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Efficient Analysis of Printed Structures of Arbitrary Shape on Coated Cylinders Via Spatial-Domain Mixed-Potential Green's Function

机译:通过空间域混合势格林函数有效分析涂层圆柱体上任意形状的印刷结构

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We present an approach for the method of moments (MoM) analysis of antennas of arbitrary shape printed on a cylindrical substrate. We propose several key components of a code to perform this analysis, with the explicit goal of adapting MoM codes devised for planar stratified structures. For that purpose, the background medium Green's function is expressed in the mixed-potential (MP) format to allow for efficient numerical integration; the spectral dyadic Green's function is first recast in the spectral counterpart of the spatial mixed-potential form. The convergence of the spectral-to-spatial transform is accelerated by extraction of spectral asymptotic functions and exploitation of the azimuthal periodicity. Several important issues of implementation, numerical stability, and accuracy are addressed with a view to incorporate the spatial MP Green's function into the MoM analysis of printed structures of arbitrary shape using RWG basis functions. The numerical results are in good agreement with those obtained by other methods and with measured data.
机译:我们提出了一种方法,用于对圆柱基板上印刷的任意形状的天线进行矩量(MoM)分析。我们提出了执行该分析的代码的几个关键组成部分,其明确目标是修改为平面分层结构设计的MoM代码。为此,背景介质格林函数以混合电势(MP)格式表示,以实现有效的数值积分。首先以空间混合势形式的频谱对应项重铸频谱二进式格林函数。通过提取频谱渐近函数和利用方位角周期性,可以加速频谱到空间变换的收敛。为了将空间MP Green函数纳入使用RWG基函数的任意形状的印刷结构的MoM分析中,解决了一些重要的实现,数值稳定性和准确性问题。数值结果与通过其他方法获得的结果和实测数据非常吻合。

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