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首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Parallelized multilevel fast dipole method for electromagnetic scattering from PEC targets
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Parallelized multilevel fast dipole method for electromagnetic scattering from PEC targets

机译:PEC目标电磁散射的并行多级快速偶极子方法

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摘要

Parallel implementation of the multilevel fast dipole method (MLFDM) is discussed in this article. The MLFDM is based on the equivalent dipole-moment method (EDM), in which each Rao-Wilton-Glisson (RWG) basis function is viewed as a dipole model with an equivalent dipole moment. Through expanding all the terms including R in the formulation of the EDM using a simple Taylor's series, the MLFDM can efficiently calculate the interactions between the far groups at each level in an aggregation-translationdisaggregation form. And the complexity of matrix-vector products (MVPs) between a far-group pair, such as block i and block j, is reduced from O (N _iN _j) to O (N _i + N _j), where N _i and N _j are the number of dipoles in block i and block j, respectively. Furthermore, we show that the MLFDM is very suited for parallelization. In this article, parallelized MLFDM is implemented and employed to analyze the electromagnetic scattering from perfect electric conducting (PEC) targets.
机译:本文讨论了多级快速偶极子方法(MLFDM)的并行实现。 MLFDM基于等效偶极矩方法(EDM),其中每个Rao-Wilton-Glisson(RWG)基函数都被视为具有等效偶极矩的偶极模型。通过使用简单的泰勒级数扩展EDM公式中所有包括R的术语,MLFDM可以以聚集-翻译-分解形式有效地计算每个级别的远基团之间的相互作用。远组对(例如块i和块j)之间的矩阵向量乘积(MVP)的复杂度从O(N _iN _j)降低为O(N _i + N _j),其中N _i和N _j分别是块i和块j中的偶极子数。此外,我们表明MLFDM非常适合并行化。在本文中,并行MLFDM被实现并用于分析来自完美导电(PEC)目标的电磁散射。

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