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Multilevel fast-multipole algorithm for scattering from conducting targets above or embedded in a lossy half space

机译:多级快速多极算法,用于从有损耗的半空间上方或嵌入其中的导电目标散射

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An extension of the multilevel fast multipole algorithm (MLFMA), originally developed for targets in free space, is presented for the electromagnetic scattering from arbitrarily shaped three-dimensional (3-D), electrically large, perfectly conducting targets above or embedded within a lossy half space. We have developed and implemented electric-field, magnetic-field, and combined-field integral equations for this purpose. The nearby terms in the MLFMA framework are evaluated by using the rigorous half-space dyadic Green's function, computed via the method of complex images. Non-nearby (far) MLFMA interactions, handled efficiently within the multilevel clustering construct, employ an approximate dyadic Green's function. This is expressed in terms of a direct-radiation term plus a single real image (representing the asymptotic far-field Green's function), with the image amplitude characterized by the polarization-dependent Fresnel reflection coefficient. Examples are presented to validate the code through comparison with a rigorous method-of-moments (MoM) solution. Finally, results are presented for scattering from a model unexploded ordnance (UXO) embedded in soil and for a realistic 3-D vehicle over soil.
机译:提出了多级快速多极子算法(MLFMA)的扩展,该算法最初是为自由空间中的目标开发的,用于从任意形状的三维(3-D),电大的,传导良好的目标上方或嵌入有损的目标中进行电磁散射一半的空间。为此,我们已经开发并实现了电场,磁场和组合场积分方程。使用通过复杂图像方法计算的严格的半空间二进格林函数来评估MLFMA框架中的邻近项。在多级聚类构造中有效处理的非附近(远)MLMFA交互采用近似二进格林函数。这用直接辐射项加一个真实图像(表示渐近远场格林函数)表示,图像振幅由偏振相关的菲涅耳反射系数表征。通过与严格的矩量法(MoM)解决方案进行比较,提供了一些示例来验证代码。最后,给出了从埋在土壤中的模型未爆炸弹药(UXO)散射以及在土壤上的现实3D车辆散射的结果。

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