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Multilevel plane wave time domain-enhanced MOT solver for analyzing electromagnetic scattering from objects residing in lossy media

机译:多层平面波时域增强MOT求解器,用于分析来自有损耗介质中物体的电磁散射

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Marching-on-in-time (MOT) based time domain integral equation (TDIE) methods provide an appealing avenue for analyzing transient electromagnetic scattering from objects that reside in lossy media, were it not for their computational cost. Recent developments, however, permit the acceleration of these methods. One scheme is a lossy medium scalar plane wave time domain (PWTD) kernel that permits the fast evaluation of far-field interactions (Jiang, P.L. et al., IEEE Antennas and Propag. Soc. Int. Symp., 2003). This scheme evaluates transient scalar fields radiated by bandlimited sources residing in lossy media by expanding them in plane waves via a three-stage, fast multipole inspired scheme comprising aggregation, translation, and disaggregation steps. The paper outlines the formulation and implementation of a hybrid multilevel PWTD accelerated MOT solver for the efficient analysis of transient electromagnetic scattering from perfect electrically conducting (PEC) objects residing in lossy media. The proposed solver uses a vector extension of the original scalar PWTD scheme. A numerical example is presented to demonstrate the efficacy of the proposed hybrid scheme.
机译:基于时间行进(MOT)的时域积分方程(TDIE)方法为分析居住在有损耗介质中的物体产生的瞬态电磁散射提供了一种吸引人的途径,如果不是因为其计算成本的话。然而,最近的发展允许加速这些方法。一种方案是有损的中标量平面波时域(PWTD)内核,它可以快速评估远场相互作用(Jiang,P.L.等人,IEEE Antennas and Propag。Soc。Int。Symp。,2003)。该方案通过包含聚合,平移和分解步骤的三阶段快速多极激发方案,通过在平面波中将其扩展到平面波中,来评估驻留在有损耗介质中的带宽受限源辐射的瞬态标量场。本文概述了混合多级PWTD加速MOT求解器的制定和实现,用于有效分析存在于有损耗介质中的完美导电(PEC)对象的瞬态电磁散射。提出的求解器使用原始标量PWTD方案的向量扩展。给出了一个数值示例,以证明所提出的混合方案的有效性。

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