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3-D short pulse scattering by moderately rough dielectric interfaces via quasi-ray Gaussian beams

机译:通过准高斯光束通过中等粗糙的介电界面进行3-D短脉冲散射

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In the context of ground penetrating radar illumination of moderately rough interfaces, we have recently developed a number of physics-based, computationally efficient, forward scattering models for both time-harmonic and pulsed excitations, using Gabor-based narrow-waisted Gaussian beam algorithms. These forward solvers, so far restricted to two-dimensional configurations, have subsequently been incorporated into adaptive subsurface sensing techniques aimed at detecting, localizing and classifying shallow-buried low-contrast targets. In this paper, we extend the 2D short-pulse physical-optics (PO)-based forward scattering model to the more challenging and realistic case of 3D (vector) configurations.
机译:在中等粗糙界面的地面穿透雷达照明的背景下,我们最近使用基于Gabor的窄腰高斯光束算法开发了许多基于物理学的,计算效率高的正向散射模型,用于时谐和脉冲激励。迄今为止,这些前向求解器仅限于二维配置,随后被并入了旨在检测​​,定位和分类浅埋低对比度目标的自适应地下传感技术。在本文中,我们将基于2D短脉冲物理光学(PO)的前向散射模型扩展到3D(矢量)配置的更具挑战性和现实性的情况。

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