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Efficient MLFMA, RPFMA, and FAFFA algorithms for EM scattering by very large structures

机译:高效的MLFMA,RPFMA和FAFFA算法,用于超大型结构的EM散射

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Based on the addition theorem, the principle of a multilevel ray-propagation fast multipole algorithm (RPFMA) and fast far-field approximation (FAFFA) has been demonstrated for three-dimensional (3-D) electromagnetic scattering problems. From a rigorous mathematical derivation, the relation among RPFMA, FAFFA, and a conventional multilevel fast multipole algorithm (MLFMA) has been clearly stated. For very large-scale problems, the translation between groups in the conventional MLFMA is expensive because the translator is defined on an Ewald sphere with many sampling k? directions. When two groups are well separated, the translation can be simplified using RPFMA, where only a few sampling k? directions are required within a cone zone on the Ewald sphere. When two groups are in the far-field region, the translation can be further simplified by using FAFFA where only a single k? is involved in the translator along the ray-propagation direction. Combining RPFMA and FAFFA with MLFMA, three algorithms RPFMA-MLFMA, FAFFA-MLFMA, and RPFMA-FAFFA-MLFMA have been developed, which are more efficient than the conventional MLFMA in 3-D electromagnetic scattering and radiation for very large structures. Numerical results are given to verify the efficiency of the algorithms.
机译:基于加法定理,针对三维(3-D)电磁散射问题,证明了多级射线传播快速多极算法(RPFMA)和快速远场近似(FAFFA)的原理。通过严格的数学推导,已经清楚地说明了RPFMA,FAFFA和常规的多级快速多极子算法(MLFMA)之间的关系。对于非常大的问题,在常规的MLFMA中,组之间的转换是昂贵的,因为转换器是在具有许多采样k?的Ewald球体上定义的。指示。当两组完全分开时,可以使用RPFMA简化翻译,其中只有几个采样k?在Ewald球面的圆锥区域内需要方向。当两个组位于远场区域时,可以使用FAFFA进一步简化转换过程,其中只有一个k?沿射线传播方向参与平移器。结合了RPFMA和FAFFA与MLFMA,已经开发了三种算法RPFMA-MLFMA,FAFFA-MLFMA和RPFMA-FAFFA-MLFMA,它们在大型结构的3-D电磁散射和辐射方面比常规MLFMA更为有效。数值结果证明了算法的有效性。

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