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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >A Novel Azimuth Cutoff Implementation to Retrieve Sea Surface Wind Speed From SAR Imagery
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A Novel Azimuth Cutoff Implementation to Retrieve Sea Surface Wind Speed From SAR Imagery

机译:一种从SAR影像中检索海面风速的新型方位角截止实现

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In this paper, the synthetic aperture radar (SAR) azimuth cutoff method is thoroughly revised and a new and general implementation is proposed. The key roles of the pixel spacing, the size of the image box, and the texture of the SAR scene are analyzed and optimized in terms of azimuth cutoff (lambda(c)) estimation. The reliability of the lambda(c) estimation is analyzed by measuring the distance between the measured and fitted autocorrelation functions. This analysis shows that it is of paramount importance to filter unfeasible/unreliable lambda(c) values. To identify those values in an objective way, a criterion that is based on the chi(2) test performed over a large data set of Sentinel-1 SAR imagery is defined and proven to be effective. The new robust implementation of the lambda(c) estimation at about 1-km grid spacing is then used to produce averaged lambda(c) at about 10-km grid spacing. The performance of the new estimation procedure, analyzed using a lambda(c)-to-wind-speed forward model, is shown to provide improved wind speed retrievals, with a root-mean-square error of 1.8-2 m/s when verified against independent numerical weather prediction model output and scatterometer winds.
机译:本文对合成孔径雷达(SAR)方位角截止方法进行了彻底修改,提出了一种新的通用实现方法。像素间隔,图像框的大小以及SAR场景的纹理的关键作用已根据方位角截止(lambda(c))估计进行了分析和优化。通过测量被测和拟合的自相关函数之间的距离来分析lambda(c)估计的可靠性。该分析表明,过滤不可行/不可靠的lambda(c)值至关重要。为了客观地识别这些值,定义了一个标准,该标准基于对Sentinel-1 SAR图像的大型数据集执行的chi(2)测试,并被证明是有效的。然后,在大约1 km的网格间距处对lambda(c)估计进行新的鲁棒实现,以在大约10 km的网格间距处生成平均lambda(c)。新的估计程序的性能(使用lambda(c)到风速正向模型进行分析)显示可提供改进的风速检索,验证时的均方根误差为1.8-2 m / s反对独立的数值天气预报模型输出和散射仪风。

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