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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >An efficient algorithm for electromagnetic scattering from rough surfaces using a single integral equation and multilevel sparse-matrix canonical-grid method
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An efficient algorithm for electromagnetic scattering from rough surfaces using a single integral equation and multilevel sparse-matrix canonical-grid method

机译:使用单积分方程和多级稀疏矩阵规范网格方法对粗糙表面进行电磁散射的有效算法

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摘要

An efficient algorithm for wave scattering from two-dimensional lossy rough surfaces is proposed. It entails the use of a single magnetic field integral equation (SMFIE) in conjunction with a multilevel sparse-matrix canonical-grid (MSMCG) method. The Rao-Wilton-Glisson (RWG) triangular discretization is adopted to better model the rough surface than the pulse basis functions used in the well-established SMCG method. Using the SMFIE formulation, only one unknown per interior edge of the triangular mesh approximating the rough surface is required, and the iterative solution to the moment equation converges more rapidly than that of the conventional coupled equations for dielectric rough surfaces. The MSMCG method extends the applicability of the SMCG method to rougher surfaces. Parallel implementation of the proposed method enables us to model dielectric surfaces up to a few thousand square wavelengths. Simulation results are presented as bistatic scattering coefficients for Gaussian randomly rough surfaces.
机译:提出了一种有效的从二维有损粗糙表面散射波的算法。它需要结合多级稀疏矩阵规范网格(MSMCG)方法使用单个磁场积分方程(SMFIE)。与完善的SMCG方法中使用的脉冲基函数相比,采用Rao-Wilton-Glisson(RWG)三角离散化可以更好地对粗糙表面进行建模。使用SMFIE公式,三角网格的每个内部边缘(近似于粗糙表面)仅需要一个未知数,并且矩量方程的迭代解收敛速度比常规介电粗糙表面耦合方程的迭代解更快。 MSMCG方法将SMCG方法的适用性扩展到了较粗糙的表面。所提出方法的并行实现使我们能够对高达数千平方波长的介电表面进行建模。仿真结果以高斯随机粗糙表面的双基地散射系数表示。

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