首页> 外文期刊>IEEE Transactions on Antennas and Propagation >3-D Scattering From a PEC Target Buried Beneath a Dielectric Rough Surface: An Efficient PILE-ACA Algorithm for Solving a Hybrid KA-EFIE Formulation
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3-D Scattering From a PEC Target Buried Beneath a Dielectric Rough Surface: An Efficient PILE-ACA Algorithm for Solving a Hybrid KA-EFIE Formulation

机译:埋在介电粗糙表面下的 PEC 目标的 3D 散射:一种用于求解混合 KA-EFIE 公式的高效 PILE-ACA 算法

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An efficient hybrid KA-EFIE formulation is deployed to analyze the electromagnetic (EM) scattering from a 3-D perfectly electric conducting (PEC) object buried beneath a 2-D dielectric rough surface. In this approach, the electric and magnetic current densities on the rough surface are analytically obtained through the current-based Kirchhoff approximation (KA), whereas the electric current density on the buried object is rigorously determined by solving the electric field integral equation (EFIE) using the Galerkin's method of moments (MoM) with Rao-Wilton-Glisson (RWG) basis functions. The KA-EFIE matrix system is then efficiently solved by the iterative propagation-inside-layer-expansion (PILE) method combined with the algebraic adaptive cross approximation (ACA). The current densities on the dielectric rough surface are thereafter used to handle the bistatic normalized radar cross-section (NRCS) patterns. The proposed hybrid approach allows a significant reduction in computation time and memory requirements compared to the rigorous Poggio-Miller-Chang-Harrington-Wu (PMCHW)-EFIE formulation which requires solving a large MoM matrix equation. Moreover, the hybridization of the ACA algorithm with the PILE method improves further the computational cost thanks to the rank-deficient propriety of the coupling matrices. To validate the hybrid approach, we compare its results with those of the rigorous PMCHW-EFIE approach.
机译:采用高效的混合 KA-EFIE 公式来分析埋在二维介电粗糙表面下的 3-D 完全导电 (PEC) 物体的电磁 (EM) 散射。在这种方法中,通过基于电流的基尔霍夫近似(KA)解析获得粗糙表面上的电流和磁电流密度,而埋藏物体上的电流密度则通过使用伽勒金矩量法(MoM)和Rao-Wilton-Glisson(RWG)基函数求解电场积分方程(EFIE)来严格确定。然后,采用迭代传播-层内-展开(PILE)方法结合代数自适应交叉近似(ACA)方法对KA-EFIE矩阵系统进行了有效求解。此后,介质粗糙表面上的电流密度用于处理双基地归一化雷达散射截面 (NRCS) 模式。与需要求解大型 MoM 矩阵方程的严格 Poggio-Miller-Chang-Harrington-Wu (PMCHW)-EFIE 公式相比,所提出的混合方法可以显着减少计算时间和内存需求。此外,由于耦合矩阵的等级缺陷,ACA算法与PILE方法的杂交进一步提高了计算成本。为了验证混合方法,我们将其结果与严格的PMCHW-EFIE方法的结果进行了比较。

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