Volume 33 Issue 4
May  2021
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Zeng Meiling, Cai Jinliang, Yi Zao, et al. Effect of aperture on shielding performance of metal cavity under excitation of high-intensity electromagnetic pulse[J]. High Power Laser and Particle Beams, 2021, 33: 043004. doi: 10.11884/HPLPB202133.200336
Citation: Zeng Meiling, Cai Jinliang, Yi Zao, et al. Effect of aperture on shielding performance of metal cavity under excitation of high-intensity electromagnetic pulse[J]. High Power Laser and Particle Beams, 2021, 33: 043004. doi: 10.11884/HPLPB202133.200336

Effect of aperture on shielding performance of metal cavity under excitation of high-intensity electromagnetic pulse

doi: 10.11884/HPLPB202133.200336
  • Received Date: 2020-12-14
  • Rev Recd Date: 2021-03-09
  • Available Online: 2021-03-24
  • Publish Date: 2021-05-02
  • High-intensity electromagnetic pulses like high-altitude electromagnetic pulse (HEMP), high power microwave (HPM) are very harmful to electronic devices, which will cause malfunction or even damage to electronics. Using metallic cavity to isolate electronic systems from high-intensity electromagnetic pulse is an important and effective way to lessen the effect. Herein, we performed a systematic study on coupling property of metallic cavity with a rectangular aperture under the excitation of three types of high-intensity electromagnetic pulses, i.e., HEMP, wide-band HPM, and narrow-band HPM. The width/length ratio of aperture and cavity size were varied to investigate their effect on electromagnetic coupling. The interaction mechanism of high-intensity electromagnetic pulses and the metallic cavity was also carefully analyzed. The results demonstrate that the shielding property of metallic cavity is highly dependent on resonance mode of cavity, resonant frequency of aperture as well as the spectral characteristics of high-intensity electromagnetic pulse. When the resonance mode of cavity, and/or resonant frequency of aperture are within the bandwidth of high-intensity electromagnetic pulse, an enlarged coupling electromagnetic field in the metallic is always produced. Specifically, the interaction between the cavity and aperture can give rise to spectral shift of resonant frequency. Therefore, to obtain excellent shielding effect, we need to take into consideration the suppression of resonance mode of cavity, resonant frequency of apertureas well as the spectral shift when performing electromagnetic protection of electronic devices.
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  • [1]
    周璧华, 陈彬, 石立华. 电磁脉冲及其工程防护[M]. 北京: 国防工业出版社, 2003.

    Zhou Bihua, Chen Bin, Shi Lihua. EMP and EMP protection[M]. Beijing: National Defense Industry Press, 2003)
    [2]
    MIL-STD-464, Electromagnetic environmental effects requirements for systems[S].
    [3]
    Camp M, Gerth H, Garbe H, et al. Predicting the breakdown behavior of microcontrollers under EMP/UWB impact using a statistical analysis[J]. IEEE Transactions on Electromagnetic Compatibility, 2004, 46(3): 368-379. doi: 10.1109/TEMC.2004.831816
    [4]
    Månsson D, Thottappillil R, Bäckström M, et al. Vulnerability of European rail traffic management system to radiated intentional EMI[J]. IEEE Transactions on Electromagnetic Compatibility, 2008, 50(1): 101-109. doi: 10.1109/TEMC.2007.915281
    [5]
    Bäckström M G, Lövstrand K G. Susceptibility of electronic systems to high-power microwaves: summary of test experience[J]. IEEE Transactions on Electromagnetic Compatibility, 2004, 46(3): 396-403. doi: 10.1109/TEMC.2004.831814
    [6]
    鲍永波, 田杨萌, 王彩霞, 等. 核电磁脉冲与开孔金属腔体耦合特性研究[J]. 微波学报, 2017, 33(6):75-80. (Bao Yongbo, Tian Yangmeng, Wang Caixia, et al. Research on the characteristics of the NEMP coupling into a metallic cavity with apertures[J]. Journal of Microwaves, 2017, 33(6): 75-80
    [7]
    刘强, 徐勇, 孟雪松, 等. 基于CP-FDTD的复杂细缝屏蔽效能分析方法[J]. 强激光与粒子束, 2019, 31:103209. (Liu Qiang, Xu Yong, Meng Xuesong, et al. Method of analyzing shielding effectiveness of complex thin slots based on CP-FDTD[J]. High Power Laser and Particle Beams, 2019, 31: 103209
    [8]
    陈宗胜, 李志刚. 开口金属腔体对强电磁脉冲的耦合效应[J]. 国防科技大学学报, 2020, 42(1):18-23. (Chen Zongsheng, Li Zhigang. Coupling effects of open-ended metal enclosure induced by powerful electromagnetic pulse[J]. Journal of National University of Defense Technology, 2020, 42(1): 18-23
    [9]
    刘顺坤, 傅君眉, 周辉, 等. 电磁脉冲对目标腔体的孔缝耦合效应数值研究[J]. 电波科学学报, 1999, 14(2):202-206. (Liu Shunkun, Fu Junmei, Zhou Hui, et al. Numerical studies on coupling effects of EMP into slots[J]. Chinese Journal of Radio Science, 1999, 14(2): 202-206
    [10]
    付继伟, 侯朝桢, 窦丽华. 电磁脉冲斜入射时对孔缝耦合效应的数值分析[J]. 强激光与粒子束, 2003, 15(3):249-252. (Fu Jiwei, Hou Chaozhen, Dou Lihua. Numerical analysis on hole coupling effects of an oblique incidence of electromagnetic pulse[J]. High Power Laser and Particle Beams, 2003, 15(3): 249-252
    [11]
    Gu Chunhong, Li Shufang. Shielding effectiveness of an enclosure with apertures[C]//2005 IEEE International Symposium on Microwave, Antenna, Propagation and EMC Technologies for Wireless Communications. Beijing, China: IEEE, 2005: 614-618.
    [12]
    Po’ad F A, Jenu M Z M, Christopoulos C, et al. Shielding effectiveness of rectangular metallic enclosures with apertures[C]//2005 Asia-Pacific Conference on Applied Electromagnetics. Johor, Malaysia: IEEE, 2005: 5.
    [13]
    Zhang Xufeng, Zhang Weidong, Cui Xiang. Research on shielding effectiveness of enclosure with apertures[C]//2010 Asia-Pacific International Symposium on Electromagnetic Compatibility. Beijing, China: IEEE, 2010: 928-931.
    [14]
    史鹏飞, 刘小龙, 斛彦生, 等. 超宽谱电磁脉冲对有孔缝腔体耦合效应的研究[C]//2010振动与噪声测试峰会论文集. 2010.

    Shi Pengfei, Liu Xiaolong, Hu Yansheng, et al. Research on the coupling effect of ultra-wide spectrum electromagnetic pulse on cavity with slots[C]//2010 Proceedings of the Vibration and Noise Testing Summit. 2010
    [15]
    肖金石, 刘文化, 张世英, 等. 超宽带电磁脉冲对腔体孔缝耦合效应的数值模拟[J]. 强激光与粒子束, 2010, 22(12):2959-2963. (Xiao Jinshi, Liu Wenhua, Zhang Shiying, et al. Numerical simulation on coupling effects of ultra wide band electromagnetic pulse into slots in a cavity[J]. High Power Laser and Particle Beams, 2010, 22(12): 2959-2963 doi: 10.3788/HPLPB20102212.2959
    [16]
    Celozzi S, Araneo R. Alternative definitions for the time-domain shielding effectiveness of enclosures[J]. IEEE Transactions on Electromagnetic Compatibility, 2014, 56(2): 482-485. doi: 10.1109/TEMC.2013.2282713
    [17]
    王建国, 刘国治, 周金山. 微波孔缝线性耦合函数研究[J]. 强激光与粒子束, 2003, 15(11):1093-1099. (Wang Jianguo, Liu Guozhi, Zhou Jinshan. Investigations on function for linear coupling of microwaves into slots[J]. High Power Laser and Particle Beams, 2003, 15(11): 1093-1099
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