Diffraction by an arbitrary-angled coated wedge: An alternative uniform asymptotic solution

G. Gennarelli, G. Riccio
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引用次数: 2

Abstract

A uniform plane wave impacting a coated perfectly conducting wedge with arbitrary apex angle is studied and an alternative solution to the diffraction problem is presented. The coating is made of a lossy dielectric material. The approach uses the physical optics approximation of the electric and magnetic equivalent surface currents placed on the coated wedge and accounts for the oblique incidence with respect to the edge. Useful approximations, analytical integral representations and evaluations allow one to obtain a uniform asymptotic solution of the diffraction matrix. The corresponding diffracted field is approximate, but it allows one to compensate the geometrical optics field discontinuities. Moreover, it is very easy to handle and to implement in computer codes.
任意角度包覆楔的衍射:一种可选的均匀渐近解
研究了均匀平面波作用于具有任意顶点角的涂层完美导电楔体的问题,并给出了衍射问题的另一种解。涂层是由有损耗的介电材料制成的。该方法使用放置在涂层楔上的等效电和磁表面电流的物理光学近似,并考虑相对于边缘的斜入射。有用的近似,解析积分表示和计算允许人们得到衍射矩阵的一致渐近解。相应的衍射场是近似的,但它允许一个补偿几何光学场的不连续。此外,它很容易处理和在计算机代码中实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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