Influence of transition resistance and fault moment on DC system commutation process caused by two-phase fault of AC system

Commutation failure caused by the fault of AC system at inverter side seriously affects the safety and stability of high-voltage direct current (HVDC) system. Although two-phase fault is a typical asymmetrical fault, the studies on commutation failure caused by two-phase fault are few compared with...

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Main Authors: Jinzhao Song, Yongli Li, Yunke Zhang, Jingqiu Zhang
Format: Article
Language:English
Published: Wiley 2018-10-01
Series:The Journal of Engineering
Subjects:
Online Access:https://digital-library.theiet.org/content/journals/10.1049/joe.2018.8884
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spelling doaj-87c6d4afe2f74e2f80f92c3edc8f00662021-04-02T13:11:14ZengWileyThe Journal of Engineering2051-33052018-10-0110.1049/joe.2018.8884JOE.2018.8884Influence of transition resistance and fault moment on DC system commutation process caused by two-phase fault of AC systemJinzhao Song0Yongli Li1Yunke Zhang2Jingqiu Zhang3Key laboratory of Smart Grid of Ministry of Education, Tianjin UniversityKey laboratory of Smart Grid of Ministry of Education, Tianjin UniversityKey laboratory of Smart Grid of Ministry of Education, Tianjin UniversityKey laboratory of Smart Grid of Ministry of Education, Tianjin UniversityCommutation failure caused by the fault of AC system at inverter side seriously affects the safety and stability of high-voltage direct current (HVDC) system. Although two-phase fault is a typical asymmetrical fault, the studies on commutation failure caused by two-phase fault are few compared with the studies on commutation failure caused by three-phase fault or single-phase fault. In this study, the features of two-phase fault occurring on commutation bus is analysed theoretically. The analysis shows that the transition resistance will affect the amplitude and phase of the commutation voltage at Y-Y and Y-D1 transformer valve sides. Furthermore, the change regularity of the commutation voltage along with the change of transition resistance is given. Taking interphase short circuit as an example, the influence of different fault moments on commutation process is studied. For the first commutation process before the fault, the possible cases of commutation failure are given for fault moments in one cycle. For the first commutation process after the fault, a calculation method of critical voltage drop is given. Simulation results verify the correctness of the analysis.https://digital-library.theiet.org/content/journals/10.1049/joe.2018.8884invertorspower transformerspower transmission faultsfault diagnosisHVDC power transmissioncommutationfailure analysispower system stabilitypower transmission reliabilitysafety systemsDC system commutation processtwo-phase faultAC systemcommutation failurehigh-voltage direct current systemtypical asymmetrical faultthree-phase faultsingle-phase faultcommutation bustransition resistancecommutation voltagefault momentsinverterY-D1 transformer valveY-Y transformer valveinterphase short circuitcritical voltage drop calculation methodHVDC system stabilityHVDC system safety
collection DOAJ
language English
format Article
sources DOAJ
author Jinzhao Song
Yongli Li
Yunke Zhang
Jingqiu Zhang
spellingShingle Jinzhao Song
Yongli Li
Yunke Zhang
Jingqiu Zhang
Influence of transition resistance and fault moment on DC system commutation process caused by two-phase fault of AC system
The Journal of Engineering
invertors
power transformers
power transmission faults
fault diagnosis
HVDC power transmission
commutation
failure analysis
power system stability
power transmission reliability
safety systems
DC system commutation process
two-phase fault
AC system
commutation failure
high-voltage direct current system
typical asymmetrical fault
three-phase fault
single-phase fault
commutation bus
transition resistance
commutation voltage
fault moments
inverter
Y-D1 transformer valve
Y-Y transformer valve
interphase short circuit
critical voltage drop calculation method
HVDC system stability
HVDC system safety
author_facet Jinzhao Song
Yongli Li
Yunke Zhang
Jingqiu Zhang
author_sort Jinzhao Song
title Influence of transition resistance and fault moment on DC system commutation process caused by two-phase fault of AC system
title_short Influence of transition resistance and fault moment on DC system commutation process caused by two-phase fault of AC system
title_full Influence of transition resistance and fault moment on DC system commutation process caused by two-phase fault of AC system
title_fullStr Influence of transition resistance and fault moment on DC system commutation process caused by two-phase fault of AC system
title_full_unstemmed Influence of transition resistance and fault moment on DC system commutation process caused by two-phase fault of AC system
title_sort influence of transition resistance and fault moment on dc system commutation process caused by two-phase fault of ac system
publisher Wiley
series The Journal of Engineering
issn 2051-3305
publishDate 2018-10-01
description Commutation failure caused by the fault of AC system at inverter side seriously affects the safety and stability of high-voltage direct current (HVDC) system. Although two-phase fault is a typical asymmetrical fault, the studies on commutation failure caused by two-phase fault are few compared with the studies on commutation failure caused by three-phase fault or single-phase fault. In this study, the features of two-phase fault occurring on commutation bus is analysed theoretically. The analysis shows that the transition resistance will affect the amplitude and phase of the commutation voltage at Y-Y and Y-D1 transformer valve sides. Furthermore, the change regularity of the commutation voltage along with the change of transition resistance is given. Taking interphase short circuit as an example, the influence of different fault moments on commutation process is studied. For the first commutation process before the fault, the possible cases of commutation failure are given for fault moments in one cycle. For the first commutation process after the fault, a calculation method of critical voltage drop is given. Simulation results verify the correctness of the analysis.
topic invertors
power transformers
power transmission faults
fault diagnosis
HVDC power transmission
commutation
failure analysis
power system stability
power transmission reliability
safety systems
DC system commutation process
two-phase fault
AC system
commutation failure
high-voltage direct current system
typical asymmetrical fault
three-phase fault
single-phase fault
commutation bus
transition resistance
commutation voltage
fault moments
inverter
Y-D1 transformer valve
Y-Y transformer valve
interphase short circuit
critical voltage drop calculation method
HVDC system stability
HVDC system safety
url https://digital-library.theiet.org/content/journals/10.1049/joe.2018.8884
work_keys_str_mv AT jinzhaosong influenceoftransitionresistanceandfaultmomentondcsystemcommutationprocesscausedbytwophasefaultofacsystem
AT yonglili influenceoftransitionresistanceandfaultmomentondcsystemcommutationprocesscausedbytwophasefaultofacsystem
AT yunkezhang influenceoftransitionresistanceandfaultmomentondcsystemcommutationprocesscausedbytwophasefaultofacsystem
AT jingqiuzhang influenceoftransitionresistanceandfaultmomentondcsystemcommutationprocesscausedbytwophasefaultofacsystem
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