Probability model of the multipath delays in radar echoes of scatters above 3-D surfaces

C. Duan, Z. Leng, K. Zhu
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Abstract

In the radar imaging of the object above three-dimensional (3-D) ocean surface, the multipath scattering brings in artifacts which can be reckoned as the distorted and shifted replicas of the direct-path scatters. As it is the propagation delays that play an important role in the understanding of these artifacts, this paper proposes a probability model of the multipath delays for the scatters above the 3-D ocean surface. As the premise, the surface is endowed with the Kirchhoff approximation, as well as a probability density function of the elevations and slopes. The probability model is then deduced and is validated by the electromagnetic computation results. In addition, the influence of relevant parameters is analyzed using the Monte Carlo techniques.
三维表面以上散射体雷达回波多径延迟的概率模型
在三维海面以上目标的雷达成像中,多径散射带来的伪影可以看作是直接路径散射的扭曲和位移复制品。由于传播延迟在理解这些伪影中起着重要作用,本文提出了三维海面以上散射体多径延迟的概率模型。作为前提,曲面被赋予Kirchhoff近似,以及海拔和坡度的概率密度函数。推导了该概率模型,并用电磁计算结果进行了验证。此外,利用蒙特卡罗技术分析了相关参数的影响。
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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