Analysing the shielding effectiveness of rectangular enclosure by determining aperture dimensions with particle swarm optimization

IF 1 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Sunay Güler
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引用次数: 1

Abstract

Abstract Electromagnetic shielding enclosure is used to protect electronic circuits against external EMI. Aperture on the enclosure, which is necessary for various reasons such as mounting connector, ventilation attenuates shielding effectiveness (SE) of the enclosure. Enlarging enclosure dimensions makes SE get better. Yet, they canot be designed so large due to weight and dimension considerations for EV. When the dimensions of the shielding enclosure remain fixed and the aperture is to have a particular area, it is essential to optimize aperture dimensions to increase SE. In this paper, an optimization methodology based on PSO is designed to obtain the optimal SE for a particular dimension range. The study also provides a comparative analysis between designed optimization methodology and the one based on genetic algorithm in the literature. Obtained SE results indicate that the optimization methodology establishes a very good agreement with the results in the literature. Moreover, it has faster convergence and higher calculation accuracy than GA and it utilizes a smaller number of parameters thanks to its simplicity. Finally, it is concluded that through designed optimization methodology in this study, SE of the enclosure can be raised by optimizing aperture dimensions when the dimensions of shielding enclosure remain fixed.
利用粒子群优化方法确定孔径尺寸,分析矩形围护结构的屏蔽效果
摘要电磁屏蔽外壳用于保护电子电路免受外部EMI的影响。由于安装连接器、通风等各种原因,外壳上的孔径是必要的,这会削弱外壳的屏蔽效果(SE)。扩大外壳尺寸使SE变得更好。然而,由于电动汽车的重量和尺寸考虑,它们不能设计得这么大。当屏蔽外壳的尺寸保持固定,并且孔径要有特定的面积时,优化孔径尺寸以增加SE是至关重要的。本文设计了一种基于PSO的优化方法,以获得特定尺寸范围的最佳SE。该研究还对设计的优化方法与文献中基于遗传算法的优化方法进行了比较分析。所获得的SE结果表明,优化方法与文献中的结果建立了非常好的一致性。此外,它比GA具有更快的收敛性和更高的计算精度,并且由于其简单性,它使用了较少的参数。最后得出结论,通过本研究中设计的优化方法,当屏蔽外壳的尺寸保持不变时,可以通过优化孔径尺寸来提高外壳的SE。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Electrical Engineering-elektrotechnicky Casopis
Journal of Electrical Engineering-elektrotechnicky Casopis 工程技术-工程:电子与电气
CiteScore
1.70
自引率
12.50%
发文量
40
审稿时长
6-12 weeks
期刊介绍: The joint publication of the Slovak University of Technology, Faculty of Electrical Engineering and Information Technology, and of the Slovak Academy of Sciences, Institute of Electrical Engineering, is a wide-scope journal published bimonthly and comprising. -Automation and Control- Computer Engineering- Electronics and Microelectronics- Electro-physics and Electromagnetism- Material Science- Measurement and Metrology- Power Engineering and Energy Conversion- Signal Processing and Telecommunications
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