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An Accelerated Time-Domain MOD Method to Analyze the Effect of the Shield Box on Enclosed Multilayered Structures

机译:加速时域MOD方法分析屏蔽箱对封闭多层结构的影响

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摘要

This paper presents an efficient time-domain approach to evaluate the effect of the metallic shield on enclosed multilayered structures. In the proposed method, using the surface equivalence theorem, the multilayered structure is divided into separate layers, which are coupled together by the assumed unknown magnetic currents on the nonmetallic interfaces (apertures) between the layers. As a result, the problem is converted to a cascade of coupled rectangular cavities whose Green’s functions in time-domain are available. To eliminate the late time instabilities, the marching-on-in-degree method is used to solve the produced integral equations. Then, the impressed current source model is utilized to extract the scattering parameters at the ports of the multilayered structure. In addition, a new accelerating algorithm that is based on the separation of time and space variables in the Green’s function of the rectangular box is applied to the presented method. The proposed acceleration technique reduces the order of computational process and memory usage as and , respectively, where , , and denote the maximum temporal degree, the number of spatial unknowns and the total number of the Green’s function modes. It is shown that the presented technique is more efficient than the commercial software, CST-MWS, for the considered problem.
机译:本文提出了一种有效的时域方法来评估金属屏蔽层对封闭多层结构的影响。在提出的方法中,使用表面等效定理,将多层结构分为独立的层,这些层通过假定的未知磁流在层之间的非金属界面(孔)上耦合在一起。结果,问题转化为级联的矩形腔,这些矩形腔在时域中具有格林函数。为了消除延迟时间的不稳定性,使用了按度步进法来求解生成的积分方程。然后,利用外加电流源模型提取多层结构端口处的散射参数。此外,该方法还采用了一种新的加速算法,该算法基于矩形框的格林函数中时间和空间变量的分离。所提出的加速技术分别以和减少了计算过程和内存使用的顺序,其中,和分别表示最大时间程度,空间未知数和格林函数模式的总数。结果表明,对于所考虑的问题,所提出的技术比商用软件CST-MWS更有效。

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