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Radiation admittance of an open-ended parallel plate metallic waveguide with exterior planar dielectric coating

机译:具有外部平面介电涂层的开放式平行板金属波导的辐射导纳

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摘要

A methodology is presented for the calculation of the radiation admittance of an open-ended, homogeneously filled, parallel plate metallic waveguide with exterior planar dielectric coating, operated at the fundamental (transverse electromagnetic wave) mode. The methodology relies on the definition of an auxiliary electromagnetic boundary value problem that is simple to solve using an integral equation approach. In order to provide for broadband calculation of the radiation admittance of the open-ended waveguide from DC to several tens of gigahertz, a loop-tree decomposition scheme is used in the method of moments solution of the resulting integral equation. A rational function-fitting process with passivity enforcement is used to generate a broadband, passive macromodel for the calculated radiation impedance. Such a macromodel is suitable for use as a local truncation boundary condition in the finite difference/finite element modeling of electromagnetic interactions in multilayered signal and power distribution networks encountered in printed circuit boards and packages.
机译:提出了一种方法,用于计算以基本(横向电磁波)模式工作的具有外部平面介电涂层的开放式,均质填充,平行板金属波导的辐射导纳。该方法依赖于辅助电磁边界值问题的定义,该问题易于使用积分方程方法求解。为了提供宽带开放式波导从DC到几十GHz的辐射导纳的计算,在所得积分方程的矩解方法中使用了回路树分解方案。具有无源强制性的合理功能拟合过程用于为计算出的辐射阻抗生成宽带无源宏模型。这样的宏模型适合在印刷电路板和封装中遇到的多层信号和配电网络中的电磁相互作用的有限差分/有限元建模中用作局部截断边界条件。

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