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Fast transient analysis of electromagnetic scattering from three-dimensional dielectric inhomogeneities using a volume integral equation

机译:利用体积积分方程快速瞬态分析三维电介质不均匀性引起的电磁散射

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摘要

A fast technique for analyzing transient electromagnetic scattering from three dimensional inhomogeneous dielectric targets is proposed. This technique solves a volume integral equation using a marching-on-in-time (MOT) scheme (Gres et al. 2000). The computational complexity of performing a volume-scattering analysis using the classical technique in Gres et al. is O(N/sub t/N/sub s//sup 2/), where the volume source density is represented by N/sub s/ spatial and N/sub t/ temporal samples. This cost is prohibitively high, rendering the method impractical for analyzing scattering from electrically large structures. The contribution of this work is to reduce the high cost of the classical scheme to O(N/sub t/N/sub s/) by augmenting it with the multilevel plane-wave time-domain (PWTD) algorithm (Ergin et al. 1999). It is shown that incorporation of the PWTD algorithm into the MOT scheme does not compromise the accuracy of the scattering solution.
机译:提出了一种从三维非均匀介质目标中分析瞬态电磁散射的快速技术。该技术使用“按时间行进”(MOT)方案求解体积积分方程(Gres等人,2000年)。使用Gres等人的经典技术执行体积散射分析的计算复杂性。是O(N / sub t / N / sub s // sup 2 /),其中体积源密度由N / sub s /空间和N / sub t /时间样本表示。这种成本太高了,使得该方法对于分析来自电大结构的散射是不切实际的。这项工作的贡献在于通过使用多级平面波时域(PWTD)算法对其进行扩充来降低经典方案对O(N / sub t / N / sub s /)的高成本(Ergin et al。 1999)。结果表明,将PWTD算法并入MOT方案不会损害散射解决方案的准确性。

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