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A finite element-boundary integral formulation for scattering by three-dimensional cavity-backed apertures

机译:三维空腔后向散射的有限元边界积分公式

摘要

A numerical technique is proposed for the electromagnetic characterization of the scattering by a three-dimensional cavity-backed aperture in an infinite ground plane. The technique combines the finite element and boundary integral methods to formulate a system of equations for the solution of the aperture fields and those inside the cavity. Specifically, the finite element method is employed to formulate the fields in the cavity region and the boundary integral approach is used in conjunction with the equivalence principle to represent the fields above the ground plane. Unlike traditional approaches, the proposed technique does not require knowledge of the cavity's Green's function and is, therefore, applicable to arbitrary shape depressions and material fillings. Furthermore, the proposed formulation leads to a system having a partly full and partly sparse as well as symmetric and banded matrix which can be solved efficiently using special algorithms.
机译:提出了一种数值技术,用于在无限大的接地平面中通过三维腔背孔对电磁散射进行表征。该技术结合了有限元法和边界积分法,为孔场和腔体内的孔场求解方程组。具体而言,采用有限元方法来表示空腔区域中的场,并使用边界积分法与等价原理一起表示地平面以上的场。与传统方法不同,所提出的技术不需要了解空腔的格林函数,因此可应用于任意形状的凹陷和材料填充。此外,所提出的公式导致系统具有部分完全和部分稀疏以及对称和带状矩阵,可以使用特殊算法对其进行有效求解。

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