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CAD of complex passive devices composed of arbitrarily shaped waveguides using Nyström and BI-RME methods

机译:使用Nyström和BI-RME方法的由任意形状的波导组成的复杂无源设备的CAD

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摘要

In this paper, a novel computer-aided design (CAD) tool of complex passive microwave devices in waveguide technology is proposed. Such a tool is based on a very efficient integral-equation analysis technique that provides a full-wave characterization of discontinuities between arbitrarily shaped waveguides defined by linear, circular, and/or elliptical arcs. For solving the modal analysis of such arbitrary waveguides, a modified version of the well-known boundary integral-resonant-mode expansion (BI-RME) method using the Nyström approach, instead of the traditional Galerkin version of the method of moments, is proposed, thus providing significant savings on computational costs and implementation complexity. The novel theoretical aspects of this Nyström approach, as well as their impact on the original BI-RME formulation, are fully described. Comparative benchmarks between this new technique and the classical BI-RME formulation using Galerkin are successfully presented for the full-wave analysis of frequently used irises (i.e., rectangular cross-shaped and circular multiridged) and for the CAD of complex waveguide components (such as rectangular waveguide filters considering mechanization effects and dual-mode circular waveguide filters with elliptical irises).
机译:本文提出了一种新型的波导技术中复杂无源微波器件的计算机辅助设计(CAD)工具。这样的工具基于非常有效的积分方程分析技术,该技术提供了由线性,圆形和/或椭圆形弧定义的任意形状的波导之间的不连续性的全波表征。为了解决这种任意波导的模态分析,提出了一种使用Nyström方法的著名边界积分共振模式展开(BI-RME)方法的改进版本,而不是矩量方法的传统Galerkin版本,从而大大节省了计算成本和实现复杂性。 Nyström方法的新颖理论方面以及它们对原始BI-RME配方的影响已得到充分描述。已成功提出了这项新技术与使用Galerkin的经典BI-RME配方之间的比较基准,可用于常用虹膜(即矩形十字形和圆形多脊形)的全波分析以及复杂波导组件(例如考虑机械化作用的矩形波导滤波器和带有椭圆形虹膜的双模圆形波导滤波器)。

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