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Scattering by an object above a randomly rough surface from a fast numerical method: Extended PILE method combined with FB-SA

机译:快速数值方法在随机粗糙表面上的物体散射:扩展PILE方法与FB-SA结合

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In this paper, a fast exact numerical method, based on the method of moments, is developed to calculate the scattering by an object above a rough surface. N. Dechamps et al. have recently developed the PILE (Propagation-Inside-Layer Expansion) method for a stack of two one-dimensional rough interfaces separating homogeneous media. This method allows us to calculate separately and exactly the multiple scattering contributions inside the layer. This is done with a decomposition by block of the impedance matrix (the inverse of the impedance matrix of each interface and two coupling matrices are involved). The purpose of this paper is to extend the PILE method to the more general case of two illuminated surfaces and to apply it to an object located above a rough surface. In addition, to invert a matrix of large size, the Forward-Backward Spectral Acceleration (FB-SA) approach of complexity O(N) proposed by Chou and Johnson is applied. The new method, extended PILE combined with FB-SA, is tested on Perfectly Conducting (PC) circular and elliptic cylinders located above a rough surface (dielectric or PC) obeying a Gaussian process with Gaussian and exponential height autocorrelation functions.
机译:在本文中,开发了一种基于矩量法的快速精确数值方法,用于计算粗糙表面上方物体的散射。 N.Dechamps等。最近,开发了一种PILE(内部传播层扩展)方法,用于堆叠两个将均匀介质分开的一维粗糙界面。这种方法使我们能够分别精确地计算层内部的多个散射贡献。这是通过阻抗矩阵的块分解来完成的(涉及每个接口的阻抗矩阵的逆和两个耦合矩阵)。本文的目的是将PILE方法扩展到两个照明表面的更一般情况,并将其应用于位于粗糙表面上方的对象。另外,为了反转大尺寸的矩阵,使用了Chou和Johnson提出的复杂度O(N)的前向后频谱加速(FB-SA)方法。新方法,扩展PILE与FB-SA相结合,在位于粗糙表面(电介质或PC)上方的完美导电(PC)圆柱和椭圆圆柱体上进行了测试,该圆柱体遵循具有高斯和指数高度自相关函数的高斯过程。

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