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Fast Computation of Angular Responses of Large-Scale Three-Dimensional Electromagnetic Wave Scattering

机译:大规模三维电磁波散射角响应的快速计算

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摘要

Many applications in electromagnetic engineering require predicting the currents induced by a wide range of incident plane waves on a given object. This paper proposes a way to efficiently and accurately compute the angular responses for electrically large targets. Since the targets of concern are electrically large, we have employed the newly developed non-conformal domain decomposition method (DDM) as the direct Maxwell equation solver. The proposed fast angular sweep algorithm is then applied in conjunction with the DDM solver to produce wide range of angular responses. There are basically three main ingredients in the proposed fast angular sweep algorithm: the use of Fourier harmonics to interpolate the right-hand-sides (RHSs) over a given angular range; the number of independent coefficient vectors in the Fourier harmonics can be further reduced through the application of singular-value-decomposition (SVD); and, finally, the matrix solution of multiple RHSs can be solved efficiently using a recently proposed Krylov recycling method, GCRO-DR. Three numerical results are presented and compared to measurements and direct computations to validate the numerical solutions and to illustrate the effectiveness of the proposed approach.
机译:电磁工程中的许多应用都需要预测由给定对象上的各种入射平面波感应的电流。本文提出了一种有效而准确地计算大目标电角度响应的方法。由于关注的目标在电气上很大,因此我们采用了新开发的非保形域分解方法(DDM)作为直接Maxwell方程求解器。然后,将提出的快速角度扫描算法与DDM求解器结合使用,以产生宽范围的角度响应。提出的快速角度扫描算法基本上包含三个主要成分:使用傅立叶谐波在给定角度范围内内插右侧(RHS);通过应用奇异值分解(SVD),可以进一步减少傅立叶谐波中独立系数矢量的数量。最后,使用最近提出的Krylov回收方法GCRO-DR可以有效地解决多个RHS的基质溶液。提出了三个数值结果,并将它们与测量值和直接计算进行了比较,以验证数值解并说明所提出方法的有效性。

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