Introducing symmetry conditions in the integral equation technique applied to quasi-waveguide structures

L. Golestanirad, M. Mattes, J. Mosig
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引用次数: 2

Abstract

Integral Equation (IE) formulation solved by Method of Moments may be used efficiently to address the problem of quasi-waveguide structures, i.e. structures consisting of a main waveguide with a constant cross section that may bear an arbitrary number of printed circuits backed by dielectric substrates. In the case that the structure as well as the excitation has symmetry requirements, simplifications may be applied on the problem leading to a considerable improvement in the usage of computational resources and time. In this paper we have developed and tested the theoretical formulation to apply the symmetry conditions on the IE technique in the context of shielded multilayered structures excited by waveguide ports. The formulation has been successfully applied to waveguide filters which use frequency selective surfaces as coupling elements.
引入对称条件的积分方程技术在准波导结构中的应用
用矩量法求解的积分方程(IE)公式可以有效地用于求解准波导结构的问题,即由具有恒定截面的主波导组成的结构,可以承载任意数量的介质衬底支持的印刷电路。在结构和激励都有对称要求的情况下,可以对问题进行简化,从而大大改善了计算资源和时间的使用。在本文中,我们开发并测试了在波导端口激发的屏蔽多层结构中应用IE技术的对称条件的理论公式。该公式已成功地应用于以频率选择表面作为耦合元件的波导滤波器。
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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