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An efficient integral equation technique for the analysis of arbitrarily shaped capacitive waveguide circuits

机译:一种有效的积分方程技术,用于分析任意形状的电容性波导电路

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摘要

In this contribution a new and efficient integral equation formulation is presented for the analysis of arbitrarily shaped capacitive waveguide devices. The technique benefits from the symmetry of the structure in order to reduce the dimensions of the problem from three to two dimensions. For the first time, this technique formulates the waveguide capacitive discontinuity problem as a 2-D scattering problem with oblique incidence, combined with an efficient calculation of the parallel plate Green's functions. The numerical method allows the efficient evaluation of the electromagnetic fields inside the analyzed structures. Results for different practical capacitive waveguide devices are successfully compared with commercial software tools for validation of the proposed theory. Finally, a novel low-pass filter implementation based on circular conducting posts has been proposed. The field contour lines in the critical gaps of the new structure are curved due to the use of rounded posts. This could result in improved power handling capabilities with respect to standard corrugated low-pass filters.
机译:在这一贡献中,提出了一种新的有效的积分方程公式,用于分析任意形状的电容波导器件。该技术得益于结构的对称性,以便将问题的范围从三维减少到二维。这项技术首次将波导电容不连续性问题公式化为具有斜入射的二维散射问题,并结合了对平行板格林函数的有效计算。数值方法可以对被分析结构内部的电磁场进行有效评估。将不同的实用电容性波导器件的结果与商用软件工具成功进行了比较,以验证所提出的理论。最后,提出了一种基于圆形导电柱的新型低通滤波器。新结构关键间隙中的场轮廓线由于使用了圆形柱而弯曲。相对于标准波纹低通滤波器,这可以提高功率处理能力。

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