Analysis of Safety Influence of Converter Station of HVDC systems with common electrode
ID:175 View Protection:ATTENDEE Updated Time:2022-08-29 12:01:30 Hits:296 Oral Presentation

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Abstract
Affected by factors such as land acquisition and site selection difficulties, more and more HVDC projects selects common grounding electrode to be constructed. When HVDC system with the common grounding electrode are both in monopolar operations, one of them during the earth-to-metal loop conversions will cause the grounding grid of the converter station to form a parallel connection between the electrode by the fast grounding switch. The current is introduced into the grounding grid of the converter station, causing a risk of stepping voltage and contacting voltage of the grounding grid of the converter station, causing a DC bias magnetic of the converter transformer. This paper calculates and analyzes the safety risk of stepping voltage and contacting voltage caused by the shunt of the common grounding converter station, and points out the safety risk of DC bias magnetic of the converter transformer.
Keywords
electrode, converter station, shunt, DC bias
Speaker
Shangmao Hu
electric power research institute,CSG, China, People

Submission Author
Maoheng Jing Maintenance and Test Center of EHV Power Transmission Company, China Southern Power Grid
Shangmao Hu electric power research institute,CSG, China, People's Republic of
Wenhao Lu Maintenance and Test Center of EHV Power Transmission Company, China Southern Power Grid
Gang Liu electric power research institute,CSG, China, People's Republic of
Xiang Xiao Maintenance and Test Center of EHV Power Transmission Company, China Southern Power Grid, Guangdong Guangzhou, China,
Yi Zhang electric power research institute,CSG, China, People's Republic of
Xiaoxing Wei Maintenance and Test Center of EHV Power Transmission Company, China Southern Power Grid, Guangdong Guangzhou, China
Hansheng Cai electric power research institute,CSG, China, People's Republic of
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    Sep 25

    2022

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    Sep 29

    2022

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