Hybridizing physical optics with MLFMA for efficient scattering computations of three-dimensional complex targets

A. Manyas, O. Ergul, L. Gurel
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引用次数: 6

Abstract

The multilevel fast multipole algorithm (MLFMA) provides accurate and efficient solutions of electromagnetic scattering problems involving large and complicated structures. On the other hand, whenever applicable, accelerations provided by approximation techniques can be useful to further improve the efficiency of solutions. In this paper, we present a hybrid technique, which combines the physical-optics (PO) method and MLFMA for efficient scattering computations of three-dimensional objects. We show that, with a careful choice of MLFMA and PO regions on the structure, the number of unknowns can be reduced and solutions can be accelerated significantly, without sacrificing the accuracy. The proposed hybrid technique is easy to implement by modifying existing MLFMA codes.
混合物理光学与MLFMA用于三维复杂目标的高效散射计算
多层快速多极算法(MLFMA)为大型复杂结构的电磁散射问题提供了准确、高效的求解方法。另一方面,只要适用,由近似技术提供的加速度可用于进一步提高解的效率。本文提出了一种将物理光学(PO)方法与MLFMA相结合的混合技术,用于三维物体的高效散射计算。我们表明,在不牺牲精度的情况下,通过仔细选择结构上的MLFMA和PO区域,可以减少未知量并显着加快求解速度。该混合技术通过修改现有的MLFMA代码即可实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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