首页> 外文期刊>Geoscience and Remote Sensing Letters, IEEE >Directional Stability and Conservation of Scattering (DiSCS)-Based Directional-Ambiguity Removal Algorithm for Improving Wind Fields From Scatterometer: A QuikSCAT Example
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Directional Stability and Conservation of Scattering (DiSCS)-Based Directional-Ambiguity Removal Algorithm for Improving Wind Fields From Scatterometer: A QuikSCAT Example

机译:基于散射的方向稳定性和守恒(DiSCS)的方向模糊度消除算法,用于改善散射仪的风场:QuikSCAT示例

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摘要

A new directional-ambiguity removal algorithm has been developed for improving the wind fields derived from a scatterometer. Exploiting the natural spatial variability of ocean surface wind directions and invoking the conservation of backscattering, a new directional stability-weighted low-pass filter has been designed to complement the circular median filtering. It improves the directional-ambiguity removal by reducing the directional noise while retaining the natural wind flow. On the basis of analysis, which will be described later, indicating the lower spatial stability (conversely, the variability) of the wind direction and the lower direction-retrieval skills of the scatterometer-derived winds at low-intensity winds ($ 3 m/s) as compared to those for winds above 3 m/s, the ambiguity removal has been performed separately for these two wind regimes. The proposed Directional Stability and Conservation of Scattering (DiSCS) algorithm is applicable to the full swath of the scatterometer. Using the DiSCS algorithm, the wind fields derived from QuikSCAT Level-2A backscatter data over global oceans for 57 orbits during July 1–4, 2005, have been compared with the winds from the National Centers for Environmental Predictions and European Centre for Medium-Range Weather Forecasts models. Similar comparisons of QuikSCAT Level-2B finished products “direction interval retrieval with thresholded nudging” winds (referred to hereinafter as FP) with the winds from these two models have been performed. The QuikSCAT-derived winds are found to be closer to the model winds as compared to those QuikSCAT FP winds.
机译:已经开发了一种新的方向模糊度消除算法,用于改善从散射仪获得的风场。利用海洋表面风向的自然空间变异性并调用后向散射保护功能,已设计了一种新的方向稳定性加权低通滤波器来补充圆形中值滤波。它通过减少方向性噪声,同时保留自然风流,改善了方向性歧义的消除。在分析的基础上,将在后面进行描述,表明在低强度风中,风向的空间稳定性较低(反之,变异性),而散射计派生的风在较低的方向检索技能($ 3 m / s)与3 m / s以上的风相比,针对这两种风态分别进行了歧义消除。所提出的方向稳定性和散射守恒(DiSCS)算法适用于散射仪的整个条带。使用DiSCS算法,将2005年7月1-4日从QuikSCAT Level-2A反向散射数据得出的全球海洋在57个轨道上的风场与美国国家环境预测中心和欧洲中距离中心的风进行了比较。天气预报模型。已对QuikSCAT Level-2B成品“带阈值推挤的方向间隔检索”风(以下称为FP)与来自这两个模型的风进行了类似的比较。与那些QuikSCAT FP风相比,QuikSCAT派生风更接近模型风。

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