aimc.fixed.flange.phi = aimc.fixed.phi0; ($RES_BND_643) (257|403) [SCAL] (1) idealGearR2T.internalSupportR.phi = idealGearR2T.fixedR.phi0; ($RES_BND_642) (258|404) [SCAL] (1) idealGearR2T.internalSupportR.flange.phi = idealGearR2T.fixedR.phi0; ($RES_BND_641) (259|405) [SCAL] (1) idealGearR2T.fixedR.flange.phi = idealGearR2T.fixedR.phi0; ($RES_BND_640) (260|406) [SCAL] (1) idealGearR2T.internalSupportT.s = idealGearR2T.fixedT.s0; ($RES_BND_639) (261|407) [SCAL] (1) idealGearR2T.internalSupportT.flange.s = idealGearR2T.fixedT.s0; ($RES_BND_638) (262|408) [SCAL] (1) idealGearR2T.fixedT.flange.s = idealGearR2T.fixedT.s0; ($RES_BND_637) (263|409) [SCAL] (1) aimc.statorCore.w = aimc.statorCoreParameters.wRef; ($RES_BND_636) (264|410) [SCAL] (1) signForce.v0 = wNominal * 0.01 * r; ($RES_BND_635) (265|411) [SCAL] (1) signForce.f_nominal = -TLoad / r; ($RES_BND_634) (266|412) [SCAL] (1) mass.m = JLoad / r ^ 2.0; ($RES_BND_633) (267|413) [SCAL] (1) idealGearR2T.ratio = 1.0 / r; ($RES_BND_632) (268|414) [SCAL] (1) gain.k = fNominal; ($RES_BND_631) (269|415) [SCAL] (1) aimcData.Lrsigma = 0.10177640614116878 / aimcData.fsNominal / 6.283185307179586; ($RES_BND_630) (270|416) [SCAL] (1) aimcData.Lm = 2.898223593858831 / aimcData.fsNominal / 6.283185307179586; ($RES_BND_629) (271|417) [SCAL] (1) aimcData.strayLoadParameters.tauRef = if aimcData.strayLoadParameters.PRef <= 0.0 then 0.0 else aimcData.strayLoadParameters.PRef / aimcData.strayLoadParameters.wRef; ($RES_BND_628) (272|418) [SCAL] (1) aimcData.strayLoadParameters.wRef = aimcData.fsNominal * 6.283185307179586 / CAST(Real, aimcData.p); ($RES_BND_627) (273|419) [SCAL] (1) aimcData.statorCoreParameters.wMin = 1e-6 * aimcData.statorCoreParameters.wRef; ($RES_BND_626) (274|420) [SCAL] (1) aimcData.statorCoreParameters.GcRef = if aimcData.statorCoreParameters.PRef <= 0.0 then 0.0 else aimcData.statorCoreParameters.PRef / aimcData.statorCoreParameters.VRef ^ 2.0 / 3.0; ($RES_BND_625) (275|421) [SCAL] (1) aimcData.statorCoreParameters.wRef = 6.283185307179586 * aimcData.fsNominal; ($RES_BND_624) (276|422) [SCAL] (1) aimcData.frictionParameters.tauLinear = if aimcData.frictionParameters.PRef <= 0.0 then 0.0 else (aimcData.frictionParameters.wLinear / aimcData.frictionParameters.wRef) ^ aimcData.frictionParameters.power_w * aimcData.frictionParameters.tauRef; ($RES_BND_623) (277|423) [SCAL] (1) aimcData.frictionParameters.wLinear = aimcData.frictionParameters.linear * aimcData.frictionParameters.wRef; ($RES_BND_622) (278|424) [SCAL] (1) aimcData.frictionParameters.tauRef = if aimcData.frictionParameters.PRef <= 0.0 then 0.0 else aimcData.frictionParameters.PRef / aimcData.frictionParameters.wRef; ($RES_BND_621) (279|425) [SCAL] (1) aimcData.frictionParameters.wRef = aimcData.fsNominal * 6.283185307179586 / CAST(Real, aimcData.p); ($RES_BND_620) (280|426) [SCAL] (1) aimcData.Lssigma = 0.10177640614116878 / aimcData.fsNominal / 6.283185307179586; ($RES_BND_619) (281|427) [SCAL] (1) aimcData.Lszero = aimcData.Lssigma; ($RES_BND_618) (282|428) [SCAL] (1) aimcData.Js = aimcData.Jr; ($RES_BND_617) (283|429) [SCAL] (1) vfController.fNominal = fNominal; ($RES_BND_616) (284|430) [SCAL] (1) vfController.VNominal = VNominal; ($RES_BND_615) (285|431) [ARRY] (1) dutyCycle.p_offset = $FUN_30 .* dutyCycle.offset[1]; ($RES_BND_614) (286|432) [SCAL] (1) dutyCycle.t_maxScaled = $FUN_29; ($RES_BND_613) (287|433) [SCAL] (1) dutyCycle.t_minScaled = $FUN_28; ($RES_BND_612) (288|434) [SCAL] (1) dutyCycle.t_max = dutyCycle.t_maxScaled; ($RES_BND_611) (289|435) [SCAL] (1) dutyCycle.t_min = dutyCycle.t_minScaled; ($RES_BND_610) (290|436) [SCAL] (1) dutyCycle.shiftTime = dutyCycle.startTime; ($RES_BND_609) (291|437) [SCAL] (1) aimc.squirrelCageR.T = aimc.squirrelCageR.T_ref; ($RES_BND_604) (292|438) [SCAL] (1) aimc.squirrelCageR.alpha = $FUN_23; ($RES_BND_603) (293|439) [SCAL] (1) aimc.squirrelCageR.T_ref = aimc.TrRef; ($RES_BND_602) (294|440) [SCAL] (1) aimc.squirrelCageR.Rr = aimc.Rr; ($RES_BND_601) (295|441) [SCAL] (1) aimc.squirrelCageR.Lrsigma = aimc.Lrsigma; ($RES_BND_600) (296|442) [SCAL] (1) aimc.alpha20r = aimcData.alpha20r; ($RES_BND_599) (297|443) [SCAL] (1) aimc.TrRef = aimcData.TrRef; ($RES_BND_598) (298|444) [SCAL] (1) aimc.Rr = aimcData.Rr; ($RES_BND_597) (299|445) [SCAL] (1) aimc.Lrsigma = aimcData.Lrsigma; ($RES_BND_596) (300|446) [SCAL] (1) aimc.Lm = aimcData.Lm; ($RES_BND_595) (301|447) [SCAL] (1) aimc.airGap.p = aimc.p; ($RES_BND_593) (302|448) [SCAL] (1) aimc.airGap.Lm = aimc.Lm; ($RES_BND_592) (303|449) [SCAL] (1) aimc.thermalAmbient.constTr.k = aimc.thermalAmbient.Tr; ($RES_BND_591) (304|450) [SCAL] (1) aimc.thermalAmbient.Tr = aimc.TrOperational; ($RES_BND_590) (305|451) [SCAL] (1) aimc.thermalAmbient.constTs.k = aimc.thermalAmbient.Ts; ($RES_BND_589) (306|452) [SCAL] (1) aimc.thermalAmbient.Ts = aimc.TsOperational; ($RES_BND_588) (307|453) [SCAL] (1) aimc.lszero.L = aimc.Lszero; ($RES_BND_583) (308|454) [FOR-] (2) ($RES_BND_581) (308|454) [----] for $i1 in 1:2 loop (308|454) [----] [SCAL] (1) aimc.lssigma.L[$i1] = aimc.Lssigma; ($RES_BND_582) (308|454) [----] end for; (309|456) [FOR-] (3) ($RES_BND_579) (309|456) [----] for $i1 in 1:3 loop (309|456) [----] [SCAL] (1) aimc.rs.resistor[$i1].T = aimc.rs.T[$i1]; ($RES_BND_580) (309|456) [----] end for; (310|459) [FOR-] (3) ($RES_BND_577) (310|459) [----] for $i1 in 1:3 loop (310|459) [----] [SCAL] (1) aimc.rs.resistor[$i1].alpha = aimc.rs.alpha[$i1]; ($RES_BND_578) (310|459) [----] end for; (311|462) [FOR-] (3) ($RES_BND_575) (311|462) [----] for $i1 in 1:3 loop (311|462) [----] [SCAL] (1) aimc.rs.resistor[$i1].T_ref = aimc.rs.T_ref[$i1]; ($RES_BND_576) (311|462) [----] end for; (312|465) [FOR-] (3) ($RES_BND_573) (312|465) [----] for $i1 in 1:3 loop (312|465) [----] [SCAL] (1) aimc.rs.resistor[$i1].R = aimc.rs.R[$i1]; ($RES_BND_574) (312|465) [----] end for; (313|468) [FOR-] (3) ($RES_BND_571) (313|468) [----] for $i1 in 1:3 loop (313|468) [----] [SCAL] (1) aimc.rs.T[$i1] = aimc.TsRef; ($RES_BND_572) (313|468) [----] end for; (314|471) [FOR-] (3) ($RES_BND_569) (314|471) [----] for $i1 in 1:3 loop (314|471) [----] [SCAL] (1) aimc.rs.alpha[$i1] = $FUN_18; ($RES_BND_570) (314|471) [----] end for; (315|474) [FOR-] (3) ($RES_BND_567) (315|474) [----] for $i1 in 1:3 loop (315|474) [----] [SCAL] (1) aimc.rs.T_ref[$i1] = aimc.TsRef; ($RES_BND_568) (315|474) [----] end for; (316|477) [FOR-] (3) ($RES_BND_565) (316|477) [----] for $i1 in 1:3 loop (316|477) [----] [SCAL] (1) aimc.rs.R[$i1] = aimc.Rs; ($RES_BND_566) (316|477) [----] end for; (317|480) [SCAL] (1) aimc.inertiaStator.J = aimc.Js; ($RES_BND_564) (318|481) [SCAL] (1) aimc.inertiaRotor.J = aimc.Jr; ($RES_BND_563) (319|482) [SCAL] (1) aimc.Js = aimcData.Js; ($RES_BND_562) (320|483) [SCAL] (1) aimc.Jr = aimcData.Jr; ($RES_BND_561) (321|484) [SCAL] (1) aimc.Lssigma = aimcData.Lssigma; ($RES_BND_560) (322|485) [SCAL] (1) aimc.Lszero = aimcData.Lszero; ($RES_BND_559) (323|486) [SCAL] (1) aimc.alpha20s = aimcData.alpha20s; ($RES_BND_558) (324|487) [SCAL] (1) aimc.TsRef = aimcData.TsRef; ($RES_BND_557) (325|488) [SCAL] (1) aimc.Rs = aimcData.Rs; ($RES_BND_556) (326|489) [SCAL] (1) aimc.fsNominal = aimcData.fsNominal; ($RES_BND_555) (327|490) [SCAL] (1) aimc.p = aimcData.p; ($RES_BND_554) (328|491) [SCAL] (1) wNominal = fNominal * 6.283185307179586 / CAST(Real, aimcData.p); ($RES_BND_553) (329|492) [SCAL] (1) fNominal = aimcData.fsNominal; ($RES_BND_552) (330|493) [RECD] (5) aimc.strayLoad.strayLoadParameters = aimc.strayLoadParameters; ($RES_BND_682) (331|498) [RECD] (7) aimc.statorCore.coreParameters = aimc.statorCoreParameters; ($RES_BND_681) (332|505) [RECD] (5) aimc.strayLoadParameters = aimcData.strayLoadParameters; ($RES_BND_680) (333|510) [RECD] (7) aimc.statorCoreParameters = aimcData.statorCoreParameters; ($RES_BND_679) (334|517) [RECD] (7) aimc.friction.frictionParameters = aimc.frictionParameters; ($RES_BND_678) (335|524) [RECD] (7) aimc.frictionParameters = aimcData.frictionParameters; ($RES_BND_677) (336|531) [SCAL] (1) dutyCycle.tableID = Modelica.Blocks.Types.ExternalCombiTimeTable.constructor(\"NoName\", \"NoName\", dutyCycle.table, dutyCycle.startTime, dutyCycle.columns, Modelica.Blocks.Types.Smoothness.LinearSegments, Modelica.Blocks.Types.Extrapolation.Periodic, dutyCycle.shiftTime, dutyCycle.timeEvents, false, dutyCycle.delimiter, dutyCycle.nHeaderLines); ($RES_BND_683) (337|532) [FOR-] (3) ($RES_SIM_696) (337|532) [----] for $i1 in 1:3 loop (337|532) [----] [SCAL] (1) aimc.spacePhasorS.InverseTransformation[$i1, 2] = -$FUN_20[$i1]; ($RES_SIM_697) (337|532) [----] end for; (338|535) [FOR-] (3) ($RES_SIM_694) (338|535) [----] for $i1 in 1:3 loop (338|535) [----] [SCAL] (1) aimc.spacePhasorS.InverseTransformation[$i1, 1] = $FUN_19[$i1]; ($RES_SIM_695) (338|535) [----] end for; (339|538) [FOR-] (3) ($RES_SIM_686) (339|538) [----] for $i1 in 1:3 loop (339|538) [----] [SCAL] (1) currentQuasiRMSSensor.ToSpacePhasor1.InverseTransformation[$i1, 2] = -$FUN_27[$i1]; ($RES_SIM_687) (339|538) [----] end for; (340|541) [FOR-] (3) ($RES_SIM_684) (340|541) [----] for $i1 in 1:3 loop (340|541) [----] [SCAL] (1) currentQuasiRMSSensor.ToSpacePhasor1.InverseTransformation[$i1, 1] = $FUN_26[$i1]; ($RES_SIM_685) (340|541) [----] end for; (341|544) [SCAL] (1) aimc.airGap.L[1, 2] = 0.0; ($RES_SIM_690) (342|545) [SCAL] (1) aimc.airGap.L[1, 1] = aimc.airGap.Lm; ($RES_SIM_689) (343|546) [SCAL] (1) aimc.airGap.L[2, 2] = aimc.airGap.Lm; ($RES_SIM_693) (344|547) [SCAL] (1) aimc.airGap.L[2, 1] = 0.0; ($RES_SIM_692) (345|548) [SCAL] (1) $PRE.dutyCycle.nextTimeEventScaled = $START.dutyCycle.nextTimeEventScaled; ($RES_SIM_700) (346|549) [SCAL] (1) $PRE.dutyCycle.nextTimeEvent = $START.dutyCycle.nextTimeEvent; ($RES_SIM_701) =================== Scalar Matching =================== variable to equation ********************** var 1 --> eqn 367 var 2 --> eqn 368 var 3 --> eqn 135 var 4 --> eqn 11 var 5 --> eqn 140 var 6 --> eqn 364 var 7 --> eqn 131 var 8 --> eqn 128 var 9 --> eqn 130 var 10 --> eqn 328 var 11 --> eqn -1 var 12 --> eqn 126 var 13 --> eqn 334 var 14 --> eqn 127 var 15 --> eqn 256 var 16 --> eqn 255 var 17 --> eqn 254 var 18 --> eqn 253 var 19 --> eqn 252 var 20 --> eqn 251 var 21 --> eqn 250 var 22 --> eqn 249 var 23 --> eqn 248 var 24 --> eqn 247 var 25 --> eqn 246 var 26 --> eqn 243 var 27 --> eqn 244 var 28 --> eqn 245 var 29 --> eqn 3 var 30 --> eqn 4 var 31 --> eqn 212 var 32 --> eqn 260 var 33 --> eqn 63 var 34 --> eqn 64 var 35 --> eqn 57 var 36 --> eqn 56 var 37 --> eqn 54 var 38 --> eqn 55 var 39 --> eqn 221 var 40 --> eqn 222 var 41 --> eqn 42 var 42 --> eqn 43 var 43 --> eqn 44 var 44 --> eqn 166 var 45 --> eqn 91 var 46 --> eqn 167 var 47 --> eqn 216 var 48 --> eqn 217 var 49 --> eqn 149 var 50 --> eqn 104 var 51 --> eqn 105 var 52 --> eqn 106 var 53 --> eqn 213 var 54 --> eqn 214 var 55 --> eqn 234 var 56 --> eqn 229 var 57 --> eqn 230 var 58 --> eqn 209 var 59 --> eqn 199 var 60 --> eqn 197 var 61 --> eqn 195 var 62 --> eqn 226 var 63 --> eqn 227 var 64 --> eqn 228 var 65 --> eqn 119 var 66 --> eqn 120 var 67 --> eqn 121 var 68 --> eqn 232 var 69 --> eqn 233 var 70 --> eqn 115 var 71 --> eqn 113 var 72 --> eqn 114 var 73 --> eqn 231 var 74 --> eqn 110 var 75 --> eqn 111 var 76 --> eqn 112 var 77 --> eqn 237 var 78 --> eqn 238 var 79 --> eqn 239 var 80 --> eqn 116 var 81 --> eqn 117 var 82 --> eqn 118 var 83 --> eqn 240 var 84 --> eqn 241 var 85 --> eqn 242 var 86 --> eqn 122 var 87 --> eqn 123 var 88 --> eqn 124 var 89 --> eqn 99 var 90 --> eqn 98 var 91 --> eqn 102 var 92 --> eqn 103 var 93 --> eqn 100 var 94 --> eqn 101 var 95 --> eqn 320 var 96 --> eqn 323 var 97 --> eqn 219 var 98 --> eqn 220 var 99 --> eqn 97 var 100 --> eqn 93 var 101 --> eqn 206 var 102 --> eqn 204 var 103 --> eqn 94 var 104 --> eqn 95 var 105 --> eqn 236 var 106 --> eqn 90 var 107 --> eqn 259 var 108 --> eqn 92 var 109 --> eqn 87 var 110 --> eqn 88 var 111 --> eqn 86 var 112 --> eqn 107 var 113 --> eqn 108 var 114 --> eqn 109 var 115 --> eqn 207 var 116 --> eqn 208 var 117 --> eqn 89 var 118 --> eqn 84 var 119 --> eqn 85 var 120 --> eqn 218 var 121 --> eqn 96 var 122 --> eqn 205 var 123 --> eqn 203 var 124 --> eqn 202 var 125 --> eqn 201 var 126 --> eqn 77 var 127 --> eqn 78 var 128 --> eqn 79 var 129 --> eqn 210 var 130 --> eqn 211 var 131 --> eqn 73 var 132 --> eqn 68 var 133 --> eqn 69 var 134 --> eqn 70 var 135 --> eqn 71 var 136 --> eqn 72 var 137 --> eqn 215 var 138 --> eqn 75 var 139 --> eqn 349 var 140 --> eqn 76 var 141 --> eqn 273 var 142 --> eqn 261 var 143 --> eqn 141 var 144 --> eqn 139 var 145 --> eqn 142 var 146 --> eqn 194 var 147 --> eqn 193 var 148 --> eqn 192 var 149 --> eqn 65 var 150 --> eqn 66 var 151 --> eqn 67 var 152 --> eqn 223 var 153 --> eqn 224 var 154 --> eqn 225 var 155 --> eqn 134 var 156 --> eqn 235 var 157 --> eqn 200 var 158 --> eqn 198 var 159 --> eqn 196 var 160 --> eqn 136 var 161 --> eqn 137 var 162 --> eqn 138 var 163 --> eqn 1 var 164 --> eqn 2 var 165 --> eqn 58 var 166 --> eqn 49 var 167 --> eqn 324 var 168 --> eqn 59 var 169 --> eqn 60 var 170 --> eqn 310 var 171 --> eqn 309 var 172 --> eqn 312 var 173 --> eqn 311 var 174 --> eqn 46 var 175 --> eqn -1 var 176 --> eqn 62 var 177 --> eqn 61 var 178 --> eqn 45 var 179 --> eqn 48 var 180 --> eqn 35 var 181 --> eqn 20 var 182 --> eqn 21 var 183 --> eqn 22 var 184 --> eqn 183 var 185 --> eqn 184 var 186 --> eqn 185 var 187 --> eqn 150 var 188 --> eqn 151 var 189 --> eqn 152 var 190 --> eqn 189 var 191 --> eqn 190 var 192 --> eqn 191 var 193 --> eqn 180 var 194 --> eqn 181 var 195 --> eqn 182 var 196 --> eqn 39 var 197 --> eqn 40 var 198 --> eqn 41 var 199 --> eqn 186 var 200 --> eqn 187 var 201 --> eqn 188 var 202 --> eqn 179 var 203 --> eqn 36 var 204 --> eqn 37 var 205 --> eqn 38 var 206 --> eqn 266 var 207 --> eqn 265 var 208 --> eqn 264 var 209 --> eqn 32 var 210 --> eqn -1 var 211 --> eqn 28 var 212 --> eqn 29 var 213 --> eqn 30 var 214 --> eqn 13 var 215 --> eqn 23 var 216 --> eqn 24 var 217 --> eqn 25 var 218 --> eqn 366 var 219 --> eqn 27 var 220 --> eqn 153 var 221 --> eqn 154 var 222 --> eqn 155 var 223 --> eqn 173 var 224 --> eqn 174 var 225 --> eqn 175 var 226 --> eqn 176 var 227 --> eqn 177 var 228 --> eqn 178 var 229 --> eqn 17 var 230 --> eqn 18 var 231 --> eqn 19 var 232 --> eqn 14 var 233 --> eqn 15 var 234 --> eqn 16 var 235 --> eqn 170 var 236 --> eqn 171 var 237 --> eqn 172 var 238 --> eqn 156 var 239 --> eqn 157 var 240 --> eqn 158 var 241 --> eqn 169 var 242 --> eqn 144 var 243 --> eqn 145 var 244 --> eqn 146 var 245 --> eqn 147 var 246 --> eqn 148 var 247 --> eqn 164 var 248 --> eqn 162 var 249 --> eqn 163 var 250 --> eqn 165 var 251 --> eqn 159 var 252 --> eqn 160 var 253 --> eqn 161 var 254 --> eqn 168 var 255 --> eqn 143 var 256 --> eqn 258 var 257 --> eqn 12 var 258 --> eqn 8 var 259 --> eqn 316 var 260 --> eqn 365 var 261 --> eqn 5 var 262 --> eqn 6 var 263 --> eqn 342 var 264 --> eqn 262 var 265 --> eqn 263 var 266 --> eqn -1 var 267 --> eqn 31 var 268 --> eqn 267 var 269 --> eqn 268 var 270 --> eqn 269 var 271 --> eqn 270 var 272 --> eqn 271 var 273 --> eqn 306 var 274 --> eqn 307 var 275 --> eqn 308 var 276 --> eqn 272 var 277 --> eqn 274 var 278 --> eqn 275 var 279 --> eqn 276 var 280 --> eqn 348 var 281 --> eqn 332 var 282 --> eqn 47 var 283 --> eqn 257 var 284 --> eqn 133 var 285 --> eqn 132 var 286 --> eqn 129 var 287 --> eqn 125 var 288 --> eqn 339 var 289 --> eqn 340 var 290 --> eqn 74 var 291 --> eqn 52 var 292 --> eqn 53 var 293 --> eqn 50 var 294 --> eqn 51 var 295 --> eqn 26 var 296 --> eqn 10 var 297 --> eqn 9 var 298 --> eqn 7 var 299 --> eqn -1 var 300 --> eqn 333 var 301 --> eqn 336 var 302 --> eqn 335 var 303 --> eqn 549 var 304 --> eqn 548 var 305 --> eqn 313 var 306 --> eqn 314 var 307 --> eqn 315 var 308 --> eqn 343 var 309 --> eqn 344 var 310 --> eqn 345 var 311 --> eqn 325 var 312 --> eqn 326 var 313 --> eqn 327 var 314 --> eqn 317 var 315 --> eqn 318 var 316 --> eqn 351 var 317 --> eqn 352 var 318 --> eqn 353 var 319 --> eqn 341 var 320 --> eqn -1 var 321 --> eqn -1 var 322 --> eqn 331 var 323 --> eqn 330 var 324 --> eqn 322 var 325 --> eqn 319 var 326 --> eqn 362 var 327 --> eqn 363 var 328 --> eqn 329 var 329 --> eqn -1 var 330 --> eqn 321 var 331 --> eqn 358 var 332 --> eqn 359 var 333 --> eqn 350 var 334 --> eqn 337 var 335 --> eqn 338 var 336 --> eqn 354 var 337 --> eqn 355 var 338 --> eqn 356 var 339 --> eqn 357 var 340 --> eqn 360 var 341 --> eqn 361 var 342 --> eqn 369 var 343 --> eqn 370 var 344 --> eqn 371 var 345 --> eqn 372 var 346 --> eqn 373 var 347 --> eqn 374 var 348 --> eqn 375 var 349 --> eqn 376 var 350 --> eqn 377 var 351 --> eqn 378 var 352 --> eqn 379 var 353 --> eqn 380 var 354 --> eqn 381 var 355 --> eqn 382 var 356 --> eqn 383 var 357 --> eqn 384 var 358 --> eqn 385 var 359 --> eqn 386 var 360 --> eqn 387 var 361 --> eqn 388 var 362 --> eqn 389 var 363 --> eqn 390 var 364 --> eqn 391 var 365 --> eqn 392 var 366 --> eqn 393 var 367 --> eqn 394 var 368 --> eqn 395 var 369 --> eqn 396 var 370 --> eqn 397 var 371 --> eqn 398 var 372 --> eqn 399 var 373 --> eqn 400 var 374 --> eqn 401 var 375 --> eqn 402 var 376 --> eqn 403 var 377 --> eqn 404 var 378 --> eqn 405 var 379 --> eqn 406 var 380 --> eqn 407 var 381 --> eqn 408 var 382 --> eqn 409 var 383 --> eqn 305 var 384 --> eqn 304 var 385 --> eqn 303 var 386 --> eqn 300 var 387 --> eqn 301 var 388 --> eqn 302 var 389 --> eqn 297 var 390 --> eqn 298 var 391 --> eqn 299 var 392 --> eqn 294 var 393 --> eqn 295 var 394 --> eqn 296 var 395 --> eqn 291 var 396 --> eqn 292 var 397 --> eqn 293 var 398 --> eqn 290 var 399 --> eqn 287 var 400 --> eqn 288 var 401 --> eqn 289 var 402 --> eqn 284 var 403 --> eqn 285 var 404 --> eqn 286 var 405 --> eqn 281 var 406 --> eqn 282 var 407 --> eqn 283 var 408 --> eqn 278 var 409 --> eqn 279 var 410 --> eqn 280 var 411 --> eqn 277 var 412 --> eqn 410 var 413 --> eqn 411 var 414 --> eqn 412 var 415 --> eqn 413 var 416 --> eqn 414 var 417 --> eqn 415 var 418 --> eqn 416 var 419 --> eqn 417 var 420 --> eqn 418 var 421 --> eqn 419 var 422 --> eqn 420 var 423 --> eqn 421 var 424 --> eqn 422 var 425 --> eqn 423 var 426 --> eqn 424 var 427 --> eqn 425 var 428 --> eqn 426 var 429 --> eqn 427 var 430 --> eqn 428 var 431 --> eqn 429 var 432 --> eqn 430 var 433 --> eqn 431 var 434 --> eqn 432 var 435 --> eqn 433 var 436 --> eqn 434 var 437 --> eqn 435 var 438 --> eqn 436 var 439 --> eqn 541 var 440 --> eqn 538 var 441 --> eqn 542 var 442 --> eqn 539 var 443 --> eqn 543 var 444 --> eqn 540 var 445 --> eqn 33 var 446 --> eqn -1 var 447 --> eqn -1 var 448 --> eqn 34 var 449 --> eqn -1 var 450 --> eqn -1 var 451 --> eqn 437 var 452 --> eqn 438 var 453 --> eqn 439 var 454 --> eqn 440 var 455 --> eqn 441 var 456 --> eqn 442 var 457 --> eqn 443 var 458 --> eqn 444 var 459 --> eqn 445 var 460 --> eqn 446 var 461 --> eqn 545 var 462 --> eqn 544 var 463 --> eqn 547 var 464 --> eqn 546 var 465 --> eqn 447 var 466 --> eqn 448 var 467 --> eqn 449 var 468 --> eqn 450 var 469 --> eqn 451 var 470 --> eqn 452 var 471 --> eqn 80 var 472 --> eqn 346 var 473 --> eqn 82 var 474 --> eqn 81 var 475 --> eqn 347 var 476 --> eqn 83 var 477 --> eqn 535 var 478 --> eqn 532 var 479 --> eqn 536 var 480 --> eqn 533 var 481 --> eqn 537 var 482 --> eqn 534 var 483 --> eqn 453 var 484 --> eqn 454 var 485 --> eqn 455 var 486 --> eqn 456 var 487 --> eqn 457 var 488 --> eqn 458 var 489 --> eqn 459 var 490 --> eqn 460 var 491 --> eqn 461 var 492 --> eqn 462 var 493 --> eqn 463 var 494 --> eqn 464 var 495 --> eqn 465 var 496 --> eqn 466 var 497 --> eqn 467 var 498 --> eqn 468 var 499 --> eqn 469 var 500 --> eqn 470 var 501 --> eqn 471 var 502 --> eqn 472 var 503 --> eqn 473 var 504 --> eqn 474 var 505 --> eqn 475 var 506 --> eqn 476 var 507 --> eqn 477 var 508 --> eqn 478 var 509 --> eqn 479 var 510 --> eqn 480 var 511 --> eqn 481 var 512 --> eqn 482 var 513 --> eqn 483 var 514 --> eqn 484 var 515 --> eqn 485 var 516 --> eqn 486 var 517 --> eqn 487 var 518 --> eqn 488 var 519 --> eqn 489 var 520 --> eqn 490 var 521 --> eqn 491 var 522 --> eqn 492 var 523 --> eqn 493 var 524 --> eqn 494 var 525 --> eqn 495 var 526 --> eqn 496 var 527 --> eqn 497 var 528 --> eqn 498 var 529 --> eqn 499 var 530 --> eqn 500 var 531 --> eqn 501 var 532 --> eqn 502 var 533 --> eqn 503 var 534 --> eqn 504 var 535 --> eqn 505 var 536 --> eqn 506 var 537 --> eqn 507 var 538 --> eqn 508 var 539 --> eqn 509 var 540 --> eqn 510 var 541 --> eqn 511 var 542 --> eqn 512 var 543 --> eqn 513 var 544 --> eqn 514 var 545 --> eqn 515 var 546 --> eqn 516 var 547 --> eqn 517 var 548 --> eqn 518 var 549 --> eqn 519 var 550 --> eqn 520 var 551 --> eqn 521 var 552 --> eqn 522 var 553 --> eqn 523 var 554 --> eqn 524 var 555 --> eqn 525 var 556 --> eqn 526 var 557 --> eqn 527 var 558 --> eqn 528 var 559 --> eqn 529 var 560 --> eqn 530 var 561 --> eqn 531 equation to variable ********************** eqn 1 --> var 163 eqn 2 --> var 164 eqn 3 --> var 29 eqn 4 --> var 30 eqn 5 --> var 261 eqn 6 --> var 262 eqn 7 --> var 298 eqn 8 --> var 258 eqn 9 --> var 297 eqn 10 --> var 296 eqn 11 --> var 4 eqn 12 --> var 257 eqn 13 --> var 214 eqn 14 --> var 232 eqn 15 --> var 233 eqn 16 --> var 234 eqn 17 --> var 229 eqn 18 --> var 230 eqn 19 --> var 231 eqn 20 --> var 181 eqn 21 --> var 182 eqn 22 --> var 183 eqn 23 --> var 215 eqn 24 --> var 216 eqn 25 --> var 217 eqn 26 --> var 295 eqn 27 --> var 219 eqn 28 --> var 211 eqn 29 --> var 212 eqn 30 --> var 213 eqn 31 --> var 267 eqn 32 --> var 209 eqn 33 --> var 445 eqn 34 --> var 448 eqn 35 --> var 180 eqn 36 --> var 203 eqn 37 --> var 204 eqn 38 --> var 205 eqn 39 --> var 196 eqn 40 --> var 197 eqn 41 --> var 198 eqn 42 --> var 41 eqn 43 --> var 42 eqn 44 --> var 43 eqn 45 --> var 178 eqn 46 --> var 174 eqn 47 --> var 282 eqn 48 --> var 179 eqn 49 --> var 166 eqn 50 --> var 293 eqn 51 --> var 294 eqn 52 --> var 291 eqn 53 --> var 292 eqn 54 --> var 37 eqn 55 --> var 38 eqn 56 --> var 36 eqn 57 --> var 35 eqn 58 --> var 165 eqn 59 --> var 168 eqn 60 --> var 169 eqn 61 --> var 177 eqn 62 --> var 176 eqn 63 --> var 33 eqn 64 --> var 34 eqn 65 --> var 149 eqn 66 --> var 150 eqn 67 --> var 151 eqn 68 --> var 132 eqn 69 --> var 133 eqn 70 --> var 134 eqn 71 --> var 135 eqn 72 --> var 136 eqn 73 --> var 131 eqn 74 --> var 290 eqn 75 --> var 138 eqn 76 --> var 140 eqn 77 --> var 126 eqn 78 --> var 127 eqn 79 --> var 128 eqn 80 --> var 471 eqn 81 --> var 474 eqn 82 --> var 473 eqn 83 --> var 476 eqn 84 --> var 118 eqn 85 --> var 119 eqn 86 --> var 111 eqn 87 --> var 109 eqn 88 --> var 110 eqn 89 --> var 117 eqn 90 --> var 106 eqn 91 --> var 45 eqn 92 --> var 108 eqn 93 --> var 100 eqn 94 --> var 103 eqn 95 --> var 104 eqn 96 --> var 121 eqn 97 --> var 99 eqn 98 --> var 90 eqn 99 --> var 89 eqn 100 --> var 93 eqn 101 --> var 94 eqn 102 --> var 91 eqn 103 --> var 92 eqn 104 --> var 50 eqn 105 --> var 51 eqn 106 --> var 52 eqn 107 --> var 112 eqn 108 --> var 113 eqn 109 --> var 114 eqn 110 --> var 74 eqn 111 --> var 75 eqn 112 --> var 76 eqn 113 --> var 71 eqn 114 --> var 72 eqn 115 --> var 70 eqn 116 --> var 80 eqn 117 --> var 81 eqn 118 --> var 82 eqn 119 --> var 65 eqn 120 --> var 66 eqn 121 --> var 67 eqn 122 --> var 86 eqn 123 --> var 87 eqn 124 --> var 88 eqn 125 --> var 287 eqn 126 --> var 12 eqn 127 --> var 14 eqn 128 --> var 8 eqn 129 --> var 286 eqn 130 --> var 9 eqn 131 --> var 7 eqn 132 --> var 285 eqn 133 --> var 284 eqn 134 --> var 155 eqn 135 --> var 3 eqn 136 --> var 160 eqn 137 --> var 161 eqn 138 --> var 162 eqn 139 --> var 144 eqn 140 --> var 5 eqn 141 --> var 143 eqn 142 --> var 145 eqn 143 --> var 255 eqn 144 --> var 242 eqn 145 --> var 243 eqn 146 --> var 244 eqn 147 --> var 245 eqn 148 --> var 246 eqn 149 --> var 49 eqn 150 --> var 187 eqn 151 --> var 188 eqn 152 --> var 189 eqn 153 --> var 220 eqn 154 --> var 221 eqn 155 --> var 222 eqn 156 --> var 238 eqn 157 --> var 239 eqn 158 --> var 240 eqn 159 --> var 251 eqn 160 --> var 252 eqn 161 --> var 253 eqn 162 --> var 248 eqn 163 --> var 249 eqn 164 --> var 247 eqn 165 --> var 250 eqn 166 --> var 44 eqn 167 --> var 46 eqn 168 --> var 254 eqn 169 --> var 241 eqn 170 --> var 235 eqn 171 --> var 236 eqn 172 --> var 237 eqn 173 --> var 223 eqn 174 --> var 224 eqn 175 --> var 225 eqn 176 --> var 226 eqn 177 --> var 227 eqn 178 --> var 228 eqn 179 --> var 202 eqn 180 --> var 193 eqn 181 --> var 194 eqn 182 --> var 195 eqn 183 --> var 184 eqn 184 --> var 185 eqn 185 --> var 186 eqn 186 --> var 199 eqn 187 --> var 200 eqn 188 --> var 201 eqn 189 --> var 190 eqn 190 --> var 191 eqn 191 --> var 192 eqn 192 --> var 148 eqn 193 --> var 147 eqn 194 --> var 146 eqn 195 --> var 61 eqn 196 --> var 159 eqn 197 --> var 60 eqn 198 --> var 158 eqn 199 --> var 59 eqn 200 --> var 157 eqn 201 --> var 125 eqn 202 --> var 124 eqn 203 --> var 123 eqn 204 --> var 102 eqn 205 --> var 122 eqn 206 --> var 101 eqn 207 --> var 115 eqn 208 --> var 116 eqn 209 --> var 58 eqn 210 --> var 129 eqn 211 --> var 130 eqn 212 --> var 31 eqn 213 --> var 53 eqn 214 --> var 54 eqn 215 --> var 137 eqn 216 --> var 47 eqn 217 --> var 48 eqn 218 --> var 120 eqn 219 --> var 97 eqn 220 --> var 98 eqn 221 --> var 39 eqn 222 --> var 40 eqn 223 --> var 152 eqn 224 --> var 153 eqn 225 --> var 154 eqn 226 --> var 62 eqn 227 --> var 63 eqn 228 --> var 64 eqn 229 --> var 56 eqn 230 --> var 57 eqn 231 --> var 73 eqn 232 --> var 68 eqn 233 --> var 69 eqn 234 --> var 55 eqn 235 --> var 156 eqn 236 --> var 105 eqn 237 --> var 77 eqn 238 --> var 78 eqn 239 --> var 79 eqn 240 --> var 83 eqn 241 --> var 84 eqn 242 --> var 85 eqn 243 --> var 26 eqn 244 --> var 27 eqn 245 --> var 28 eqn 246 --> var 25 eqn 247 --> var 24 eqn 248 --> var 23 eqn 249 --> var 22 eqn 250 --> var 21 eqn 251 --> var 20 eqn 252 --> var 19 eqn 253 --> var 18 eqn 254 --> var 17 eqn 255 --> var 16 eqn 256 --> var 15 eqn 257 --> var 283 eqn 258 --> var 256 eqn 259 --> var 107 eqn 260 --> var 32 eqn 261 --> var 142 eqn 262 --> var 264 eqn 263 --> var 265 eqn 264 --> var 208 eqn 265 --> var 207 eqn 266 --> var 206 eqn 267 --> var 268 eqn 268 --> var 269 eqn 269 --> var 270 eqn 270 --> var 271 eqn 271 --> var 272 eqn 272 --> var 276 eqn 273 --> var 141 eqn 274 --> var 277 eqn 275 --> var 278 eqn 276 --> var 279 eqn 277 --> var 411 eqn 278 --> var 408 eqn 279 --> var 409 eqn 280 --> var 410 eqn 281 --> var 405 eqn 282 --> var 406 eqn 283 --> var 407 eqn 284 --> var 402 eqn 285 --> var 403 eqn 286 --> var 404 eqn 287 --> var 399 eqn 288 --> var 400 eqn 289 --> var 401 eqn 290 --> var 398 eqn 291 --> var 395 eqn 292 --> var 396 eqn 293 --> var 397 eqn 294 --> var 392 eqn 295 --> var 393 eqn 296 --> var 394 eqn 297 --> var 389 eqn 298 --> var 390 eqn 299 --> var 391 eqn 300 --> var 386 eqn 301 --> var 387 eqn 302 --> var 388 eqn 303 --> var 385 eqn 304 --> var 384 eqn 305 --> var 383 eqn 306 --> var 273 eqn 307 --> var 274 eqn 308 --> var 275 eqn 309 --> var 171 eqn 310 --> var 170 eqn 311 --> var 173 eqn 312 --> var 172 eqn 313 --> var 305 eqn 314 --> var 306 eqn 315 --> var 307 eqn 316 --> var 259 eqn 317 --> var 314 eqn 318 --> var 315 eqn 319 --> var 325 eqn 320 --> var 95 eqn 321 --> var 330 eqn 322 --> var 324 eqn 323 --> var 96 eqn 324 --> var 167 eqn 325 --> var 311 eqn 326 --> var 312 eqn 327 --> var 313 eqn 328 --> var 10 eqn 329 --> var 328 eqn 330 --> var 323 eqn 331 --> var 322 eqn 332 --> var 281 eqn 333 --> var 300 eqn 334 --> var 13 eqn 335 --> var 302 eqn 336 --> var 301 eqn 337 --> var 334 eqn 338 --> var 335 eqn 339 --> var 288 eqn 340 --> var 289 eqn 341 --> var 319 eqn 342 --> var 263 eqn 343 --> var 308 eqn 344 --> var 309 eqn 345 --> var 310 eqn 346 --> var 472 eqn 347 --> var 475 eqn 348 --> var 280 eqn 349 --> var 139 eqn 350 --> var 333 eqn 351 --> var 316 eqn 352 --> var 317 eqn 353 --> var 318 eqn 354 --> var 336 eqn 355 --> var 337 eqn 356 --> var 338 eqn 357 --> var 339 eqn 358 --> var 331 eqn 359 --> var 332 eqn 360 --> var 340 eqn 361 --> var 341 eqn 362 --> var 326 eqn 363 --> var 327 eqn 364 --> var 6 eqn 365 --> var 260 eqn 366 --> var 218 eqn 367 --> var 1 eqn 368 --> var 2 eqn 369 --> var 342 eqn 370 --> var 343 eqn 371 --> var 344 eqn 372 --> var 345 eqn 373 --> var 346 eqn 374 --> var 347 eqn 375 --> var 348 eqn 376 --> var 349 eqn 377 --> var 350 eqn 378 --> var 351 eqn 379 --> var 352 eqn 380 --> var 353 eqn 381 --> var 354 eqn 382 --> var 355 eqn 383 --> var 356 eqn 384 --> var 357 eqn 385 --> var 358 eqn 386 --> var 359 eqn 387 --> var 360 eqn 388 --> var 361 eqn 389 --> var 362 eqn 390 --> var 363 eqn 391 --> var 364 eqn 392 --> var 365 eqn 393 --> var 366 eqn 394 --> var 367 eqn 395 --> var 368 eqn 396 --> var 369 eqn 397 --> var 370 eqn 398 --> var 371 eqn 399 --> var 372 eqn 400 --> var 373 eqn 401 --> var 374 eqn 402 --> var 375 eqn 403 --> var 376 eqn 404 --> var 377 eqn 405 --> var 378 eqn 406 --> var 379 eqn 407 --> var 380 eqn 408 --> var 381 eqn 409 --> var 382 eqn 410 --> var 412 eqn 411 --> var 413 eqn 412 --> var 414 eqn 413 --> var 415 eqn 414 --> var 416 eqn 415 --> var 417 eqn 416 --> var 418 eqn 417 --> var 419 eqn 418 --> var 420 eqn 419 --> var 421 eqn 420 --> var 422 eqn 421 --> var 423 eqn 422 --> var 424 eqn 423 --> var 425 eqn 424 --> var 426 eqn 425 --> var 427 eqn 426 --> var 428 eqn 427 --> var 429 eqn 428 --> var 430 eqn 429 --> var 431 eqn 430 --> var 432 eqn 431 --> var 433 eqn 432 --> var 434 eqn 433 --> var 435 eqn 434 --> var 436 eqn 435 --> var 437 eqn 436 --> var 438 eqn 437 --> var 451 eqn 438 --> var 452 eqn 439 --> var 453 eqn 440 --> var 454 eqn 441 --> var 455 eqn 442 --> var 456 eqn 443 --> var 457 eqn 444 --> var 458 eqn 445 --> var 459 eqn 446 --> var 460 eqn 447 --> var 465 eqn 448 --> var 466 eqn 449 --> var 467 eqn 450 --> var 468 eqn 451 --> var 469 eqn 452 --> var 470 eqn 453 --> var 483 eqn 454 --> var 484 eqn 455 --> var 485 eqn 456 --> var 486 eqn 457 --> var 487 eqn 458 --> var 488 eqn 459 --> var 489 eqn 460 --> var 490 eqn 461 --> var 491 eqn 462 --> var 492 eqn 463 --> var 493 eqn 464 --> var 494 eqn 465 --> var 495 eqn 466 --> var 496 eqn 467 --> var 497 eqn 468 --> var 498 eqn 469 --> var 499 eqn 470 --> var 500 eqn 471 --> var 501 eqn 472 --> var 502 eqn 473 --> var 503 eqn 474 --> var 504 eqn 475 --> var 505 eqn 476 --> var 506 eqn 477 --> var 507 eqn 478 --> var 508 eqn 479 --> var 509 eqn 480 --> var 510 eqn 481 --> var 511 eqn 482 --> var 512 eqn 483 --> var 513 eqn 484 --> var 514 eqn 485 --> var 515 eqn 486 --> var 516 eqn 487 --> var 517 eqn 488 --> var 518 eqn 489 --> var 519 eqn 490 --> var 520 eqn 491 --> var 521 eqn 492 --> var 522 eqn 493 --> var 523 eqn 494 --> var 524 eqn 495 --> var 525 eqn 496 --> var 526 eqn 497 --> var 527 eqn 498 --> var 528 eqn 499 --> var 529 eqn 500 --> var 530 eqn 501 --> var 531 eqn 502 --> var 532 eqn 503 --> var 533 eqn 504 --> var 534 eqn 505 --> var 535 eqn 506 --> var 536 eqn 507 --> var 537 eqn 508 --> var 538 eqn 509 --> var 539 eqn 510 --> var 540 eqn 511 --> var 541 eqn 512 --> var 542 eqn 513 --> var 543 eqn 514 --> var 544 eqn 515 --> var 545 eqn 516 --> var 546 eqn 517 --> var 547 eqn 518 --> var 548 eqn 519 --> var 549 eqn 520 --> var 550 eqn 521 --> var 551 eqn 522 --> var 552 eqn 523 --> var 553 eqn 524 --> var 554 eqn 525 --> var 555 eqn 526 --> var 556 eqn 527 --> var 557 eqn 528 --> var 558 eqn 529 --> var 559 eqn 530 --> var 560 eqn 531 --> var 561 eqn 532 --> var 478 eqn 533 --> var 480 eqn 534 --> var 482 eqn 535 --> var 477 eqn 536 --> var 479 eqn 537 --> var 481 eqn 538 --> var 440 eqn 539 --> var 442 eqn 540 --> var 444 eqn 541 --> var 439 eqn 542 --> var 441 eqn 543 --> var 443 eqn 544 --> var 462 eqn 545 --> var 461 eqn 546 --> var 464 eqn 547 --> var 463 eqn 548 --> var 304 eqn 549 --> var 303 Error: Internal error NBInitialization.main failed to apply modules! " [Timeout remaining time 660] [Calling sys.exit(0), Time elapsed: 2.9515865829307586]