中等粗糙介质界面经窄腰高斯光束的时域二维散射

V. Galdi, L. Felsen, D. Castañón
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引用次数: 0

摘要

本文研究了短脉冲电磁辐射与一维中等粗糙介质界面的相互作用,这种相互作用存在于许多现实问题中,如地物成像。我们的最终目标是将基于物理的、计算效率高的正演模型整合到这种逆散射场景中,以提高整体计算性能。在这方面,我们最近使用基于gabor的高斯波束算法(参见Galdi, V. et al., IEEE Trans.)分析了中等粗糙表面的时谐正散射和逆散射。天线Propagat。, 2001)。在这里,我们将这种前向散射算法扩展到脉冲激励,通过物理光学(PO)为基础的方法,结合脉冲光束离散化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time-domain two-dimensional scattering by moderately rough dielectric interfaces via narrow-waisted Gaussian beams
This paper treats the interaction of short-pulse electromagnetic radiation with one-dimensional (1D) moderately rough dielectric interfaces, which arise in many realistic problems, such as buried object imaging. Our ultimate goal is to incorporate physics-based, computationally efficient, forward models in such inverse scattering scenarios, in order to improve the overall computational performance. In this connection, we recently analyzed time-harmonic forward and inverse scattering from moderately rough surfaces, using a Gabor-based Gaussian beam algorithm (see Galdi, V. et al., IEEE Trans. Antennas Propagat., 2001). Here, we extend this forward scattering algorithm to pulsed excitation via a physical optics (PO) based approach in conjunction with pulsed beam discretization.
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