Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr Buildings_13_Buildings.Electrical.AC.ThreePhasesUnbalanced.Lines.Examples.ACSimpleGrid_N.conf.json loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.1.0+maint.om/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.1.0+maint.om/package.mo): time 0.002405/0.002405, allocations: 80.88 kB / 21.56 MB, free: 2.93 MB / 18.57 MB " [Timeout remaining time 180] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.1.0+maint.om/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.1.0+maint.om/package.mo): time 0.002815/0.002815, allocations: 166.3 kB / 24.97 MB, free: 9.195 MB / 18.57 MB " [Timeout remaining time 180] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.1.0+maint.om/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.1.0+maint.om/package.mo): time 1.685/1.685, allocations: 177.1 MB / 205.4 MB, free: 5.004 MB / 186.7 MB " [Timeout remaining time 178] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Buildings 13.0.2-maint.13.x/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Buildings 13.0.2-maint.13.x/package.mo): time 3.251/3.251, allocations: 389.5 MB / 0.6361 GB, free: 12.31 MB / 0.6042 GB " [Timeout remaining time 176] Using package Buildings with version 13.0.2 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Buildings 13.0.2-maint.13.x/package.mo) Using package Modelica with version 4.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.1.0+maint.om/package.mo) Using package Complex with version 4.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.1.0+maint.om/package.mo) Using package ModelicaServices with version 4.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.1.0+maint.om/package.mo) Running command: translateModel(Buildings.Electrical.AC.ThreePhasesUnbalanced.Lines.Examples.ACSimpleGrid_N,tolerance=1e-06,outputFormat="empty",numberOfIntervals=2500,variableFilter="",fileNamePrefix="Buildings_13_Buildings.Electrical.AC.ThreePhasesUnbalanced.Lines.Examples.ACSimpleGrid_N") translateModel(Buildings.Electrical.AC.ThreePhasesUnbalanced.Lines.Examples.ACSimpleGrid_N,tolerance=1e-06,outputFormat="empty",numberOfIntervals=2500,variableFilter="",fileNamePrefix="Buildings_13_Buildings.Electrical.AC.ThreePhasesUnbalanced.Lines.Examples.ACSimpleGrid_N") [Timeout 300] "Notification: Performance of FrontEnd - Absyn->SCode: time 2.392e-05/2.392e-05, allocations: 6.25 kB / 0.776 GB, free: 5.359 MB / 0.7292 GB Notification: Performance of NFInst.instantiate(Buildings.Electrical.AC.ThreePhasesUnbalanced.Lines.Examples.ACSimpleGrid_N): time 0.03569/0.03571, allocations: 7.383 MB / 0.7832 GB, free: 13.98 MB / 0.7448 GB Notification: Performance of NFInst.instExpressions: time 0.02065/0.05636, allocations: 4.041 MB / 0.7871 GB, free: 9.949 MB / 0.7448 GB Notification: Performance of NFInst.updateImplicitVariability: time 0.001312/0.05767, allocations: 52.81 kB / 0.7872 GB, free: 9.898 MB / 0.7448 GB Notification: Performance of NFTyping.typeComponents: time 0.001813/0.05949, allocations: 378.4 kB / 0.7875 GB, free: 9.527 MB / 0.7448 GB Notification: Performance of NFTyping.typeBindings: time 0.002083/0.06157, allocations: 0.6463 MB / 0.7882 GB, free: 8.883 MB / 0.7448 GB Notification: Performance of NFTyping.typeClassSections: time 0.001929/0.0635, allocations: 0.6689 MB / 0.7888 GB, free: 8.215 MB / 0.7448 GB Notification: Performance of NFFlatten.flatten: time 0.006109/0.06961, allocations: 4.178 MB / 0.7929 GB, free: 4.074 MB / 0.7448 GB Notification: Performance of NFFlatten.resolveConnections: time 0.003148/0.07276, allocations: 1.47 MB / 0.7943 GB, free: 2.547 MB / 0.7448 GB Notification: Performance of NFEvalConstants.evaluate: time 0.004462/0.07722, allocations: 1.995 MB / 0.7963 GB, free: 0.5508 MB / 0.7448 GB Notification: Performance of NFSimplifyModel.simplify: time 0.002927/0.08015, allocations: 1.402 MB / 0.7976 GB, free: 15.15 MB / 0.7605 GB Notification: Performance of NFPackage.collectConstants: time 0.0006386/0.08078, allocations: 176 kB / 0.7978 GB, free: 14.98 MB / 0.7605 GB Notification: Performance of NFFlatten.collectFunctions: time 0.001624/0.08241, allocations: 403.4 kB / 0.7982 GB, free: 14.58 MB / 0.7605 GB Notification: Performance of combineBinaries: time 0.004259/0.08667, allocations: 2.499 MB / 0.8006 GB, free: 12.07 MB / 0.7605 GB Notification: Performance of replaceArrayConstructors: time 0.002107/0.08877, allocations: 1.37 MB / 0.802 GB, free: 10.76 MB / 0.7605 GB Notification: Performance of NFVerifyModel.verify: time 0.0006305/0.0894, allocations: 96 kB / 0.8021 GB, free: 10.66 MB / 0.7605 GB Notification: Performance of FrontEnd: time 0.0002182/0.08962, allocations: 20 kB / 0.8021 GB, free: 10.64 MB / 0.7605 GB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 425 (287) * Number of variables: 425 (153) Notification: Performance of [SIM] Bindings: time 0.01413/0.1038, allocations: 8.561 MB / 0.8104 GB, free: 1.816 MB / 0.7605 GB Notification: Performance of [SIM] FunctionAlias: time 0.00309/0.1068, allocations: 1.533 MB / 0.8119 GB, free: 308 kB / 0.7605 GB Notification: Performance of [SIM] Early Inline: time 0.01523/0.1221, allocations: 9.118 MB / 0.8208 GB, free: 7.129 MB / 0.7761 GB Notification: Performance of [SIM] Simplify 1: time 0.002396/0.1245, allocations: 0.8123 MB / 0.8216 GB, free: 6.238 MB / 0.7761 GB Warning: NBAlias.selectStartByConfidence: Alias set with conflicting unfixed start values of equal confidence detected. Use -d=dumprepl for more information. Notification: Performance of [SIM] Alias: time 0.01063/0.1351, allocations: 5.017 MB / 0.8265 GB, free: 0.8984 MB / 0.7761 GB Notification: Performance of [SIM] Simplify 2: time 0.001815/0.1369, allocations: 0.7792 MB / 0.8273 GB, free: 44 kB / 0.7761 GB Notification: Performance of [SIM] Remove Stream: time 0.001246/0.1382, allocations: 0.5568 MB / 0.8278 GB, free: 15.41 MB / 0.7917 GB Notification: Performance of [SIM] Detect States: time 0.003302/0.1415, allocations: 1.826 MB / 0.8296 GB, free: 13.49 MB / 0.7917 GB Notification: Performance of [SIM] Events: time 0.001237/0.1427, allocations: 0.6766 MB / 0.8303 GB, free: 12.8 MB / 0.7917 GB Notification: Performance of [SIM] Partitioning: time 0.004961/0.1477, allocations: 2.562 MB / 0.8328 GB, free: 10.09 MB / 0.7917 GB Error: Internal error NBResolveSingularities.indexReduction failed because there was not enough state candidates to balance out the constraint equations. Constraint Equations (82/88) ****************************** (1) [SCAL] (1) network.lines[1].terminal_n.phase[3].v[2] = network.lines[1].phase3.terminal_n.v[2]; ($RES_SIM_275) (2) [SCAL] (1) $DER.network.lines[1].terminal_n.phase[4].theta[1] = $DER.network.terminal[2].phase[4].theta[1]; ($RES_SIM_530) (3) [SCAL] (1) network.lines[1].terminal_n.phase[3].v[1] = network.lines[1].phase3.terminal_n.v[1]; ($RES_SIM_276) (4) [SCAL] (1) network.lines[1].terminal_n.phase[3].theta[1] = network.lines[1].phase3.terminal_n.theta[1]; ($RES_SIM_277) (5) [SCAL] (1) load.terminal.phase[3].v[2] = network.terminal[2].phase[3].v[2]; ($RES_SIM_125) (6) [SCAL] (1) $DER.network.lines[1].terminal_n.phase[1].theta[1] = $DER.network.terminal[2].phase[1].theta[1]; ($RES_SIM_525) (7) [SCAL] (1) load.terminal.phase[3].v[1] = network.terminal[2].phase[3].v[1]; ($RES_SIM_126) (8) [SCAL] (1) network.lines[1].neutral.omega = $DER.$FUN_16; ($RES_SIM_524) (9) [SCAL] (1) $DER.network.lines[1].phase1.terminal_p.theta[1] = $DER.network.lines[1].terminal_p.phase[1].theta[1]; ($RES_SIM_652) (10) [SCAL] (1) network.lines[1].phase3.omega = $DER.$FUN_11; ($RES_SIM_510) (11) [SCAL] (1) network.lines[1].terminal_n.phase[3].v[2] = network.terminal[2].phase[3].v[2]; ($RES_SIM_217) (12) [SCAL] (1) network.lines[1].terminal_n.phase[3].v[1] = network.terminal[2].phase[3].v[1]; ($RES_SIM_218) (13) [SCAL] (1) network.lines[1].phase3.heatPort.T = network.lines[1].phase3.T_heatPort; ($RES_SIM_377) (14) [SCAL] (1) network.lines[1].cableTemp.port.T = network.lines[1].phase3.heatPort.T; ($RES_SIM_290) (15) [SCAL] (1) $DER.E.terminal.phase[3].theta[1] = $DER.network.terminal[1].phase[3].theta[1]; ($RES_SIM_504) (16) [SCAL] (1) $DER.E.vPhase[1].terminal.theta[1] = $DER.E.terminal.phase[1].theta[1]; ($RES_SIM_503) (17) [SCAL] (1) $DER.network.lines[1].terminal_n.phase[1].theta[1] = $DER.network.lines[1].phase1.terminal_n.theta[1]; ($RES_SIM_638) (18) [SCAL] (1) $DER.E.terminal.phase[2].theta[1] = $DER.network.terminal[1].phase[2].theta[1]; ($RES_SIM_502) (19) [SCAL] (1) load.terminal.phase[3].theta[1] = network.terminal[2].phase[3].theta[1]; ($RES_SIM_132) (20) [SCAL] (1) $DER.E.terminal.phase[1].theta[1] = $DER.network.terminal[1].phase[1].theta[1]; ($RES_SIM_499) (21) [SCAL] (1) $FUN_12[1] = -network.lines[1].phase3.i_p[2]; ($RES_SIM_387) (22) [SCAL] (1) $FUN_12[2] = network.lines[1].phase3.i_p[1]; ($RES_SIM_388) (23) [SCAL] (1) $DER.network.lines[1].terminal_n.phase[4].theta[1] = $DER.network.lines[1].neutral.terminal_n.theta[1]; ($RES_SIM_488) (24) [SCAL] (1) network.lines[1].terminal_n.phase[3].theta[1] = network.terminal[2].phase[3].theta[1]; ($RES_SIM_224) (25) [SCAL] (1) $DER.network.lines[1].terminal_p.phase[3].theta[1] = $DER.network.terminal[1].phase[3].theta[1]; ($RES_SIM_482) (26) [SCAL] (1) $DER.$FUN_28 = 6.283185307179586 * E.vPhase[1].f; ($RES_SIM_616) (27) [SCAL] (1) network.lines[1].terminal_p.phase[4].i[2] - network.terminal[1].phase[4].i[2] = 0.0; ($RES_SIM_227) (28) [SCAL] (1) $DER.$FUN_27 = 6.283185307179586 * E.vPhase[2].f; ($RES_SIM_615) (29) [SCAL] (1) $DER.network.lines[1].terminal_p.phase[2].theta[1] = $DER.network.terminal[1].phase[2].theta[1]; ($RES_SIM_479) (30) [SCAL] (1) $DER.$FUN_26 = 6.283185307179586 * E.vPhase[3].f; ($RES_SIM_614) (31) [SCAL] (1) network.lines[1].terminal_p.phase[4].i[1] - network.terminal[1].phase[4].i[1] = 0.0; ($RES_SIM_228) (32) [SCAL] (1) network.lines[1].phase3.R_actual = (0.034466666666666666 * (network.lines[1].phase3.M + $FUN_14)) / (network.lines[1].phase3.M + ((-273.15) + network.lines[1].phase3.T_ref)); ($RES_SIM_76) (33) [SCAL] (1) network.lines[1].phase2.omega = $DER.$FUN_6; ($RES_SIM_477) (34) [SCAL] (1) network.lines[1].terminal_p.phase[3].i[2] - network.terminal[1].phase[3].i[2] = 0.0; ($RES_SIM_229) (35) [ARRY] (1) network.lines[1].phase3.terminal_p.theta = network.lines[1].phase3.terminal_n.theta; ($RES_SIM_78) (36) [SCAL] (1) $DER.network.lines[1].terminal_p.phase[1].theta[1] = $DER.network.terminal[1].phase[1].theta[1]; ($RES_SIM_475) (37) [SCAL] (1) $DER.$FUN_28 = $DER.E.vPhase[1].terminal.theta[1]; ($RES_SIM_606) (38) [SCAL] (1) $DER.$FUN_27 = $DER.E.vPhase[2].terminal.theta[1]; ($RES_SIM_605) (39) [SCAL] (1) $DER.$FUN_26 = $DER.E.vPhase[3].terminal.theta[1]; ($RES_SIM_604) (40) [SCAL] (1) $DER.network.lines[1].phase3.terminal_p.theta[1] = $DER.network.lines[1].terminal_p.phase[3].theta[1]; ($RES_SIM_471) (41) [ARRY] (1) $DER.network.lines[1].phase1.terminal_p.theta = $DER.network.lines[1].phase1.terminal_n.theta; ($RES_SIM_470) (42) [SCAL] (1) E.terminal.phase[3].v[2] = network.terminal[1].phase[3].v[2]; ($RES_SIM_145) (43) [SCAL] (1) E.terminal.phase[3].v[1] = network.terminal[1].phase[3].v[1]; ($RES_SIM_146) (44) [SCAL] (1) $DER.network.lines[1].phase2.terminal_p.theta[1] = $DER.network.lines[1].terminal_p.phase[2].theta[1]; ($RES_SIM_465) (45) [SCAL] (1) $DER.E.vPhase[3].terminal.theta[1] = $DER.E.terminal.phase[3].theta[1]; ($RES_SIM_464) (46) [ARRY] (2) load.connection3to4.terminal3.phase[3].v[:] = load.terminal.phase[3].v[:] - load.terminal.phase[4].v[:]; ($RES_SIM_15) (47) [ARRY] (1) $DER.load.terminal.phase[1].theta[:] = $DER.load.terminal.phase[4].theta[:]; ($RES_SIM_591) (48) [SCAL] (1) $DER.$FUN_16 = $DER.network.lines[1].neutral.terminal_p.theta[1]; ($RES_SIM_590) (49) [SCAL] (1) $DER.E.vPhase[2].terminal.theta[1] = $DER.E.terminal.phase[2].theta[1]; ($RES_SIM_458) (50) [SCAL] (1) $DER.$FUN_11 = $DER.network.lines[1].phase3.terminal_p.theta[1]; ($RES_SIM_589) (51) [SCAL] (1) network.lines[1].terminal_p.phase[3].i[1] - network.terminal[1].phase[3].i[1] = 0.0; ($RES_SIM_230) (52) [SCAL] (1) network.lines[1].terminal_p.phase[2].i[2] - network.terminal[1].phase[2].i[2] = 0.0; ($RES_SIM_231) (53) [SCAL] (1) network.lines[1].terminal_p.phase[2].i[1] - network.terminal[1].phase[2].i[1] = 0.0; ($RES_SIM_232) (54) [ARRY] (2) 1.570328771840034e-5 * network.lines[1].phase3.omega * $FUN_12 + network.lines[1].phase3.i_p * $FUN_13 = network.lines[1].phase3.terminal_p.v - network.lines[1].phase3.terminal_n.v; ($RES_SIM_80) (55) [SCAL] (1) network.lines[1].terminal_p.phase[1].i[2] - network.terminal[1].phase[1].i[2] = 0.0; ($RES_SIM_233) (56) [SCAL] (1) $DER.$FUN_6 = $DER.network.lines[1].phase2.terminal_p.theta[1]; ($RES_SIM_583) (57) [SCAL] (1) network.lines[1].terminal_p.phase[1].i[1] - network.terminal[1].phase[1].i[1] = 0.0; ($RES_SIM_234) (58) [SCAL] (1) $FUN_14 = (-273.15) + network.lines[1].phase3.T_heatPort; ($RES_AUX_352) (59) [ARRY] (4) $FUN_13 = diagonal(fill(1.0, 2) .* network.lines[1].phase3.R_actual); ($RES_AUX_353) (60) [SCAL] (1) $DER.$FUN_1 = $DER.network.lines[1].phase1.terminal_p.theta[1]; ($RES_SIM_578) (61) [SCAL] (1) network.lines[1].terminal_p.phase[3].v[2] = network.terminal[1].phase[3].v[2]; ($RES_SIM_237) (62) [SCAL] (1) network.lines[1].phase1.omega = $DER.$FUN_1; ($RES_SIM_576) (63) [SCAL] (1) network.lines[1].terminal_p.phase[3].v[1] = network.terminal[1].phase[3].v[1]; ($RES_SIM_238) (64) [ARRY] (2) load.connection3to4.terminal3.phase[3].v[:] = load.adaWye.terminals[3].v[:] - load.wyeToWyeGround.connection3to4.ground4.v[:]; ($RES_SIM_32) (65) [SCAL] (1) E.terminal.phase[4].theta[1] = network.terminal[1].phase[4].theta[1]; ($RES_SIM_151) (66) [SCAL] (1) network.lines[1].terminal_p.phase[4].theta[1] = network.lines[1].neutral.terminal_p.theta[1]; ($RES_SIM_252) (67) [SCAL] (1) network.lines[1].phase3.terminal_p.i[2] - network.lines[1].terminal_p.phase[3].i[2] = 0.0; ($RES_SIM_258) (68) [SCAL] (1) network.lines[1].phase3.terminal_p.i[1] - network.lines[1].terminal_p.phase[3].i[1] = 0.0; ($RES_SIM_259) (69) [SCAL] (1) network.lines[1].terminal_p.phase[4].theta[1] = network.terminal[1].phase[4].theta[1]; ($RES_SIM_243) (70) [SCAL] (1) network.lines[1].phase3.terminal_p.v[2] = network.lines[1].terminal_p.phase[3].v[2]; ($RES_SIM_260) (71) [SCAL] (1) network.lines[1].phase3.terminal_p.v[1] = network.lines[1].terminal_p.phase[3].v[1]; ($RES_SIM_261) (72) [SCAL] (1) network.lines[1].phase2.terminal_p.i[2] - network.lines[1].terminal_p.phase[2].i[2] = 0.0; ($RES_SIM_263) (73) [SCAL] (1) network.lines[1].neutral.terminal_p.i[2] - network.lines[1].terminal_p.phase[4].i[2] = 0.0; ($RES_SIM_248) (74) [SCAL] (1) network.lines[1].phase2.terminal_p.i[1] - network.lines[1].terminal_p.phase[2].i[1] = 0.0; ($RES_SIM_264) (75) [SCAL] (1) network.lines[1].neutral.terminal_p.i[1] - network.lines[1].terminal_p.phase[4].i[1] = 0.0; ($RES_SIM_249) (76) [SCAL] (1) network.lines[1].phase1.terminal_p.i[2] - network.lines[1].terminal_p.phase[1].i[2] = 0.0; ($RES_SIM_268) (77) [SCAL] (1) network.lines[1].phase1.terminal_p.i[1] - network.lines[1].terminal_p.phase[1].i[1] = 0.0; ($RES_SIM_269) (78) [SCAL] (1) E.vPhase[3].terminal.v[2] = E.terminal.phase[3].v[2]; ($RES_SIM_160) (79) [SCAL] (1) E.vPhase[3].terminal.v[1] = E.terminal.phase[3].v[1]; ($RES_SIM_161) (80) [ARRY] (1) $DER.network.lines[1].neutral.terminal_p.theta = $DER.network.lines[1].neutral.terminal_n.theta; ($RES_SIM_538) (81) [SCAL] (1) $DER.load.terminal.phase[4].theta[1] = $DER.network.terminal[2].phase[4].theta[1]; ($RES_SIM_536) (82) [SCAL] (1) $DER.load.terminal.phase[1].theta[1] = $DER.network.terminal[2].phase[1].theta[1]; ($RES_SIM_534) State Candidate Variables (30/64) *********************************** (1) [DDER] (1) Real[1, 1] $DER.network.lines.phase1.terminal_p.theta (StateSelect = avoid) (2) [DDER] (1) Real $DER.$FUN_27 (StateSelect = avoid) (3) [DDER] (1) Real[1, 1] $DER.network.lines.neutral.terminal_n.theta (StateSelect = avoid) (4) [DDER] (4) Real[1, 4, 1] $DER.network.lines.terminal_p.phase.theta (StateSelect = avoid) (5) [DDER] (3) Real[3, 1] $DER.E.vPhase.terminal.theta (StateSelect = avoid) (6) [DDER] (1) Real $DER.$FUN_16 (StateSelect = avoid) (7) [ALGB] (1) Real[1] network.lines.phase3.T_heatPort (start = {288.15 for $f2 in 1:1}, min = {0.0 for $f3 in 1:1}, nominal = {300.0 for $f1 in 1:1}) (8) [ALGB] (8) flow Real[1, 4, 2] network.lines.terminal_p.phase.i (start = {0.0 for $f1 in 1:4, $f2 in 1:1}) (9) [DDER] (1) Real $DER.$FUN_28 (StateSelect = avoid) (10) [DDER] (1) Real[1, 1] $DER.network.lines.neutral.terminal_p.theta (StateSelect = avoid) (11) [DDER] (8) Real[2, 4, 1] $DER.network.terminal.phase.theta (StateSelect = avoid) (12) [DDER] (4) Real[1, 4, 1] $DER.network.lines.terminal_n.phase.theta (StateSelect = avoid) (13) [DDER] (1) Real[1, 1] $DER.network.lines.phase1.terminal_n.theta (StateSelect = avoid) (14) [DDER] (1) Real $DER.$FUN_11 (StateSelect = avoid) (15) [ALGB] (2) Real[1, 2] network.lines.phase3.terminal_p.v (16) [ALGB] (1) Real $FUN_14 (start = Modelica.Units.Conversions.to_degC(network.lines[1].phase3.T_heatPort)) (17) [ALGB] (4) Real[2, 2] $FUN_13 (18) [ALGB] (2) Real[1, 2] network.lines.phase3.terminal_n.v (19) [ALGB] (2) Real[2] $FUN_12 (start = Buildings.Electrical.AC.ThreePhasesUnbalanced.Lines.Examples.ACSimpleGrid_N.network.lines.phase1.PhaseSystem_p.j(network.lines[1].phase3.i_p)) (20) [DDER] (4) Real[4, 1] $DER.load.terminal.phase.theta (StateSelect = avoid) (21) [DDER] (1) Real[1, 1] $DER.network.lines.phase2.terminal_p.theta (StateSelect = avoid) (22) [DDER] (1) Real $DER.$FUN_6 (StateSelect = avoid) (23) [ALGB] (1) Real[1, 1] network.lines.phase3.terminal_n.theta (24) [DDER] (1) Real $DER.$FUN_1 (StateSelect = avoid) (25) [ALGB] (1) Real[1] network.lines.phase3.heatPort.T = {network.lines[1].phase3.T_heatPort} (start = {288.15 for $f2 in 1:1}, min = {0.0 for $f3 in 1:1}, nominal = {300.0 for $f1 in 1:1}) (26) [ALGB] (1) protected Real[1] network.lines.phase3.omega (27) [DDER] (1) Real $DER.$FUN_26 (StateSelect = avoid) (28) [DDER] (4) Real[4, 1] $DER.E.terminal.phase.theta (StateSelect = avoid) (29) [DDER] (1) Real[1, 1] $DER.network.lines.phase3.terminal_p.theta (StateSelect = avoid) (30) [ALGB] (1) Real[1] network.lines.phase3.R_actual " [Timeout remaining time 300] [Calling sys.exit(0), Time elapsed: 6.524382264353335]