Predicting the shielding effectiveness of rectangular apertures

C. Vitek
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引用次数: 5

Abstract

A method is described for predicting the behavior of rectangular apertures that makes use of a special transverse electromagnetic (TEM) cell to simulate far-field behavior. Several test apertures of different dimensions (12*12, 12*9, 12*8, 12*6, 12*4, 12*3, 12*2, 12*1.5, and 12*1 in.) were selected to represent the ratios 1:1, 1.3:1, 1.5:1, 2:1, 3:1, 4:1, 6:1, 8:1, and 12:1 in order to test the original assumption that the shielding effectiveness of all of these openings would be represented by the same equation: R/sub dB/=20log(w/2d) where w represents the wavelength of the signal across the opening, d represents the longest dimension of the opening in meters, and R is the attenuation in decibels. A relationship between the ratio changes and the shielding effectiveness was observed as well as a dependence on the polarization of the slot with respect to incident electric and magnetic fields. New models for both polarizations were developed based on the data. The one chosen to represent the worse-case shielding of the apertures is discussed.<>
预测矩形孔径的屏蔽效能
描述了一种利用特殊的横向电磁(TEM)单元模拟远场行为来预测矩形孔径行为的方法。选择几个不同尺寸的测试孔(12*12、12*9、12*8、12*6、12*4、12*3、12*2、12*1.5和12*1 in.)来表示比例为1:1、1.3:1、1.5:1、2:1、3:1、4:1、6:1、8:1和12:1,以测试所有这些开口的屏蔽效能将由相同方程表示的原始假设:R/sub dB/=20log(w/2d),其中w表示穿过开口的信号波长,d表示开口的最长维度,单位为米,R为衰减,单位为分贝。观察到该比值的变化与屏蔽效能之间的关系,以及对入射电场和磁场的缝隙极化的依赖。在此基础上建立了两种极化的新模型。讨论了选择一个表示孔的最坏情况屏蔽的方法。
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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