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Investigation on Doppler Shift and Bandwidth of Backscattered Echoes From a Composite Sea Surface

机译:复合海面回波回波的多普勒频移和带宽研究

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In the general framework of the second-order small-slope approximation (SSA) (SSA-II), Doppler shifts of backscattered fields from time-varying sea surfaces are predicted at small and moderate incidence angles. The composite sea surface is modeled as a superposition of large-scale gravity waves and small-scale ripples. Here, the elevation of the large-scale surface component, on which each small facet travels along a closed orbit under the condition of the first-order approximation, is described by the coordinates of the small facets. The predicted Doppler shifts are compared with the results obtained by the small perturbation method (SPM), the geometrical optics method, the first-order SSA (SSA-I), and the two-scale scattering method (TSM). We can find that the predicted Doppler shifts for SPM and SSA-I in copolarized configuration are insensitive to the polarization state. However, the results obtained by SSA-II are consistent with those obtained by TSM and yield significant differences between HH and VV polarizations. Spectrum bandwidth is mainly induced by sea-surface orbit motions. In this paper, the formula of the spectrum bandwidth for the scattered echoes from the composite sea surface is also derived on the basis of TSM. The predicted bandwidths are compared with the Monte Carlo simulated results and the measured data. Furthermore, the dependences of the Doppler shift and the bandwidth on the parameters, such as the polarization, wind speed, radar frequency, etc., are also discussed.
机译:在二阶小斜率近似(SSA)(SSA-II)的一般框架中,从时变的海面向后散射场的多普勒频移在小而中等的入射角下被预测。复合海面被建模为大型重力波和小型波纹的叠加。在此,通过小面的坐标来描述在一个一阶近似的条件下每个小面在闭合轨道上行进的大型表面分量的高程。将预测的多普勒频移与通过小扰动方法(SPM),几何光学方法,一阶SSA(SSA-1)和两尺度散射方法(TSM)获得的结果进行比较。我们可以发现,在共极化配置中,SPM和SSA-1的预测多普勒频移对极化状态不敏感。但是,通过SSA-II获得的结果与通过TSM获得的结果一致,并且在HH和VV极化之间会产生明显差异。频谱带宽主要由海面轨道运动引起。本文还基于TSM推导了复合海面散射回波的频谱带宽公式。将预测带宽与蒙特卡洛模拟结果和测量数据进行比较。此外,还讨论了多普勒频移和带宽对参数的依赖性,例如极化,风速,雷达频率等。

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