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On the Use of Doppler Shift for Sea Surface Wind Retrieval From SAR

机译:多普勒频移在SAR海面风反演中的应用

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The synthetic aperture radar (SAR) Doppler centroid has been used to estimate the scatter line-of-sight radar velocity. In weak to moderate ocean surface current environment, the SAR Doppler centroid is dominated by the directionality and strength of wave-induced ocean surface displacements. In this paper, we show how this sea state signature can be used to improve surface wind retrieval from SAR. Doppler shifts of C-band radar return signals from the ocean are thoroughly investigated by colocating wind measurements from the ASCAT scatterometer with Doppler centroid anomalies retrieved from Envisat ASAR. An empirical geophysical model function (CDOP) is derived, predicting Doppler shifts at both VV and HH polarization as function of wind speed, radar incidence angle, and wind direction with respect to radar look direction. This function is used into a Bayesian inversion scheme in combination with wind from a priori forecast model and the normalized radar cross section (NRCS). The benefit of Doppler for SAR wind retrieval is shown in complex meteorological situations such as atmospheric fronts or low pressure systems. Using in situ information, validation reveals that this method helps to improve the wind direction retrieval. Uncertainty of the calibration of Doppler shift from Envisat ASAR hampers the inversion scheme in cases where NRCS and model wind are accurate and in close agreement. The method is however very promising with respect of future SAR missions, in particular Sentinel-1, where the Doppler centroid anomaly will be more robustly retrieved.
机译:合成孔径雷达(SAR)多普勒质心已用于估计散射视线雷达速度。在弱至中度的海面洋流环境中,SAR多普勒质心受波浪引起的海面位移的方向性和强度支配。在本文中,我们展示了如何使用这种海况信号来改善从SAR提取的地面风。通过将来自ASCAT散射仪的风测量值与从Envisat ASAR检索到的多普勒质心异常并置,对来自海洋的C波段雷达返回信号的多普勒频移进行了彻底研究。推导了经验地球物理模型函数(CDOP),预测了在VV和HH极化下的多普勒频移与风速,雷达入射角和相对于雷达视线方向的风向有关。结合来自先验预报模型的风和归一化雷达横截面(NRCS),将此函数用于贝叶斯反演方案。在复杂的气象情况下,例如大气锋面或低压系统中,显示了多普勒对SAR风的探测的好处。使用原位信息,验证表明该方法有助于改善风向检索。如果NRCS和模型风精确且吻合良好,Envisat ASAR的多普勒频移校准的不确定性会阻碍反演方案。但是,对于未来的SAR任务,特别是Sentinel-1,该方法非常有前途,在Sentinel-1中,多普勒质心异常将得到更可靠的检索。

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