首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Propagation-inside-layer-expansion method combined with physical optics for scattering by coated cylinders, a rough layer, and an object below a rough surface
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Propagation-inside-layer-expansion method combined with physical optics for scattering by coated cylinders, a rough layer, and an object below a rough surface

机译:内层传播的扩展方法与物理光学相结合,可通过涂层圆柱体,粗糙层和粗糙表面以下的物体进行散射

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In this article, the fields scattered by coated cylinders, a rough layer, and an object below a rough surface are computed by the efficient propagation-inside-layer-expansion (PILE) method combined with the physical optics (PO) approximation to accelerate the calculation of the local interactions on the non-illuminated scatterer, which is assumed to be perfectly conducting. The PILE method is based on the method of moments, and the impedance matrix of the two scatterers is then inverted by blocks from a Taylor series expansion of the inverse of the Schur complement. Its main interest is that it is rigorous, with a simple formulation and a straightforward physical interpretation. In addition, one of the advantages of PILE is to be able to hybridize methods (rigorous or asymptotic) valid for a single scatterer. Then, in high frequencies, the hybridization with PO allows us to significantly reduce the complexity in comparison to a direct lower-upper inversion of the impedance matrix of the two scatterers without loss in accuracy.
机译:在本文中,通过有效的内层扩展(PILE)方法与物理光学(PO)近似相结合来计算涂层圆柱体,粗糙层和粗糙表面以下的物体所散射的场,以加速成像过程。计算非照明散射体上的局部相互作用的过程,假定该过程是完美进行的。 PILE方法是基于矩量法的,然后两个散射体的阻抗矩阵由Schur补码逆数的泰勒级数展开的块求逆。它的主要兴趣在于它是严格的,具有简单的表述和简单的物理解释。另外,PILE的优点之一是能够杂交对单个散射体有效的方法(严格的或渐近的)。然后,在高频下,与PO的杂交使我们与两个散射体的阻抗矩阵的直接上下转换相比,可以显着降低复杂度,而不会降低精度。

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