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Tilt modulation of high resolution radar backscatter cross sections: unified full wave approach

机译:高分辨率雷达后向散射截面的倾斜调制:统一的全波方法

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The unified full wave approach is used to determine the tilt modulation of the like- and cross-polarized (high-resolution) radar backscatter cross sections for the rough sea surface. Real or synthetic aperture radars (SARs) with small effective footprints (resolution cells) are considered. Since the unified full-wave approach accounts for Bragg scattering as well as specular point scattering in a self-consistent manner, it is not necessary to adopt a two-scale model for the rough sea surface. The sea surface slope probability density function is assumed to be Gaussian. The backscattering cross sections are evaluated for all angles of incidence (normal to grazing). For tilts in the plane of incidence, the modulation of all the cross sections is largest at angles of incidence of 10 degrees . The cross-section modulation due to tilts perpendicular to the plane of incidence critically depends on the incident and scattered polarizations. The effective filtering of the large-scale spectral components of the rough sea surface by the high-resolution radar is accounted for, and the dependence of the cross-section tilt modulation on the size of the effective footprint is determined.
机译:统一的全波方法用于确定粗糙海面的类似和交叉极化(高分辨率)雷达反向散射截面的倾斜调制。考虑了具有较小有效覆盖区(分辨率单元)的真实或合成孔径雷达(SAR)。由于统一的全波方法以自洽的方式解决了布拉格散射以及镜面点散射问题,因此对于粗糙的海面无需采用两尺度模型。假定海面倾斜概率密度函数为高斯。评估所有入射角(垂直于掠射)的反向散射横截面。对于入射平面中的倾斜,所有横截面的调制在10度的入射角处最大。由于垂直于入射平面的倾斜而引起的横截面调制主要取决于入射极化和散射极化。考虑到高分辨率雷达对粗糙海面的大规模光谱分量的有效滤波,并且确定了截面倾斜调制对有效足迹尺寸的依赖性。

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