Multi-layer power system tearing methodology for EMT-TS hybrid parallel simulation
Due to the fast development of UHVDC, the power transferring through HVDCs takes a great part of the power from West China to East China. The response for multiple-coupled HVDCs can only be simulated through EMT programmes. To increase the simulation accuracy, the EMT-TS Hybrid simulation has been u...
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doaj-5b6d9823ef0a4008b23f311ea5e89d9d2021-04-02T13:28:31ZengWileyThe Journal of Engineering2051-33052019-04-0110.1049/joe.2018.8836JOE.2018.8836Multi-layer power system tearing methodology for EMT-TS hybrid parallel simulationQing Mu0Xing Zhang1Chunming Gong2Yu Chen3China Electric Power Research InstituteChina Electric Power Research InstituteChina Electric Power Research InstituteChina Electric Power Research InstituteDue to the fast development of UHVDC, the power transferring through HVDCs takes a great part of the power from West China to East China. The response for multiple-coupled HVDCs can only be simulated through EMT programmes. To increase the simulation accuracy, the EMT-TS Hybrid simulation has been used in studies of the power system operation. Currently, the EMT-TS hybrid simulation speed is too slow to be unaffordable. This paper presents a novel power system tearing technology to greatly improve the simulation speed in EMT-ST Hybrid Simulation. The TS network is teared according to obtain network islands as many as possible, while the EMT network is teared through the combined transmission line and electric nodes. An algorithm is supposed to form the EMT-ST sub-network groups, which has no coupling with each other. Then, a novel parallel programme structure is proposed to use this EMT-ST sub-network groups to realise the parallel simulation and speedup the simulation. The case studies of the grids with seven HVDCs and 3000 nodes show that the proposed method could greatly improve the simulation speed without lowering precision.https://digital-library.theiet.org/content/journals/10.1049/joe.2018.8836power gridspower system transientsHVDC power transmissionEMTPEMT-TS hybrid parallel simulationpower transferringWest ChinaEast Chinamultiple-coupled HVDCsEMT programmessimulation accuracypower system operationEMT-TS hybrid simulation speedTS networknetwork islandsEMT-ST sub-network groupsparallel programme structuremultilayer power systempower system tearing technologyUHVDC |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Qing Mu Xing Zhang Chunming Gong Yu Chen |
spellingShingle |
Qing Mu Xing Zhang Chunming Gong Yu Chen Multi-layer power system tearing methodology for EMT-TS hybrid parallel simulation The Journal of Engineering power grids power system transients HVDC power transmission EMTP EMT-TS hybrid parallel simulation power transferring West China East China multiple-coupled HVDCs EMT programmes simulation accuracy power system operation EMT-TS hybrid simulation speed TS network network islands EMT-ST sub-network groups parallel programme structure multilayer power system power system tearing technology UHVDC |
author_facet |
Qing Mu Xing Zhang Chunming Gong Yu Chen |
author_sort |
Qing Mu |
title |
Multi-layer power system tearing methodology for EMT-TS hybrid parallel simulation |
title_short |
Multi-layer power system tearing methodology for EMT-TS hybrid parallel simulation |
title_full |
Multi-layer power system tearing methodology for EMT-TS hybrid parallel simulation |
title_fullStr |
Multi-layer power system tearing methodology for EMT-TS hybrid parallel simulation |
title_full_unstemmed |
Multi-layer power system tearing methodology for EMT-TS hybrid parallel simulation |
title_sort |
multi-layer power system tearing methodology for emt-ts hybrid parallel simulation |
publisher |
Wiley |
series |
The Journal of Engineering |
issn |
2051-3305 |
publishDate |
2019-04-01 |
description |
Due to the fast development of UHVDC, the power transferring through HVDCs takes a great part of the power from West China to East China. The response for multiple-coupled HVDCs can only be simulated through EMT programmes. To increase the simulation accuracy, the EMT-TS Hybrid simulation has been used in studies of the power system operation. Currently, the EMT-TS hybrid simulation speed is too slow to be unaffordable. This paper presents a novel power system tearing technology to greatly improve the simulation speed in EMT-ST Hybrid Simulation. The TS network is teared according to obtain network islands as many as possible, while the EMT network is teared through the combined transmission line and electric nodes. An algorithm is supposed to form the EMT-ST sub-network groups, which has no coupling with each other. Then, a novel parallel programme structure is proposed to use this EMT-ST sub-network groups to realise the parallel simulation and speedup the simulation. The case studies of the grids with seven HVDCs and 3000 nodes show that the proposed method could greatly improve the simulation speed without lowering precision. |
topic |
power grids power system transients HVDC power transmission EMTP EMT-TS hybrid parallel simulation power transferring West China East China multiple-coupled HVDCs EMT programmes simulation accuracy power system operation EMT-TS hybrid simulation speed TS network network islands EMT-ST sub-network groups parallel programme structure multilayer power system power system tearing technology UHVDC |
url |
https://digital-library.theiet.org/content/journals/10.1049/joe.2018.8836 |
work_keys_str_mv |
AT qingmu multilayerpowersystemtearingmethodologyforemttshybridparallelsimulation AT xingzhang multilayerpowersystemtearingmethodologyforemttshybridparallelsimulation AT chunminggong multilayerpowersystemtearingmethodologyforemttshybridparallelsimulation AT yuchen multilayerpowersystemtearingmethodologyforemttshybridparallelsimulation |
_version_ |
1721564903235387392 |