Design and realization of a nearby lightning-electric field environment simulator

<b>[Objectives]</b>Lightning can be extremely harmful to ships on the open seas. Especially with the large-scale application of electronic and electrical equipment and closed integrated masts,the lightning indirect effect on ships is becoming increasingly serious. In order to effectively...

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Main Authors: Wang Ke, Duan Yantao, Shi Lihua, Huang Ruitao, Chen Hailin
Format: Article
Language:English
Published: Editorial Office of Chinese Journal of Ship Research 2019-10-01
Series:Zhongguo Jianchuan Yanjiu
Subjects:
Online Access:http://www.ship-research.com/EN/Y2019/V14/I5/119
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author Wang Ke
Duan Yantao
Shi Lihua
Huang Ruitao
Chen Hailin
author_facet Wang Ke
Duan Yantao
Shi Lihua
Huang Ruitao
Chen Hailin
author_sort Wang Ke
collection DOAJ
description <b>[Objectives]</b>Lightning can be extremely harmful to ships on the open seas. Especially with the large-scale application of electronic and electrical equipment and closed integrated masts,the lightning indirect effect on ships is becoming increasingly serious. In order to effectively carry out the lightning indirect effect test for shipborne electrical and electronic equipment,<b>[Methods]</b>a kind of nearby lightning-electric field environment simulator based on the principle of Marx generator was designed and realized in this paper. The simulator realized the peak cut-off of the impact high voltage by using the adjustable single chopping sphere gap, and established a simulated nearby lightning-electric field environment through the high voltage plate and the conductive ground plane.<b>[Results]</b>The test results show that the device has a cut-off time of less than 2 μs and a drop time of less than 0.09 μs,which can produce a pulsed electric field environment that meets the requirements of GJB 1389A-2005.<b>[Conclusions]</b>This paper can provide equipment support for the research on the indirect effect of the nearby lightning strokes on system electronic and electrical equipment based on GJB 8848-2016.
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spelling doaj.art-b564393052db4904a11171ccc6edde022022-12-21T19:48:46ZengEditorial Office of Chinese Journal of Ship ResearchZhongguo Jianchuan Yanjiu1673-31851673-31852019-10-01145119123,15810.19693/j.issn.1673-3185.01498201905017Design and realization of a nearby lightning-electric field environment simulatorWang Ke0Duan Yantao1Shi Lihua2Huang Ruitao3Chen Hailin4National Key Laboratory on Electromagnetic Environment Effects and Electro-Optical Engineering, Army Engineering University of PLA, Nanjing 210007, ChinaNational Key Laboratory on Electromagnetic Environment Effects and Electro-Optical Engineering, Army Engineering University of PLA, Nanjing 210007, ChinaNational Key Laboratory on Electromagnetic Environment Effects and Electro-Optical Engineering, Army Engineering University of PLA, Nanjing 210007, ChinaNational Key Laboratory on Electromagnetic Environment Effects and Electro-Optical Engineering, Army Engineering University of PLA, Nanjing 210007, ChinaNational Key Laboratory on Electromagnetic Environment Effects and Electro-Optical Engineering, Army Engineering University of PLA, Nanjing 210007, China<b>[Objectives]</b>Lightning can be extremely harmful to ships on the open seas. Especially with the large-scale application of electronic and electrical equipment and closed integrated masts,the lightning indirect effect on ships is becoming increasingly serious. In order to effectively carry out the lightning indirect effect test for shipborne electrical and electronic equipment,<b>[Methods]</b>a kind of nearby lightning-electric field environment simulator based on the principle of Marx generator was designed and realized in this paper. The simulator realized the peak cut-off of the impact high voltage by using the adjustable single chopping sphere gap, and established a simulated nearby lightning-electric field environment through the high voltage plate and the conductive ground plane.<b>[Results]</b>The test results show that the device has a cut-off time of less than 2 μs and a drop time of less than 0.09 μs,which can produce a pulsed electric field environment that meets the requirements of GJB 1389A-2005.<b>[Conclusions]</b>This paper can provide equipment support for the research on the indirect effect of the nearby lightning strokes on system electronic and electrical equipment based on GJB 8848-2016.http://www.ship-research.com/EN/Y2019/V14/I5/119Marx generatornearby lightning strikepulsed electric fieldlightning indirect effects
spellingShingle Wang Ke
Duan Yantao
Shi Lihua
Huang Ruitao
Chen Hailin
Design and realization of a nearby lightning-electric field environment simulator
Zhongguo Jianchuan Yanjiu
Marx generator
nearby lightning strike
pulsed electric field
lightning indirect effects
title Design and realization of a nearby lightning-electric field environment simulator
title_full Design and realization of a nearby lightning-electric field environment simulator
title_fullStr Design and realization of a nearby lightning-electric field environment simulator
title_full_unstemmed Design and realization of a nearby lightning-electric field environment simulator
title_short Design and realization of a nearby lightning-electric field environment simulator
title_sort design and realization of a nearby lightning electric field environment simulator
topic Marx generator
nearby lightning strike
pulsed electric field
lightning indirect effects
url http://www.ship-research.com/EN/Y2019/V14/I5/119
work_keys_str_mv AT wangke designandrealizationofanearbylightningelectricfieldenvironmentsimulator
AT duanyantao designandrealizationofanearbylightningelectricfieldenvironmentsimulator
AT shilihua designandrealizationofanearbylightningelectricfieldenvironmentsimulator
AT huangruitao designandrealizationofanearbylightningelectricfieldenvironmentsimulator
AT chenhailin designandrealizationofanearbylightningelectricfieldenvironmentsimulator