A fast LVDC vacuum hybrid circuit breaker: Dielectric recovery and design consideration

Abstract Aiming at the fast protection requirements of electrical ships LVDC distribution system, this paper studies a topology of unidirectional vacuum hybrid circuit breaker. The hybrid circuit breaker is an improved current injection LVDC breaker based on precharged capacitor, which improves the...

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Main Authors: Siqi Liu, Pengfei Hu, Daozhuo Jiang, Yiqiao Liang, Jinwu Zhuang
Format: Article
Language:English
Published: Wiley 2021-11-01
Series:IET Generation, Transmission & Distribution
Online Access:https://doi.org/10.1049/gtd2.12241
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spelling doaj-1d136119c6f14dba9a2d6794cdfb2cc02021-10-04T06:28:22ZengWileyIET Generation, Transmission & Distribution1751-86871751-86952021-11-0115213058306510.1049/gtd2.12241A fast LVDC vacuum hybrid circuit breaker: Dielectric recovery and design considerationSiqi Liu0Pengfei Hu1Daozhuo Jiang2Yiqiao Liang3Jinwu Zhuang4College of Electrical Engineering Zhejiang University Hangzhou People's Republic of ChinaCollege of Electrical Engineering Zhejiang University Hangzhou People's Republic of ChinaCollege of Electrical Engineering Zhejiang University Hangzhou People's Republic of ChinaCollege of Electrical Engineering Zhejiang University Hangzhou People's Republic of ChinaCollege of Electrical Engineering Naval University of Engineering Wuhan People's Republic of ChinaAbstract Aiming at the fast protection requirements of electrical ships LVDC distribution system, this paper studies a topology of unidirectional vacuum hybrid circuit breaker. The hybrid circuit breaker is an improved current injection LVDC breaker based on precharged capacitor, which improves the dielectric recovery capability of vacuum interrupter after artificial current zero by using a freewheel diode. A synthetic test platform is built to study the dielectric strength recovery characteristics of a 45 mm diameter CuCr50 butt contact vacuum interrupter (driven by Thomson coil actuator, average opening speed of about 3 m/s)under high current(about 20 kA) and small gap(about 1 mm). The experimental results indicate that the dielectric strength of the contact can recover at a very fast speed within the arc time of 100 µs; when the arc time is increased to 320 µs, the dielectric strength of the contact cannot recover for a long time. Therefore, the design principle of the circuit breaker is obtained: within the arc time of 100 µs, by increasing the arc time can increase the contact distance, so the transient interruption voltage tolerance margin of the circuit breaker can be improved. Based on the results of the test, this paper also proposes a calculation method of forced commutation circuit parameters, which is verified by the simulation. The research results show that the DC circuit breaker can realise the rapid breaking of 20 kA fault current within 2 ms, and has a good application prospect in the LVDC distribution system.https://doi.org/10.1049/gtd2.12241
collection DOAJ
language English
format Article
sources DOAJ
author Siqi Liu
Pengfei Hu
Daozhuo Jiang
Yiqiao Liang
Jinwu Zhuang
spellingShingle Siqi Liu
Pengfei Hu
Daozhuo Jiang
Yiqiao Liang
Jinwu Zhuang
A fast LVDC vacuum hybrid circuit breaker: Dielectric recovery and design consideration
IET Generation, Transmission & Distribution
author_facet Siqi Liu
Pengfei Hu
Daozhuo Jiang
Yiqiao Liang
Jinwu Zhuang
author_sort Siqi Liu
title A fast LVDC vacuum hybrid circuit breaker: Dielectric recovery and design consideration
title_short A fast LVDC vacuum hybrid circuit breaker: Dielectric recovery and design consideration
title_full A fast LVDC vacuum hybrid circuit breaker: Dielectric recovery and design consideration
title_fullStr A fast LVDC vacuum hybrid circuit breaker: Dielectric recovery and design consideration
title_full_unstemmed A fast LVDC vacuum hybrid circuit breaker: Dielectric recovery and design consideration
title_sort fast lvdc vacuum hybrid circuit breaker: dielectric recovery and design consideration
publisher Wiley
series IET Generation, Transmission & Distribution
issn 1751-8687
1751-8695
publishDate 2021-11-01
description Abstract Aiming at the fast protection requirements of electrical ships LVDC distribution system, this paper studies a topology of unidirectional vacuum hybrid circuit breaker. The hybrid circuit breaker is an improved current injection LVDC breaker based on precharged capacitor, which improves the dielectric recovery capability of vacuum interrupter after artificial current zero by using a freewheel diode. A synthetic test platform is built to study the dielectric strength recovery characteristics of a 45 mm diameter CuCr50 butt contact vacuum interrupter (driven by Thomson coil actuator, average opening speed of about 3 m/s)under high current(about 20 kA) and small gap(about 1 mm). The experimental results indicate that the dielectric strength of the contact can recover at a very fast speed within the arc time of 100 µs; when the arc time is increased to 320 µs, the dielectric strength of the contact cannot recover for a long time. Therefore, the design principle of the circuit breaker is obtained: within the arc time of 100 µs, by increasing the arc time can increase the contact distance, so the transient interruption voltage tolerance margin of the circuit breaker can be improved. Based on the results of the test, this paper also proposes a calculation method of forced commutation circuit parameters, which is verified by the simulation. The research results show that the DC circuit breaker can realise the rapid breaking of 20 kA fault current within 2 ms, and has a good application prospect in the LVDC distribution system.
url https://doi.org/10.1049/gtd2.12241
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