Sensitivity of modeled polarimetric radar ocean scattering to wind direction

A. Voronovich, V. Zavorotny
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引用次数: 6

Abstract

The results of airborne and satellite polarimetric radar experiments at Ku- and C-bands indicate that the sensitivity of cross-polarized signals persists for high wind speed when the co-polarized signals saturate. It was found that the cross-polarized return is also sensitive to the anisotropy of the wind-driven waves. Here, our intention is to analyze how well the available theoretical models can reproduce the azimuthal angle behavior of polarimetric radar signals. We calculated the fully polarimetric normalized radar cross section using the numerical code based on a small slope approximation of the second order. These calculations are performed for Ku- and C-bands and for two semi-empirical ocean spectral models. Results are compared with the available experimental data obtained from airborne and satellite platforms. The differences between the theoretical curves and experimental data suggest that some additional contribution, presumably from scattering by steep and breaking waves, needs to be accounted for.
模拟极化雷达海洋散射对风向的敏感性
Ku波段和c波段的机载和卫星极化雷达实验结果表明,当共极化信号饱和时,高风速下交叉极化信号的灵敏度仍然保持不变。研究发现,交叉极化回波对风浪的各向异性也很敏感。在这里,我们的目的是分析现有的理论模型如何很好地再现极化雷达信号的方位角行为。我们使用基于二阶小斜率近似的数值代码计算了全极化归一化雷达横截面。这些计算是针对Ku波段和c波段以及两个半经验海洋光谱模式进行的。结果与现有的机载和卫星平台的实验数据进行了比较。理论曲线和实验数据之间的差异表明,一些额外的贡献,可能是由陡峭的波浪和破碎的波浪散射,需要考虑在内。
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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