Electromagnetic scattering from a 3-D object above a 2-D rough surface by using a Bi-iteration method

C. Qi, Zhiqin Zhao, Z. Nie
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引用次数: 1

Abstract

A Bi-iteration model is proposed to accurately solve the composite electromagnetic (EM) scattering problem of a three-dimensional (3-D) geometrically arbitrary object above a two-dimensional (2-D) rough surface. Two iteration processes are involved in this model. Iterative physical optics (IPO) which calculates the EM scattering from the rough surface is named as inner iteration. While for the EM scattering from the composite model is computed through an iteration strategy which is named as outer iteration. The outer iteration process combines IPO and the multilevel fast multipole algorithm (MLFMA) to solve the EM scattering from the rough surface and the object. Then the mutual EM coupling interactions between them can be taken into account through this iteration process. In order to accelerate the convergence of the IPO, the forward-backward methodology is applied. Meanwhile, in order to reduce the computational time of the coupling interactions between the above object and the rough surface, local iteration methodology is applied to reduce the coupling area on the rough surface both for the inner iteration and the outer iteration processes.
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二维粗糙表面上三维物体电磁散射的双迭代方法
提出了一种双迭代模型,用于精确求解二维粗糙表面上三维几何任意物体的复合电磁散射问题。该模型涉及两个迭代过程。从粗糙表面计算电磁散射的迭代物理光学(IPO)称为内迭代。而对于复合模型的电磁散射,采用外迭代的迭代策略进行计算。外部迭代过程结合IPO和多层快速多极子算法(MLFMA)来解决粗糙表面和目标的电磁散射问题。通过此迭代过程,可以考虑它们之间相互的电磁耦合作用。为了加快IPO的收敛速度,采用了正向-倒向方法。同时,为了减少上述对象与粗糙表面之间耦合相互作用的计算时间,在内迭代和外迭代过程中均采用局部迭代方法减小粗糙表面上的耦合面积。
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