A hybrid approach to calculate mean response and variance in a reverberant environment

R. Langley, A. Barbarulo, L. Kovalevsky
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Abstract

In this paper a statistical approach is employed to solve high frequency EMC problems at a reduced computational cost. The case of interest is a system lying within a reverberant cavity that has random or uncertain properties. If a conventional numerical approach is employed for this problem then very significant computational effort is required since Maxwell's equations need to be solved for both the cavity and the system. The key aspect of the proposed approach is to avoid solving Maxwell's equations inside the cavity by employing a relation known as the diffuse field reciprocity principle, which leads directly to the ensemble mean response of the system and its variance; all that is required is the impedance matrix of the system associated with radiation into infinite space. Theoretical developments leading to the mean and variance are presented. This technique is then applied to a numerical example.
计算混响环境中平均响应和方差的混合方法
本文采用统计方法来求解高频电磁兼容问题,减少了计算成本。感兴趣的情况是一个系统位于具有随机或不确定性质的混响腔内。如果采用传统的数值方法求解该问题,则需要大量的计算工作,因为需要同时求解腔体和系统的麦克斯韦方程组。所提出的方法的关键方面是通过采用一种称为漫射场互易原理的关系来避免在腔内求解麦克斯韦方程组,这直接导致系统的系综平均响应及其方差;所需要的是与辐射到无限空间相关的系统的阻抗矩阵。介绍了导致均值和方差的理论发展。然后将该技术应用于数值算例。
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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