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Facet-Based Investigation on Microwave Backscattering From Sea Surface With Breaking Waves: Sea Spikes and SAR Imaging

机译:基于分面的碎波海面微波反向散射研究:海峰和SAR成像

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A complete facet model for the backscattering from rough sea surface with breaking waves is proposed in this paper. In consideration of the spatial distribution of breaking waves on sea surface, the model is able to give a good interpretation to the “super events” under high sea states, such as sea spikes and high polarization ratios. Based on the proposed model, normalized radar cross section plots of sea surface under backscattering configuration are calculated and compared with measured data. The comparisons show that the proposed model is tractable to estimate the scattering from electrically large ocean surface under high sea states with accuracy and efficiency. In addition, the non-Gaussian statistics and spatial correlation properties of sea clutter are analyzed under different range resolutions and incident angles. The results show that high kurtosis value, which means a sea spike phenomenon, mostly happens in lower grazing angle and higher range resolution cases. The comparisons of simulated SAR images of sea surface with and without breaking waves also reveal that sea spikes and high polarization ratios are caused by breaking waves. All the simulation results prove that our model not only is able to explain the physical mechanism of the scattering but also can be applied to the analyses of statistical properties of sea clutter under high sea states.
机译:提出了一个完整的多面模型,用于从粗糙海面向后散射波。考虑到海面破碎波的空间分布,该模型能够很好地解释海浪和高极化率等高海况下的“超级事件”。基于提出的模型,计算了反向散射配置下海面的标准化雷达横截面图,并将其与实测数据进行了比较。比较结果表明,所提出的模型具有较高的精确度和效率,可用于估算高海况下电大海洋表面的散射。此外,还分析了不同距离分辨率和入射角下海杂波的非高斯统计和空间相关性。结果表明,峰度值高,即海峰现象,主要发生在掠角较小和分辨率较高的情况下。有和没有破波的海面模拟SAR图像的比较还表明,海浪和高极化比是由破波引起的。所有的仿真结果证明,我们的模型不仅能够解释散射的物理机理,而且可以应用于高海况下海杂波统计特性的分析。

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