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Effects of Roughness Scale on Ocean Radar Scattering Using Numerical Simulations

机译:粗糙度尺度对使用数值模拟海洋雷达散射的影响

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We employ the second-order small slope approximation (SSA-II) and the method of moment (MoM) to investigate the roughness scale effect on ocean radar scattering in both three- (3-D) and two-dimensional (2-D) cases. Various roughness scales of the ocean surface are represented by truncating the Kudryavtsev wave spectrum. Criteria of full spectrum truncation are proposed for the numerical simulations of ocean scattering. Numerical results are illustrated in fully bistatic configuration at L- and C- bands. It is found that short waves with wavenumber larger than 316 rad/m have little effects on ocean scattering. The large-scale waves put more effects on scattering in the forward directions, particularly for large incidence angles. For numerical simulations of ocean scattering with incidence angle less than 60°, using small surface profiles with size about 1/6 of those accounting for full spectrum yields result with errors less than 2dB.
机译:我们采用二阶小坡近似(SSA-II)和时刻(MOM)的方法来研究三 - (3-D)和二维(2-D)中的海洋雷达散射的粗糙度尺度效应案例。通过截断KudryavTsev波谱来表示海面的各种粗糙度尺度。为海洋散射的数值模拟提出了全谱截短的标准。在L&C波的完全双结构上以完全基辅配置示出了数值结果。结果发现,大于316 rad / m的波浪的短波对海洋散射几乎没有影响。大尺寸波在向前方向上散射更多的效果,特别是对于大的入射角。对于具有距离小于60°的海洋散射的数值模拟,使用大小约为1/6的小表面剖面对于全谱产生,误差小于2dB。

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