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Shielding Effectiveness Analysis and Modification of the Coupling Effect Transmission Line Method on Cavities with Multi-Sided Apertures

机译:多孔腔体的屏蔽效能分析及耦合效应传输线法的改进

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Because the traditional transmission line method treats electromagnetic waves as excitation sources and the cavity as a rectangular waveguide whose terminal is shorted, the transmission line method can only calculate shielding effectiveness in the center line of the cavity with apertures on one side. In this paper, the aperture coupling effect of different sides was analyzed based on vector analysis. According to the field intensity distribution of different transport modes in the rectangular waveguide, the calculation model of cavity shielding effectiveness in any position is proposed, which can solve the question of the calculation model of shielding effectiveness in any position in the traditional method of equivalent transmission methods. Further expansion of the equivalent transmission lines model is adopted to study the shielding effectiveness of different aperture cavities, and the coupling effect rule of the incident angle, the number of apertures, and the size of the cavity is obtained, which can provide the technical support for the design of electromagnetic shielding cavities for electronic equipment.
机译:由于传统的传输线方法将电磁波作为激励源,将腔体当作其末端短路的矩形波导,因此传输线方法只能计算在一侧有孔的腔体中心线的屏蔽效果。本文基于矢量分析法分析了不同侧面的孔径耦合效应。根据矩形波导中不同传输模式的场强分布,提出了任意位置的腔体屏蔽效率计算模型,可以解决传统等效传输方法中任意位置的腔体屏蔽效率计算模型的问题。方法。通过等效传输线模型的进一步扩展,研究了不同孔腔的屏蔽效果,得出了入射角,孔数和腔尺寸的耦合效应规律,可以为技术提供支持。用于电子设备的电磁屏蔽腔的设计。

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