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Regular Paper | Open Access

Frequency Selective Metamaterial Based on Surface Discharge Behavior of the CSRR Skin Under Lightning Strike

Yushun Zhao1( )Zhiyi Liu1Yuhao Cui2Yufei Fu1Tianqi Hou1
Hefei University of Technology, Hefei 230009, China
State Grid Zhejiang Electric Power Corporation, Hangzhou 310003, China
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Abstract

Frequency selective metamaterial is an advanced material for manufacturing stealth airborne radomes. Its special structure probably makes traditional lightning protection measures fail. To identify suitable lightning protection measures for the metamaterial radome, the surface discharge behavior of the metamaterial during lightning strike needs to be studied. In this paper, a lightning strike simulation experimental platform was assembled to investigate surface discharge behaviors of circular split ring resonators (CSRR) metamaterial. A special combined discharge phenomenon was observed, which is considered to be the main reason behind the failure of the lightning protection of the metamaterial radome. Effects of lightning strike position, skin material, and number of lightning strikes on surface discharge characteristics of the metamaterial were studied carefully. Test results show that the lightning strike position has little influence on the surface discharge of the metamaterial, while the skin material and the number of lightning strikes have obvious effects on it. An equivalent chain circuit model was proposed to analyze surface discharge behavior, and a formula for estimating the surface discharge length of the skin was obtained. This work will help understand the lightning discharge phenomenon in metamaterials and provide theoretical guidance for lightning protection.

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CSEE Journal of Power and Energy Systems
Pages 1620-1629

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Cite this article:
Zhao Y, Liu Z, Cui Y, et al. Frequency Selective Metamaterial Based on Surface Discharge Behavior of the CSRR Skin Under Lightning Strike. CSEE Journal of Power and Energy Systems, 2026, 12(3): 1620-1629. https://doi.org/10.17775/CSEEJPES.2022.02160

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Received: 05 April 2022
Revised: 18 May 2022
Accepted: 13 June 2022
Published: 27 June 2022
© 2022 CSEE.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).