Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr ScalableTestGrids_noopt_ScalableTestGrids.Models.Type2.Type2_tapNoEv_N_4_M_4.conf.json loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 3.2.3+maint.om/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/PowerGrids 1.0.3/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ScalableTestGrids 1.1.0-master/package.mo", uses=false) Using package ScalableTestGrids with version 1.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ScalableTestGrids 1.1.0-master/package.mo) Using package PowerGrids with version 1.0.3 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/PowerGrids 1.0.3/package.mo) Using package Modelica with version 3.2.3 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 3.2.3+maint.om/package.mo) Using package Complex with version 4.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo) Using package ModelicaServices with version 4.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo) Running command: translateModel(ScalableTestGrids.Models.Type2.Type2_tapNoEv_N_4_M_4,tolerance=1e-05,outputFormat="empty",numberOfIntervals=5000,variableFilter="",fileNamePrefix="ScalableTestGrids_noopt_ScalableTestGrids.Models.Type2.Type2_tapNoEv_N_4_M_4") translateModel(ScalableTestGrids.Models.Type2.Type2_tapNoEv_N_4_M_4,tolerance=1e-05,outputFormat="empty",numberOfIntervals=5000,variableFilter="",fileNamePrefix="ScalableTestGrids_noopt_ScalableTestGrids.Models.Type2.Type2_tapNoEv_N_4_M_4") Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo): time 0.001794/0.001794, allocations: 110.3 kB / 18.41 MB, free: 4.645 MB / 14.72 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo): time 0.001664/0.001664, allocations: 185.5 kB / 19.35 MB, free: 3.715 MB / 14.72 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 3.2.3+maint.om/package.mo): time 1.507/1.507, allocations: 205.1 MB / 225.2 MB, free: 12.2 MB / 190.1 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/PowerGrids 1.0.3/package.mo): time 0.06852/0.06852, allocations: 14.17 MB / 286.8 MB, free: 13.85 MB / 238.1 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ScalableTestGrids 1.1.0-master/package.mo): time 3.614/3.614, allocations: 461.2 MB / 0.7801 GB, free: 107.1 MB / 0.6545 GB Notification: Modelica requested package Complex of version 3.2.3. Complex 4.0.0 is used instead which states that it is fully compatible without conversion script needed. Notification: Modelica requested package ModelicaServices of version 3.2.3. ModelicaServices 4.0.0 is used instead which states that it is fully compatible without conversion script needed. Notification: ScalableTestGrids requested package PowerGrids of version 1.0.2. PowerGrids 1.0.3 is used instead which states that it is fully compatible without conversion script needed. Notification: Performance of FrontEnd - loaded program: time 0.002991/0.002992, allocations: 94.67 kB / 1.132 GB, free: 21.58 MB / 0.8735 GB Notification: Performance of FrontEnd - Absyn->SCode: time 0.3398/0.3428, allocations: 172.1 MB / 1.3 GB, free: 6.363 MB / 0.9829 GB Notification: Performance of NFInst.instantiate(ScalableTestGrids.Models.Type2.Type2_tapNoEv_N_4_M_4): time 4.198/4.541, allocations: 1.431 GB / 2.731 GB, free: 5.598 MB / 1.765 GB Notification: Performance of NFInst.instExpressions: time 2.657/7.197, allocations: 0.4963 GB / 3.227 GB, free: 13.74 MB / 2.093 GB Notification: Performance of NFInst.updateImplicitVariability: time 0.3081/7.505, allocations: 5.004 MB / 3.232 GB, free: 13.74 MB / 2.093 GB Notification: Performance of NFTyping.typeComponents: time 0.2695/7.775, allocations: 76.3 MB / 3.307 GB, free: 6.531 MB / 2.093 GB Notification: Performance of NFTyping.typeBindings: time 0.7138/8.489, allocations: 208.9 MB / 3.511 GB, free: 9.496 MB / 2.202 GB Notification: Performance of NFTyping.typeClassSections: time 0.198/8.687, allocations: 56.51 MB / 3.566 GB, free: 12.76 MB / 2.249 GB Notification: Performance of NFFlatten.flatten: time 4.099/12.79, allocations: 497.3 MB / 4.051 GB, free: 74.46 MB / 2.688 GB Notification: Performance of NFFlatten.resolveConnections: time 0.1936/12.98, allocations: 51.52 MB / 4.102 GB, free: 77.73 MB / 2.703 GB Notification: Performance of NFEvalConstants.evaluate: time 0.3602/13.34, allocations: 167.4 MB / 4.265 GB, free: 62.58 MB / 2.703 GB Notification: Performance of NFSimplifyModel.simplify: time 0.3561/13.7, allocations: 177.4 MB / 4.439 GB, free: 33.64 MB / 2.703 GB Notification: Performance of NFPackage.collectConstants: time 0.1186/13.81, allocations: 22.6 MB / 4.461 GB, free: 33.64 MB / 2.703 GB Notification: Performance of NFFlatten.collectFunctions: time 0.2475/14.06, allocations: 41.68 MB / 4.501 GB, free: 33.64 MB / 2.703 GB Notification: Performance of NFScalarize.scalarize: time 0.1404/14.2, allocations: 52.18 MB / 4.552 GB, free: 23.99 MB / 2.703 GB Notification: Performance of NFVerifyModel.verify: time 0.4589/14.66, allocations: 159.6 MB / 4.708 GB, free: 6.238 MB / 2.734 GB Notification: Performance of NFConvertDAE.convert: time 2.752/17.41, allocations: 377.9 MB / 5.077 GB, free: 248.9 MB / 2.938 GB Notification: Performance of FrontEnd - DAE generated: time 1.17e-05/17.41, allocations: 2.312 kB / 5.077 GB, free: 248.9 MB / 2.938 GB Notification: Performance of FrontEnd: time 2.274e-06/17.41, allocations: 0 / 5.077 GB, free: 248.9 MB / 2.938 GB Notification: Performance of Transformations before backend: time 0.01533/17.43, allocations: 0 / 5.077 GB, free: 248.9 MB / 2.938 GB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 51398 * Number of variables: 51398 Notification: Performance of Generate backend data structure: time 1.631/19.06, allocations: 436.7 MB / 5.504 GB, free: 104.4 MB / 2.953 GB Notification: Performance of prepare preOptimizeDAE: time 6.523e-05/19.06, allocations: 8.031 kB / 5.504 GB, free: 104.4 MB / 2.953 GB Notification: Performance of preOpt normalInlineFunction (simulation): time 0.2587/19.32, allocations: 40.25 MB / 5.543 GB, free: 69.05 MB / 2.953 GB Notification: Performance of preOpt evaluateParameters (simulation): time 0.5407/19.86, allocations: 158.9 MB / 5.698 GB, free: 13.03 MB / 3 GB Notification: Performance of preOpt simplifyIfEquations (simulation): time 0.03055/19.89, allocations: 15.38 MB / 5.713 GB, free: 4.191 MB / 3 GB Notification: Performance of preOpt expandDerOperator (simulation): time 0.1069/20, allocations: 20.52 MB / 5.733 GB, free: 6.277 MB / 3.016 GB Notification: Performance of preOpt clockPartitioning (simulation): time 0.7749/20.77, allocations: 219 MB / 5.947 GB, free: 1.699 MB / 3.172 GB Notification: Performance of preOpt findStateOrder (simulation): time 0.01411/20.79, allocations: 417.3 kB / 5.947 GB, free: 1.535 MB / 3.172 GB Notification: Performance of preOpt replaceEdgeChange (simulation): time 0.07903/20.86, allocations: 8.447 MB / 5.956 GB, free: 9.102 MB / 3.188 GB Notification: Performance of preOpt inlineArrayEqn (simulation): time 0.006021/20.87, allocations: 4.875 MB / 5.96 GB, free: 4.23 MB / 3.188 GB Notification: Performance of preOpt removeEqualRHS (simulation): time 1.69/22.56, allocations: 199.1 MB / 6.155 GB, free: 1.512 GB / 3.328 GB Warning: The model contains alias variables with redundant start and/or conflicting nominal values. It is recommended to resolve the conflicts, because otherwise the system could be hard to solve. To print the conflicting alias sets and the chosen candidates please use -d=aliasConflicts. Notification: Performance of preOpt removeSimpleEquations (simulation): time 2.382/24.94, allocations: 1.351 GB / 7.506 GB, free: 472.1 MB / 3.328 GB Notification: Performance of preOpt comSubExp (simulation): time 2.667/27.61, allocations: 0.6277 GB / 8.134 GB, free: 1.413 GB / 3.328 GB Notification: Performance of preOpt resolveLoops (simulation): time 0.2652/27.88, allocations: 99.81 MB / 8.231 GB, free: 1.412 GB / 3.328 GB Notification: Performance of preOpt evalFunc (simulation): time 0.02316/27.9, allocations: 2.417 MB / 8.234 GB, free: 1.411 GB / 3.328 GB Notification: Performance of preOpt encapsulateWhenConditions (simulation): time 0.272/28.17, allocations: 106.7 MB / 8.338 GB, free: 1.396 GB / 3.328 GB Notification: Performance of pre-optimization done (n=22267): time 0.001339/28.17, allocations: 3.844 kB / 8.338 GB, free: 1.396 GB / 3.328 GB Notification: Performance of matching and sorting (n=22267): time 0.9101/29.08, allocations: 298.5 MB / 8.629 GB, free: 1.273 GB / 3.328 GB Notification: Performance of inlineWhenForInitialization (initialization): time 0.007153/29.09, allocations: 6.47 MB / 8.636 GB, free: 1.266 GB / 3.328 GB Notification: Performance of selectInitializationVariablesDAE (initialization): time 0.3973/29.49, allocations: 138.7 MB / 8.771 GB, free: 1.155 GB / 3.328 GB Notification: Performance of collectPreVariables (initialization): time 0.05559/29.54, allocations: 4.455 MB / 8.775 GB, free: 1.15 GB / 3.328 GB Notification: Performance of collectInitialEqns (initialization): time 0.1242/29.67, allocations: 103 MB / 8.876 GB, free: 1.067 GB / 3.328 GB Notification: Performance of collectInitialBindings (initialization): time 1.502/31.17, allocations: 80.19 MB / 8.954 GB, free: 1.47 GB / 3.328 GB Notification: Performance of simplifyInitialFunctions (initialization): time 0.2284/31.4, allocations: 40 MB / 8.993 GB, free: 1.467 GB / 3.328 GB Notification: Performance of setup shared object (initialization): time 5.791e-05/31.4, allocations: 304.9 kB / 8.994 GB, free: 1.467 GB / 3.328 GB Notification: Performance of preBalanceInitialSystem (initialization): time 0.1906/31.59, allocations: 74.41 MB / 9.066 GB, free: 1.465 GB / 3.328 GB Notification: Performance of partitionIndependentBlocks (initialization): time 0.2414/31.83, allocations: 121.5 MB / 9.185 GB, free: 1.419 GB / 3.328 GB Notification: Performance of analyzeInitialSystem (initialization): time 1.754/33.58, allocations: 428.9 MB / 9.604 GB, free: 1.207 GB / 3.328 GB Notification: Performance of solveInitialSystemEqSystem (initialization): time 0.003309/33.59, allocations: 316 kB / 9.604 GB, free: 1.207 GB / 3.328 GB Notification: Performance of matching and sorting (n=31873) (initialization): time 2.324/35.91, allocations: 313.2 MB / 9.91 GB, free: 1.342 GB / 3.328 GB Notification: Performance of prepare postOptimizeDAE: time 0.004735/35.92, allocations: 487.8 kB / 9.91 GB, free: 1.342 GB / 3.328 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 0.005499/35.92, allocations: 1.083 MB / 9.911 GB, free: 1.342 GB / 3.328 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.6671/36.59, allocations: 135.1 MB / 10.04 GB, free: 1.337 GB / 3.328 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.1873/36.78, allocations: 43.37 MB / 10.09 GB, free: 1.333 GB / 3.328 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 3.747/40.52, allocations: 1.104 GB / 11.19 GB, free: 1.19 GB / 3.328 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.2551/40.78, allocations: 19.52 MB / 11.21 GB, free: 1.182 GB / 3.328 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.04854/40.83, allocations: 8.519 MB / 11.22 GB, free: 1.18 GB / 3.328 GB Warning: Assuming fixed start value for the following 128 variables: TRANSFORMER_LOAD_1_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_1_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_1_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_1_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_1_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_1_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_1_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_1_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_2_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_2_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_2_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_2_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_2_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_2_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_2_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_2_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_3_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_3_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_3_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_3_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_3_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_3_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_3_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_3_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_4_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_4_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_4_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_4_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_4_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_4_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_4_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_4_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_5_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_5_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_5_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_5_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_5_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_5_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_5_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_5_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_6_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_6_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_6_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_6_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_6_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_6_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_6_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_6_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_7_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_7_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_7_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_7_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_7_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_7_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_7_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_7_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_8_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_8_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_8_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_8_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_8_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_8_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_8_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_8_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_1_1.locked:DISCRETE(start = TRANSFORMER_LOAD_1_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_1_1.running:DISCRETE(start = TRANSFORMER_LOAD_1_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_1_2.locked:DISCRETE(start = TRANSFORMER_LOAD_1_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_1_2.running:DISCRETE(start = TRANSFORMER_LOAD_1_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_1_3.locked:DISCRETE(start = TRANSFORMER_LOAD_1_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_1_3.running:DISCRETE(start = TRANSFORMER_LOAD_1_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_1_4.locked:DISCRETE(start = TRANSFORMER_LOAD_1_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_1_4.running:DISCRETE(start = TRANSFORMER_LOAD_1_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_2_1.locked:DISCRETE(start = TRANSFORMER_LOAD_2_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_2_1.running:DISCRETE(start = TRANSFORMER_LOAD_2_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_2_2.locked:DISCRETE(start = TRANSFORMER_LOAD_2_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_2_2.running:DISCRETE(start = TRANSFORMER_LOAD_2_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_2_3.locked:DISCRETE(start = TRANSFORMER_LOAD_2_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_2_3.running:DISCRETE(start = TRANSFORMER_LOAD_2_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_2_4.locked:DISCRETE(start = TRANSFORMER_LOAD_2_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_2_4.running:DISCRETE(start = TRANSFORMER_LOAD_2_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_3_1.locked:DISCRETE(start = TRANSFORMER_LOAD_3_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_3_1.running:DISCRETE(start = TRANSFORMER_LOAD_3_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_3_2.locked:DISCRETE(start = TRANSFORMER_LOAD_3_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_3_2.running:DISCRETE(start = TRANSFORMER_LOAD_3_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_3_3.locked:DISCRETE(start = TRANSFORMER_LOAD_3_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_3_3.running:DISCRETE(start = TRANSFORMER_LOAD_3_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_3_4.locked:DISCRETE(start = TRANSFORMER_LOAD_3_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_3_4.running:DISCRETE(start = TRANSFORMER_LOAD_3_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_4_1.locked:DISCRETE(start = TRANSFORMER_LOAD_4_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_4_1.running:DISCRETE(start = TRANSFORMER_LOAD_4_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_4_2.locked:DISCRETE(start = TRANSFORMER_LOAD_4_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_4_2.running:DISCRETE(start = TRANSFORMER_LOAD_4_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_4_3.locked:DISCRETE(start = TRANSFORMER_LOAD_4_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_4_3.running:DISCRETE(start = TRANSFORMER_LOAD_4_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_4_4.locked:DISCRETE(start = TRANSFORMER_LOAD_4_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_4_4.running:DISCRETE(start = TRANSFORMER_LOAD_4_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_5_1.locked:DISCRETE(start = TRANSFORMER_LOAD_5_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_5_1.running:DISCRETE(start = TRANSFORMER_LOAD_5_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_5_2.locked:DISCRETE(start = TRANSFORMER_LOAD_5_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_5_2.running:DISCRETE(start = TRANSFORMER_LOAD_5_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_5_3.locked:DISCRETE(start = TRANSFORMER_LOAD_5_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_5_3.running:DISCRETE(start = TRANSFORMER_LOAD_5_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_5_4.locked:DISCRETE(start = TRANSFORMER_LOAD_5_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_5_4.running:DISCRETE(start = TRANSFORMER_LOAD_5_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_6_1.locked:DISCRETE(start = TRANSFORMER_LOAD_6_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_6_1.running:DISCRETE(start = TRANSFORMER_LOAD_6_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_6_2.locked:DISCRETE(start = TRANSFORMER_LOAD_6_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_6_2.running:DISCRETE(start = TRANSFORMER_LOAD_6_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_6_3.locked:DISCRETE(start = TRANSFORMER_LOAD_6_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_6_3.running:DISCRETE(start = TRANSFORMER_LOAD_6_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_6_4.locked:DISCRETE(start = TRANSFORMER_LOAD_6_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_6_4.running:DISCRETE(start = TRANSFORMER_LOAD_6_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_7_1.locked:DISCRETE(start = TRANSFORMER_LOAD_7_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_7_1.running:DISCRETE(start = TRANSFORMER_LOAD_7_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_7_2.locked:DISCRETE(start = TRANSFORMER_LOAD_7_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_7_2.running:DISCRETE(start = TRANSFORMER_LOAD_7_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_7_3.locked:DISCRETE(start = TRANSFORMER_LOAD_7_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_7_3.running:DISCRETE(start = TRANSFORMER_LOAD_7_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_7_4.locked:DISCRETE(start = TRANSFORMER_LOAD_7_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_7_4.running:DISCRETE(start = TRANSFORMER_LOAD_7_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_8_1.locked:DISCRETE(start = TRANSFORMER_LOAD_8_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_8_1.running:DISCRETE(start = TRANSFORMER_LOAD_8_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_8_2.locked:DISCRETE(start = TRANSFORMER_LOAD_8_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_8_2.running:DISCRETE(start = TRANSFORMER_LOAD_8_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_8_3.locked:DISCRETE(start = TRANSFORMER_LOAD_8_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_8_3.running:DISCRETE(start = TRANSFORMER_LOAD_8_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_8_4.locked:DISCRETE(start = TRANSFORMER_LOAD_8_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_8_4.running:DISCRETE(start = TRANSFORMER_LOAD_8_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean Notification: Performance of preBalanceInitialSystem (initialization_lambda0): time 0.2772/41.1, allocations: 96.76 MB / 11.31 GB, free: 1.096 GB / 3.328 GB Notification: Performance of partitionIndependentBlocks (initialization_lambda0): time 0.2199/41.32, allocations: 117.6 MB / 11.43 GB, free: 0.976 GB / 3.328 GB Notification: Performance of analyzeInitialSystem (initialization_lambda0): time 3.325/44.65, allocations: 418.2 MB / 11.83 GB, free: 1.236 GB / 3.328 GB Notification: Performance of solveInitialSystemEqSystem (initialization_lambda0): time 0.002389/44.65, allocations: 319.9 kB / 11.83 GB, free: 1.236 GB / 3.328 GB Notification: Performance of matching and sorting (n=31873) (initialization_lambda0): time 0.92/45.57, allocations: 286.2 MB / 12.11 GB, free: 1.117 GB / 3.328 GB Notification: Performance of prepare postOptimizeDAE: time 0.002869/45.57, allocations: 480.8 kB / 12.11 GB, free: 1.116 GB / 3.328 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 0.003984/45.58, allocations: 1.086 MB / 12.12 GB, free: 1.115 GB / 3.328 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.5865/46.16, allocations: 117.8 MB / 12.23 GB, free: 1.032 GB / 3.328 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.1819/46.35, allocations: 45.71 MB / 12.28 GB, free: 0.9931 GB / 3.328 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 3.826/50.17, allocations: 0.9386 GB / 13.21 GB, free: 0.8768 GB / 3.328 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.288/50.46, allocations: 15.77 MB / 13.23 GB, free: 0.8697 GB / 3.328 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.05728/50.52, allocations: 8.472 MB / 13.24 GB, free: 0.8678 GB / 3.328 GB Warning: Assuming fixed start value for the following 128 variables: TRANSFORMER_LOAD_1_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_1_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_1_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_1_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_1_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_1_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_1_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_1_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_2_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_2_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_2_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_2_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_2_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_2_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_2_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_2_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_3_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_3_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_3_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_3_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_3_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_3_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_3_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_3_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_4_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_4_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_4_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_4_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_4_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_4_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_4_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_4_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_5_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_5_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_5_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_5_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_5_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_5_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_5_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_5_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_6_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_6_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_6_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_6_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_6_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_6_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_6_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_6_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_7_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_7_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_7_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_7_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_7_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_7_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_7_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_7_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_8_1.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_8_1.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_8_2.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_8_2.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_8_3.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_8_3.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_8_4.valueUnderStop:DISCRETE(start = false fixed = true protected = true ) "whether the monitored signal is under the stop limit" type: Boolean TRANSFORMER_LOAD_8_4.valueAboveMax:DISCRETE(start = false fixed = true protected = true ) "wheter the monitored signal is above the maximum limit" type: Boolean TRANSFORMER_LOAD_1_1.locked:DISCRETE(start = TRANSFORMER_LOAD_1_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_1_1.running:DISCRETE(start = TRANSFORMER_LOAD_1_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_1_2.locked:DISCRETE(start = TRANSFORMER_LOAD_1_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_1_2.running:DISCRETE(start = TRANSFORMER_LOAD_1_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_1_3.locked:DISCRETE(start = TRANSFORMER_LOAD_1_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_1_3.running:DISCRETE(start = TRANSFORMER_LOAD_1_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_1_4.locked:DISCRETE(start = TRANSFORMER_LOAD_1_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_1_4.running:DISCRETE(start = TRANSFORMER_LOAD_1_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_2_1.locked:DISCRETE(start = TRANSFORMER_LOAD_2_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_2_1.running:DISCRETE(start = TRANSFORMER_LOAD_2_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_2_2.locked:DISCRETE(start = TRANSFORMER_LOAD_2_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_2_2.running:DISCRETE(start = TRANSFORMER_LOAD_2_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_2_3.locked:DISCRETE(start = TRANSFORMER_LOAD_2_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_2_3.running:DISCRETE(start = TRANSFORMER_LOAD_2_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_2_4.locked:DISCRETE(start = TRANSFORMER_LOAD_2_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_2_4.running:DISCRETE(start = TRANSFORMER_LOAD_2_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_3_1.locked:DISCRETE(start = TRANSFORMER_LOAD_3_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_3_1.running:DISCRETE(start = TRANSFORMER_LOAD_3_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_3_2.locked:DISCRETE(start = TRANSFORMER_LOAD_3_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_3_2.running:DISCRETE(start = TRANSFORMER_LOAD_3_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_3_3.locked:DISCRETE(start = TRANSFORMER_LOAD_3_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_3_3.running:DISCRETE(start = TRANSFORMER_LOAD_3_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_3_4.locked:DISCRETE(start = TRANSFORMER_LOAD_3_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_3_4.running:DISCRETE(start = TRANSFORMER_LOAD_3_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_4_1.locked:DISCRETE(start = TRANSFORMER_LOAD_4_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_4_1.running:DISCRETE(start = TRANSFORMER_LOAD_4_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_4_2.locked:DISCRETE(start = TRANSFORMER_LOAD_4_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_4_2.running:DISCRETE(start = TRANSFORMER_LOAD_4_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_4_3.locked:DISCRETE(start = TRANSFORMER_LOAD_4_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_4_3.running:DISCRETE(start = TRANSFORMER_LOAD_4_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_4_4.locked:DISCRETE(start = TRANSFORMER_LOAD_4_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_4_4.running:DISCRETE(start = TRANSFORMER_LOAD_4_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_5_1.locked:DISCRETE(start = TRANSFORMER_LOAD_5_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_5_1.running:DISCRETE(start = TRANSFORMER_LOAD_5_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_5_2.locked:DISCRETE(start = TRANSFORMER_LOAD_5_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_5_2.running:DISCRETE(start = TRANSFORMER_LOAD_5_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_5_3.locked:DISCRETE(start = TRANSFORMER_LOAD_5_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_5_3.running:DISCRETE(start = TRANSFORMER_LOAD_5_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_5_4.locked:DISCRETE(start = TRANSFORMER_LOAD_5_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_5_4.running:DISCRETE(start = TRANSFORMER_LOAD_5_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_6_1.locked:DISCRETE(start = TRANSFORMER_LOAD_6_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_6_1.running:DISCRETE(start = TRANSFORMER_LOAD_6_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_6_2.locked:DISCRETE(start = TRANSFORMER_LOAD_6_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_6_2.running:DISCRETE(start = TRANSFORMER_LOAD_6_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_6_3.locked:DISCRETE(start = TRANSFORMER_LOAD_6_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_6_3.running:DISCRETE(start = TRANSFORMER_LOAD_6_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_6_4.locked:DISCRETE(start = TRANSFORMER_LOAD_6_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_6_4.running:DISCRETE(start = TRANSFORMER_LOAD_6_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_7_1.locked:DISCRETE(start = TRANSFORMER_LOAD_7_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_7_1.running:DISCRETE(start = TRANSFORMER_LOAD_7_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_7_2.locked:DISCRETE(start = TRANSFORMER_LOAD_7_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_7_2.running:DISCRETE(start = TRANSFORMER_LOAD_7_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_7_3.locked:DISCRETE(start = TRANSFORMER_LOAD_7_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_7_3.running:DISCRETE(start = TRANSFORMER_LOAD_7_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_7_4.locked:DISCRETE(start = TRANSFORMER_LOAD_7_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_7_4.running:DISCRETE(start = TRANSFORMER_LOAD_7_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_8_1.locked:DISCRETE(start = TRANSFORMER_LOAD_8_1.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_8_1.running:DISCRETE(start = TRANSFORMER_LOAD_8_1.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_8_2.locked:DISCRETE(start = TRANSFORMER_LOAD_8_2.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_8_2.running:DISCRETE(start = TRANSFORMER_LOAD_8_2.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_8_3.locked:DISCRETE(start = TRANSFORMER_LOAD_8_3.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_8_3.running:DISCRETE(start = TRANSFORMER_LOAD_8_3.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean TRANSFORMER_LOAD_8_4.locked:DISCRETE(start = TRANSFORMER_LOAD_8_4.lockedStart fixed = true ) "whether the tap-changer/phase-shifter is locked" type: Boolean TRANSFORMER_LOAD_8_4.running:DISCRETE(start = TRANSFORMER_LOAD_8_4.runningStart fixed = true ) "whether the tap-changer/phase-shifter is running" type: Boolean Notification: Model statistics after passing the back-end for initialization: * Number of independent subsystems: 5071 * Number of states: 0 () * Number of discrete variables: 1408 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Condition537,$whenCondition536,$whenCondition535,$whenCondition534,$whenCondition533,$whenCondition532,$whenCondition531,$whenCondition530,$whenCondition529,$whenCondition528,$whenCondition527,$whenCondition526,$whenCondition546,$whenCondition545,$whenCondition544,$whenCondition564,$whenCondition563,$whenCondition562,$whenCondition561,$whenCondition560,$whenCondition559,$whenCondition558,$whenCondition557,$whenCondition556,$whenCondition555,$whenCondition554,$whenCondition553,$whenCondition552,$whenCondition551,$whenCondition550,$whenCondition549,$whenCondition548,$whenCondition547,$whenCondition567,$whenCondition566,$whenCondition565,$whenCondition585,$whenCondition584,$whenCondition583,$whenCondition582,$whenCondition581,$whenCondition580,$whenCondition579,$whenCondition578,$whenCondition577,$whenCondition576,$whenCondition575,$whenCondition574,$whenCondition573,$whenCondition572,$whenCondition571,$whenCondition570,$whenCondition569,$whenCondition568,$whenCondition588,$whenCondition587,$whenCondition586,$whenCondition606,$whenCondition605,$whenCondition604,$whenCondition603,$whenCondition602,$whenCondition601,$whenCondition600,$whenCondition599,$whenCondition598,$whenCondition597,$whenCondition596,$whenCondition595,$whenCondition594,$whenCondition593,$whenCondition592,$whenCondition591,$whenCondition590,$whenCondition589,$whenCondition609,$whenCondition608,$whenCondition607,$whenCondition627,$whenCondition626,$whenCondition625,$whenCondition624,$whenCondition623,$whenCondition622,$whenCondition621,$whenCondition620,$whenCondition619,$whenCondition618,$whenCondition617,$whenCondition616,$whenCondition615,$whenCondition614,$whenCondition613,$whenCondition612,$whenCondition611,$whenCondition610,$whenCondition630,$whenCondition629,$whenCondition628,$whenCondition648,$whenCondition647,$whenCondition646,$whenCondition645,$whenCondition644,$whenCondition643,$whenCondition642,$whenCondition641,$whenCondition640,$whenCondition639,$whenCondition638,$whenCondition637,$whenCondition636,$whenCondition635,$whenCondition634,$whenCondition633,$whenCondition632,$whenCondition631,$whenCondition651,$whenCondition650,$whenCondition649,$whenCondition669,$whenCondition668,$whenCondition667,$whenCondition666,$whenCondition665,$whenCondition664,$whenCondition663,$whenCondition662,$whenCondition661,$whenCondition660,$whenCondition659,$whenCondition658,$whenCondition657,$whenCondition656,$whenCondition655,$whenCondition654,$whenCondition653,$whenCondition652,$whenCondition672,$whenCondition671,$whenCondition670,GEN_8_4.PSS.firstWashoutVsi2.integrator.local_reset,GEN_8_4.PSS.secondWashoutVsi1.integrator.local_reset,GEN_8_4.PSS.firstWashoutVsi1.integrator.local_reset,GEN_8_4.AVR.firstOrderLim.I.local_reset,GEN_8_4.TGOV.firstOrderLim.I.local_reset,GEN_8_3.PSS.firstWashoutVsi2.integrator.local_reset,GEN_8_3.PSS.secondWashoutVsi1.integrator.local_reset,GEN_8_3.PSS.firstWashoutVsi1.integrator.local_reset,GEN_8_3.AVR.firstOrderLim.I.local_reset,GEN_8_3.TGOV.firstOrderLim.I.local_reset,GEN_8_2.PSS.firstWashoutVsi2.integrator.local_reset,GEN_8_2.PSS.secondWashoutVsi1.integrator.local_reset,GEN_8_2.PSS.firstWashoutVsi1.integrator.local_reset,GEN_8_2.AVR.firstOrderLim.I.local_reset,GEN_8_2.TGOV.firstOrderLim.I.local_reset,GEN_8_1.PSS.firstWashoutVsi2.integrator.local_reset,GEN_8_1.PSS.secondWashoutVsi1.integrator.local_reset,GEN_8_1.PSS.firstWashoutVsi1.integrator.local_reset,GEN_8_1.AVR.firstOrderLim.I.local_reset,GEN_8_1.TGOV.firstOrderLim.I.local_reset,GEN_7_4.PSS.firstWashoutVsi2.integrator.local_reset,GEN_7_4.PSS.secondWashoutVsi1.integrator.local_reset,GEN_7_4.PSS.firstWashoutVsi1.integrator.local_reset,GEN_7_4.AVR.firstOrderLim.I.local_reset,GEN_7_4.TGOV.firstOrderLim.I.local_reset,GEN_7_3.PSS.firstWashoutVsi2.integrator.local_reset,GEN_7_3.PSS.secondWashoutVsi1.integrator.local_reset,GEN_7_3.PSS.firstWashoutVsi1.integrator.local_reset,GEN_7_3.AVR.firstOrderLim.I.local_reset,GEN_7_3.TGOV.firstOrderLim.I.local_reset,GEN_7_2.PSS.firstWashoutVsi2.integrator.local_reset,GEN_7_2.PSS.secondWashoutVsi1.integrator.local_reset,GEN_7_2.PSS.firstWashoutVsi1.integrator.local_reset,GEN_7_2.AVR.firstOrderLim.I.local_reset,GEN_7_2.TGOV.firstOrderLim.I.local_reset,GEN_7_1.PSS.firstWashoutVsi2.integrator.local_reset,GEN_7_1.PSS.secondWashoutVsi1.integrator.local_reset,GEN_7_1.PSS.firstWashoutVsi1.integrator.local_reset,GEN_7_1.AVR.firstOrderLim.I.local_reset,GEN_7_1.TGOV.firstOrderLim.I.local_reset,GEN_6_4.PSS.firstWashoutVsi2.integrator.local_reset,GEN_6_4.PSS.secondWashoutVsi1.integrator.local_reset,GEN_6_4.PSS.firstWashoutVsi1.integrator.local_reset,GEN_6_4.AVR.firstOrderLim.I.local_reset,GEN_6_4.TGOV.firstOrderLim.I.local_reset,GEN_6_3.PSS.firstWashoutVsi2.integrator.local_reset,GEN_6_3.PSS.secondWashoutVsi1.integrator.local_reset,GEN_6_3.PSS.firstWashoutVsi1.integrator.local_reset,GEN_6_3.AVR.firstOrderLim.I.local_reset,GEN_6_3.TGOV.firstOrderLim.I.local_reset,GEN_6_2.PSS.firstWashoutVsi2.integrator.local_reset,GEN_6_2.PSS.secondWashoutVsi1.integrator.local_reset,GEN_6_2.PSS.firstWashoutVsi1.integrator.local_reset,GEN_6_2.AVR.firstOrderLim.I.local_reset,GEN_6_2.TGOV.firstOrderLim.I.local_reset,GEN_6_1.PSS.firstWashoutVsi2.integrator.local_reset,GEN_6_1.PSS.secondWashoutVsi1.integrator.local_reset,GEN_6_1.PSS.firstWashoutVsi1.integrator.local_reset,GEN_6_1.AVR.firstOrderLim.I.local_reset,GEN_6_1.TGOV.firstOrderLim.I.local_reset,GEN_5_4.PSS.firstWashoutVsi2.integrator.local_reset,GEN_5_4.PSS.secondWashoutVsi1.integrator.local_reset,GEN_5_4.PSS.firstWashoutVsi1.integrator.local_reset,GEN_5_4.AVR.firstOrderLim.I.local_reset,GEN_5_4.TGOV.firstOrderLim.I.local_reset,GEN_5_3.PSS.firstWashoutVsi2.integrator.local_reset,GEN_5_3.PSS.secondWashoutVsi1.integrator.local_reset,GEN_5_3.PSS.firstWashoutVsi1.integrator.local_reset,GEN_5_3.AVR.firstOrderLim.I.local_reset,GEN_5_3.TGOV.firstOrderLim.I.local_reset,GEN_5_2.PSS.firstWashoutVsi2.integrator.local_reset,GEN_5_2.PSS.secondWashoutVsi1.integrator.local_reset,GEN_5_2.PSS.firstWashoutVsi1.integrator.local_reset,GEN_5_2.AVR.firstOrderLim.I.local_reset,GEN_5_2.TGOV.firstOrderLim.I.local_reset,GEN_5_1.PSS.firstWashoutVsi2.integrator.local_reset,GEN_5_1.PSS.secondWashoutVsi1.integrator.local_reset,GEN_5_1.PSS.firstWashoutVsi1.integrator.local_reset,GEN_5_1.AVR.firstOrderLim.I.local_reset,GEN_5_1.TGOV.firstOrderLim.I.local_reset,GEN_4_4.PSS.firstWashoutVsi2.integrator.local_reset,GEN_4_4.PSS.secondWashoutVsi1.integrator.local_reset,GEN_4_4.PSS.firstWashoutVsi1.integrator.local_reset,GEN_4_4.AVR.firstOrderLim.I.local_reset,GEN_4_4.TGOV.firstOrderLim.I.local_reset,GEN_4_3.PSS.firstWashoutVsi2.integrator.local_reset,GEN_4_3.PSS.secondWashoutVsi1.integrator.local_reset,GEN_4_3.PSS.firstWashoutVsi1.integrator.local_reset,GEN_4_3.AVR.firstOrderLim.I.local_reset,GEN_4_3.TGOV.firstOrderLim.I.local_reset,GEN_4_2.PSS.firstWashoutVsi2.integrator.local_reset,GEN_4_2.PSS.secondWashoutVsi1.integrator.local_reset,GEN_4_2.PSS.firstWashoutVsi1.integrator.local_reset,GEN_4_2.AVR.firstOrderLim.I.local_reset,GEN_4_2.TGOV.firstOrderLim.I.local_reset,GEN_4_1.PSS.firstWashoutVsi2.integrator.local_reset,GEN_4_1.PSS.secondWashoutVsi1.integrator.local_reset,GEN_4_1.PSS.firstWashoutVsi1.integrator.local_reset,GEN_4_1.AVR.firstOrderLim.I.local_reset,GEN_4_1.TGOV.firstOrderLim.I.local_reset,GEN_3_4.PSS.firstWashoutVsi2.integrator.local_reset,GEN_3_4.PSS.secondWashoutVsi1.integrator.local_reset,GEN_3_4.PSS.firstWashoutVsi1.integrator.local_reset,GEN_3_4.AVR.firstOrderLim.I.local_reset,GEN_3_4.TGOV.firstOrderLim.I.local_reset,GEN_3_3.PSS.firstWashoutVsi2.integrator.local_reset,GEN_3_3.PSS.secondWashoutVsi1.integrator.local_reset,GEN_3_3.PSS.firstWashoutVsi1.integrator.local_reset,GEN_3_3.AVR.firstOrderLim.I.local_reset,GEN_3_3.TGOV.firstOrderLim.I.local_reset,GEN_3_2.PSS.firstWashoutVsi2.integrator.local_reset,GEN_3_2.PSS.secondWashoutVsi1.integrator.local_reset,GEN_3_2.PSS.firstWashoutVsi1.integrator.local_reset,GEN_3_2.AVR.firstOrderLim.I.local_reset,GEN_3_2.TGOV.firstOrderLim.I.local_reset,GEN_3_1.PSS.firstWashoutVsi2.integrator.local_reset,GEN_3_1.PSS.secondWashoutVsi1.integrator.local_reset,GEN_3_1.PSS.firstWashoutVsi1.integrator.local_reset,GEN_3_1.AVR.firstOrderLim.I.local_reset,GEN_3_1.TGOV.firstOrderLim.I.local_reset,GEN_2_4.PSS.firstWashoutVsi2.integrator.local_reset,GEN_2_4.PSS.secondWashoutVsi1.integrator.local_reset,GEN_2_4.PSS.firstWashoutVsi1.integrator.local_reset,GEN_2_4.AVR.firstOrderLim.I.local_reset,GEN_2_4.TGOV.firstOrderLim.I.local_reset,GEN_2_3.PSS.firstWashoutVsi2.integrator.local_reset,GEN_2_3.PSS.secondWashoutVsi1.integrator.local_reset,GEN_2_3.PSS.firstWashoutVsi1.integrator.local_reset,GEN_2_3.AVR.firstOrderLim.I.local_reset,GEN_2_3.TGOV.firstOrderLim.I.local_reset,GEN_2_2.PSS.firstWashoutVsi2.integrator.local_reset,GEN_2_2.PSS.secondWashoutVsi1.integrator.local_reset,GEN_2_2.PSS.firstWashoutVsi1.integrator.local_reset,GEN_2_2.AVR.firstOrderLim.I.local_reset,GEN_2_2.TGOV.firstOrderLim.I.local_reset,GEN_2_1.PSS.firstWashoutVsi2.integrator.local_reset,GEN_2_1.PSS.secondWashoutVsi1.integrator.local_reset,GEN_2_1.PSS.firstWashoutVsi1.integrator.local_reset,GEN_2_1.AVR.firstOrderLim.I.local_reset,GEN_2_1.TGOV.firstOrderLim.I.local_reset,GEN_1_4.PSS.firstWashoutVsi2.integrator.local_reset,GEN_1_4.PSS.secondWashoutVsi1.integrator.local_reset,GEN_1_4.PSS.firstWashoutVsi1.integrator.local_reset,GEN_1_4.AVR.firstOrderLim.I.local_reset,GEN_1_4.TGOV.firstOrderLim.I.local_reset,GEN_1_3.PSS.firstWashoutVsi2.integrator.local_reset,GEN_1_3.PSS.secondWashoutVsi1.integrator.local_reset,GEN_1_3.PSS.firstWashoutVsi1.integrator.local_reset,GEN_1_3.AVR.firstOrderLim.I.local_reset,GEN_1_3.TGOV.firstOrderLim.I.local_reset,GEN_1_2.PSS.firstWashoutVsi2.integrator.local_reset,GEN_1_2.PSS.secondWashoutVsi1.integrator.local_reset,GEN_1_2.PSS.firstWashoutVsi1.integrator.local_reset,GEN_1_2.AVR.firstOrderLim.I.local_reset,GEN_1_2.TGOV.firstOrderLim.I.local_reset,GEN_1_1.PSS.firstWashoutVsi2.integrator.local_reset,GEN_1_1.PSS.secondWashoutVsi1.integrator.local_reset,GEN_1_1.PSS.firstWashoutVsi1.integrator.local_reset,GEN_1_1.AVR.firstOrderLim.I.local_reset,GEN_1_1.TGOV.firstOrderLim.I.local_reset) * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for initialization (24673): * Single equations (assignments): 24383 * Array equations: 0 * Algorithm blocks: 0 * Record equations: 0 * When equations: 0 * If-equations: 0 * Equation systems (not torn): 0 * Torn equation systems: 290 * Mixed (continuous/discrete) equation systems: 0 Notification: Torn system details for strict tearing set: * Linear torn systems (#iteration vars, #inner vars, density): 128 systems {(2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%), (2,0,100.0%), (2,0,100.0%), (3,0,66.7%), (3,0,66.7%)} * Non-linear torn systems (#iteration vars, #inner vars): 162 systems {(6556,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (38,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0), (2,0), (2,0), (2,0), (2,0), (10,0)} Notification: Performance of prepare postOptimizeDAE: time 0.1298/50.65, allocations: 14.46 MB / 13.25 GB, free: 0.8596 GB / 3.328 GB Notification: Performance of postOpt lateInlineFunction (simulation): time 0.1238/50.77, allocations: 22.12 MB / 13.27 GB, free: 0.8484 GB / 3.328 GB Notification: Performance of postOpt wrapFunctionCalls (simulation): time 2.777/53.55, allocations: 248.5 MB / 13.52 GB, free: 1.182 GB / 3.328 GB Notification: Performance of postOpt simplifysemiLinear (simulation): time 0.008898/53.56, allocations: 1.021 MB / 13.52 GB, free: 1.182 GB / 3.328 GB Notification: Performance of postOpt simplifyComplexFunction (simulation): time 0.0009727/53.56, allocations: 0 / 13.52 GB, free: 1.182 GB / 3.328 GB Notification: Performance of postOpt removeConstants (simulation): time 0.238/53.8, allocations: 43.08 MB / 13.56 GB, free: 1.182 GB / 3.328 GB Notification: Performance of postOpt simplifyTimeIndepFuncCalls (simulation): time 0.1255/53.92, allocations: 4.533 MB / 13.56 GB, free: 1.182 GB / 3.328 GB Notification: Performance of postOpt simplifyAllExpressions (simulation): time 0.2422/54.16, allocations: 7.006 MB / 13.57 GB, free: 1.182 GB / 3.328 GB Notification: Performance of postOpt findZeroCrossings (simulation): time 0.08592/54.25, allocations: 19.91 MB / 13.59 GB, free: 1.182 GB / 3.328 GB Notification: Performance of postOpt createDAEmodeBDAE (simulation): time 1.014/55.26, allocations: 230.7 MB / 13.82 GB, free: 1.163 GB / 3.328 GB Notification: Performance of postOpt symbolicJacobianDAE (simulation): time 6.232/61.5, allocations: 1.028 GB / 14.84 GB, free: 1.045 GB / 3.328 GB Notification: Performance of postOpt setEvaluationStage (simulation): time 0.2603/61.76, allocations: 90.97 MB / 14.93 GB, free: 1.002 GB / 3.328 GB Notification: Performance of sorting global known variables: time 0.2885/62.04, allocations: 90.15 MB / 15.02 GB, free: 0.9701 GB / 3.328 GB Notification: Performance of Backend: time 3.015e-06/62.04, allocations: 0 / 15.02 GB, free: 0.9701 GB / 3.328 GB Notification: Performance of simCode: created initialization part: time 3.654/65.7, allocations: 0.5531 GB / 15.57 GB, free: 1.074 GB / 3.328 GB Notification: Performance of SimCode: time 5.97/71.67, allocations: 0.7147 GB / 16.29 GB, free: 0.8175 GB / 3.328 GB Notification: Performance of Templates: time 20.17/91.84, allocations: 5.016 GB / 21.3 GB, free: 0.7386 GB / 3.328 GB make -j1 -f ScalableTestGrids_noopt_ScalableTestGrids.Models.Type2.Type2_tapNoEv_N_4_M_4.makefile (rm -f ScalableTestGrids_noopt_ScalableTestGrids.Models.Type2.Type2_tapNoEv_N_4_M_4.pipe ; mkfifo ScalableTestGrids_noopt_ScalableTestGrids.Models.Type2.Type2_tapNoEv_N_4_M_4.pipe ; head -c 1048576 < ScalableTestGrids_noopt_ScalableTestGrids.Models.Type2.Type2_tapNoEv_N_4_M_4.pipe >> ../files/ScalableTestGrids_noopt_ScalableTestGrids.Models.Type2.Type2_tapNoEv_N_4_M_4.sim & ./ScalableTestGrids_noopt_ScalableTestGrids.Models.Type2.Type2_tapNoEv_N_4_M_4 -nls=kinsol -lv=LOG_STATS -abortSlowSimulation -alarm=480 -lv LOG_STATS > ScalableTestGrids_noopt_ScalableTestGrids.Models.Type2.Type2_tapNoEv_N_4_M_4.pipe 2>&1)