Research on Overvoltage Suppression by Blocking Diode and DC Circuit Breaker in LCC-VSC Hybrid HVDC System

In this study, a LCC-VSC hybrid HVDC transmission system was taken as an example. The valve and neutral overvoltage of the hybrid HVDC system were simulated and then calculated at the VSC converter station by installing a blocking diode and a DC circuit breaker, as well as by grounding after neutral...

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Main Authors: Wang Dongju, Zhou Hao
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9541387/
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spelling doaj-25a4f395c46f427a8fa000ece801af3b2021-09-28T23:00:30ZengIEEEIEEE Access2169-35362021-01-01913104213105310.1109/ACCESS.2021.31141539541387Research on Overvoltage Suppression by Blocking Diode and DC Circuit Breaker in LCC-VSC Hybrid HVDC SystemWang Dongju0https://orcid.org/0000-0003-4288-9568Zhou Hao1https://orcid.org/0000-0002-9921-5268College of Electrical Engineering, Zhejiang University, Hangzhou, ChinaCollege of Electrical Engineering, Zhejiang University, Hangzhou, ChinaIn this study, a LCC-VSC hybrid HVDC transmission system was taken as an example. The valve and neutral overvoltage of the hybrid HVDC system were simulated and then calculated at the VSC converter station by installing a blocking diode and a DC circuit breaker, as well as by grounding after neutral bus outage. The isolation effect of the blocking diode and the DC circuit breaker on the VSC converter station in the protection and the effect on the DC overvoltage were compared, and the difference was analyzed by complying with the mechanism of overvoltage. The effect of different locations of the blocking diode on the overvoltage suppression was compared, and it was concluded that different locations of blocking diode could raise different requirements for the insulation coordination of the converter valve. By analyzing energy sources of the neutral bus overvoltage at different stages, it was further concluded that the energy stored in the distributed inductance of the metal return line could be a vital source of neutral bus overvoltage energy. On that basis, an overvoltage suppression strategy for grounding neutral bus directly after the stop of the converter station was proposed.https://ieeexplore.ieee.org/document/9541387/Hybrid HVDCblocking diodeDC~breakerswitching overvoltage
collection DOAJ
language English
format Article
sources DOAJ
author Wang Dongju
Zhou Hao
spellingShingle Wang Dongju
Zhou Hao
Research on Overvoltage Suppression by Blocking Diode and DC Circuit Breaker in LCC-VSC Hybrid HVDC System
IEEE Access
Hybrid HVDC
blocking diode
DC~breaker
switching overvoltage
author_facet Wang Dongju
Zhou Hao
author_sort Wang Dongju
title Research on Overvoltage Suppression by Blocking Diode and DC Circuit Breaker in LCC-VSC Hybrid HVDC System
title_short Research on Overvoltage Suppression by Blocking Diode and DC Circuit Breaker in LCC-VSC Hybrid HVDC System
title_full Research on Overvoltage Suppression by Blocking Diode and DC Circuit Breaker in LCC-VSC Hybrid HVDC System
title_fullStr Research on Overvoltage Suppression by Blocking Diode and DC Circuit Breaker in LCC-VSC Hybrid HVDC System
title_full_unstemmed Research on Overvoltage Suppression by Blocking Diode and DC Circuit Breaker in LCC-VSC Hybrid HVDC System
title_sort research on overvoltage suppression by blocking diode and dc circuit breaker in lcc-vsc hybrid hvdc system
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2021-01-01
description In this study, a LCC-VSC hybrid HVDC transmission system was taken as an example. The valve and neutral overvoltage of the hybrid HVDC system were simulated and then calculated at the VSC converter station by installing a blocking diode and a DC circuit breaker, as well as by grounding after neutral bus outage. The isolation effect of the blocking diode and the DC circuit breaker on the VSC converter station in the protection and the effect on the DC overvoltage were compared, and the difference was analyzed by complying with the mechanism of overvoltage. The effect of different locations of the blocking diode on the overvoltage suppression was compared, and it was concluded that different locations of blocking diode could raise different requirements for the insulation coordination of the converter valve. By analyzing energy sources of the neutral bus overvoltage at different stages, it was further concluded that the energy stored in the distributed inductance of the metal return line could be a vital source of neutral bus overvoltage energy. On that basis, an overvoltage suppression strategy for grounding neutral bus directly after the stop of the converter station was proposed.
topic Hybrid HVDC
blocking diode
DC~breaker
switching overvoltage
url https://ieeexplore.ieee.org/document/9541387/
work_keys_str_mv AT wangdongju researchonovervoltagesuppressionbyblockingdiodeanddccircuitbreakerinlccvschybridhvdcsystem
AT zhouhao researchonovervoltagesuppressionbyblockingdiodeanddccircuitbreakerinlccvschybridhvdcsystem
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