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A Low-Frequency EFIE-MLFMA Solver Based on Approximate Diagonalization of Green’s Function

机译:基于格林函数对角线近似的低频EFIE-MLFMA解算器

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摘要

The low-frequency fast multipole algorithm (LFFMA) based on the approximate diagonalization of Green's function for the electric field integral equation (EFIE) is proposed for open and complex structures with high accuracy. Moreover, the multiresolution preconditioner is employed to the mixed potential form of EFIE with RWG basis functions for stability. Herein, a triangle-grouping scheme is adopted for the scalar potential so that the accuracy of the LFFMA can be guaranteed. Furthermore, the computational resources can be reduced largely since part of the radiation pattern of vector potential can share one of the scalar potentials by taking advantage of some mathematical deductions.
机译:提出了一种基于格林函数的近似对角线化的低频快速多极算法(LFFMA),用于电场积分方程(EFIE),具有较高的精度。此外,将多分辨率预处理器用于具有RWG基函数的EFIE的混合势形式,以实现稳定性。在此,对于标量电势采用三角分组方案,从而可以确保LFFMA的精度。此外,由于利用了一些数学推论,矢量电势的辐射方向图的一部分可以共享标量电势之一,因此可以大大减少计算资源。

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