Closing performances of double‐gap laser‐triggered vacuum switch

Abstract To develop high‐voltage‐pulsed power switches with better performances, a multi‐gap laser‐triggered vacuum switch is proposed in this study. Based on established test prototype for double‐gap laser‐triggered vacuum switch, closing processes of double‐gap laser‐triggered vacuum switch are di...

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Main Authors: Zhanqing Chen, Xiongying Duan, Minfu Liao, Hao Zhang, Ming Zhang, Jiyan Zou
Format: Article
Language:English
Published: Wiley 2021-04-01
Series:High Voltage
Online Access:https://doi.org/10.1049/hve2.12026
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spelling doaj-cede9104085143009915a435feb9eb672021-04-26T17:49:53ZengWileyHigh Voltage2397-72642021-04-016232833610.1049/hve2.12026Closing performances of double‐gap laser‐triggered vacuum switchZhanqing Chen0Xiongying Duan1Minfu Liao2Hao Zhang3Ming Zhang4Jiyan Zou5School of Electrical Engineering Dalian University of Technology Dalian ChinaSchool of Electrical Engineering Dalian University of Technology Dalian ChinaSchool of Electrical Engineering Dalian University of Technology Dalian ChinaSchool of Electrical Engineering Dalian University of Technology Dalian ChinaSchool of Electrical Engineering Dalian University of Technology Dalian ChinaSchool of Electrical Engineering Dalian University of Technology Dalian ChinaAbstract To develop high‐voltage‐pulsed power switches with better performances, a multi‐gap laser‐triggered vacuum switch is proposed in this study. Based on established test prototype for double‐gap laser‐triggered vacuum switch, closing processes of double‐gap laser‐triggered vacuum switch are discussed combined with laser‐produced plasma. Closing performances of double‐gap laser‐triggered vacuum switch under different gap polarity configurations, operating voltages, laser energies and laser split ratios are investigated. Closing time delay characteristics of double‐gap laser‐triggered vacuum switch and single‐gap laser‐triggered vacuum switch are compared later. The test results prove that, affected by the imbalanced developed initial plasma between gaps, double‐gap laser‐triggered vacuum switch with two positive gaps and 1:1 laser split ratio presents best closing performances than other switches. With the rise of laser energy, closing delay time and jitter time of double‐gap laser‐triggered vacuum switch both decrease, while the influences from increasing voltages are weak. Closing delay time of P–P type double‐gap laser‐triggered vacuum switch can be controlled within 103 ± 1.5 ns under 90 mJ laser energy, and it is about 10 ns longer than single‐gap laser‐triggered vacuum switch. For some direct current applications with changing voltage directions, P–N type double‐gap laser‐triggered vacuum switch with 1:1 laser split ratio shows more stable closing performances. In addition, closing performances of double‐gap laser‐triggered vacuum switch can be further improved by optimizing the developments of initial plasma in series gaps.https://doi.org/10.1049/hve2.12026
collection DOAJ
language English
format Article
sources DOAJ
author Zhanqing Chen
Xiongying Duan
Minfu Liao
Hao Zhang
Ming Zhang
Jiyan Zou
spellingShingle Zhanqing Chen
Xiongying Duan
Minfu Liao
Hao Zhang
Ming Zhang
Jiyan Zou
Closing performances of double‐gap laser‐triggered vacuum switch
High Voltage
author_facet Zhanqing Chen
Xiongying Duan
Minfu Liao
Hao Zhang
Ming Zhang
Jiyan Zou
author_sort Zhanqing Chen
title Closing performances of double‐gap laser‐triggered vacuum switch
title_short Closing performances of double‐gap laser‐triggered vacuum switch
title_full Closing performances of double‐gap laser‐triggered vacuum switch
title_fullStr Closing performances of double‐gap laser‐triggered vacuum switch
title_full_unstemmed Closing performances of double‐gap laser‐triggered vacuum switch
title_sort closing performances of double‐gap laser‐triggered vacuum switch
publisher Wiley
series High Voltage
issn 2397-7264
publishDate 2021-04-01
description Abstract To develop high‐voltage‐pulsed power switches with better performances, a multi‐gap laser‐triggered vacuum switch is proposed in this study. Based on established test prototype for double‐gap laser‐triggered vacuum switch, closing processes of double‐gap laser‐triggered vacuum switch are discussed combined with laser‐produced plasma. Closing performances of double‐gap laser‐triggered vacuum switch under different gap polarity configurations, operating voltages, laser energies and laser split ratios are investigated. Closing time delay characteristics of double‐gap laser‐triggered vacuum switch and single‐gap laser‐triggered vacuum switch are compared later. The test results prove that, affected by the imbalanced developed initial plasma between gaps, double‐gap laser‐triggered vacuum switch with two positive gaps and 1:1 laser split ratio presents best closing performances than other switches. With the rise of laser energy, closing delay time and jitter time of double‐gap laser‐triggered vacuum switch both decrease, while the influences from increasing voltages are weak. Closing delay time of P–P type double‐gap laser‐triggered vacuum switch can be controlled within 103 ± 1.5 ns under 90 mJ laser energy, and it is about 10 ns longer than single‐gap laser‐triggered vacuum switch. For some direct current applications with changing voltage directions, P–N type double‐gap laser‐triggered vacuum switch with 1:1 laser split ratio shows more stable closing performances. In addition, closing performances of double‐gap laser‐triggered vacuum switch can be further improved by optimizing the developments of initial plasma in series gaps.
url https://doi.org/10.1049/hve2.12026
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