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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Fast Numerical Computation of Green's Functions for Unbounded Planar Stratified Media With a Finite-Difference Technique and Gaussian Spectral Rules
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Fast Numerical Computation of Green's Functions for Unbounded Planar Stratified Media With a Finite-Difference Technique and Gaussian Spectral Rules

机译:有限差分技术和高斯谱规则对平面无边界层状介质格林函数的快速数值计算

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摘要

A computational methodology for the calculation of Green's functions for unbounded planar stratified media is proposed in this paper. Unlike several techniques that are based on analytical calculations in the spectral domain, this one is based on a previously proposed finite-difference discretization of the corresponding one-dimensional differential equation and the resulting spectral matrix problem. A smart approximation of the radiation boundary condition, based on the mathematical methodology of Gaussian spectral rules and the associated construction of an optimal nonuniform grid in the unbounded space, succeeds in maintaining the tridiagonal nature of the matrix spectral problem, providing a highly efficient means of computing the desired multilayer Green's function
机译:提出了一种计算无边界平面分层介质格林函数的计算方法。与基于频谱域中分析计算的几种技术不同,该技术基于先前提出的相应一维微分方程的有限差分离散化和由此产生的频谱矩阵问题。基于高斯谱规则的数学方法和无界空间中最优非均匀网格的相关构造,辐射边界条件的智能近似成功地保持了矩阵谱问题的三对角性质,从而提供了一种高效的方法计算所需的多层格林函数

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