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Full-Wave Characterization of Rough Terrain Surface Scattering for Forward-Looking Radar Applications

机译:前视雷达应用中的粗糙地形表面散射的全波波表征

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In characterizing ground surface clutter as relevant to forward-looking radar applications, a finite-difference time-domain (FDTD)-based solver is proposed to study dielectric surface scattering at low depression angles. The solver's effectiveness and accuracy are carefully evaluated for one-dimensional surfaces by comparing Monte Carlo scattering results to those from a surface integral equation (SIE) approach for various surface parameters and incidence angles. It is demonstrated that satisfactory results can be attained at near-grazing angles for most surface parameters of interest with a relatively small simulation domain size, independent of the incidence angle. Subsequently, FDTD simulations of two-dimensional terrain surfaces are featured, along with a demonstration of the effects of ground clutter on target imaging generated by the time-reversal technique. By providing a practical full-wave simulation framework for the emulation of forward-looking radar operation and imaging, this study is intended to facilitate ongoing investigations into the detectability of discrete ground targets in the presence of distributed variable ground clutter in the near-grazing regime.
机译:为了表征与前瞻性雷达应用相关的地表杂波,提出了一种基于时域有限差分(FDTD)的求解器,以研究低俯角下的电介质表面散射。通过将Monte Carlo散射结果与各种表面参数和入射角的表面积分方程(SIE)方法的结果进行比较,仔细评估了一维表面的求解器的有效性和准确性。结果表明,对于大多数感兴趣的表面参数,无论入射角如何,都可以以相对较小的模拟域大小在接近掠角处获得满意的结果。随后,对二维地形表面的FDTD模拟进行了专题介绍,并演示了地物杂波对时间反转技术生成的目标成像的影响。通过为前瞻性雷达的运行和成像仿真提供实用的全波仿真框架,本研究旨在促进正在进行的研究,以研究在接近掠食状态下存在分布可变地面杂波的离散地面目标的可检测性。

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