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首页> 外文期刊>IEEE Geoscience and Remote Sensing Letters >Retrieval of Sea Surface Wind Speed Using Spaceborne Millimeter-Wave Radar Measurements
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Retrieval of Sea Surface Wind Speed Using Spaceborne Millimeter-Wave Radar Measurements

机译:利用星载毫米波雷达测量反演海面风速

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摘要

Spaceborne millimeter-wave radars can acquire sea surface backscatter information under clear sky conditions. The analysis based on the classical sea surface scattering model and a matching data set of global CloudSat Cloud Profiling Radar (CPR) observations and AMSR-E sea surface parameters shows that the sea surface scattering cross section is significantly dependent on the sea surface wind speed (SSW) in the range of less than 13 m/s. Then, with CPR observations and the sea surface temperature as the input information, an SSW retrieval model under clear sky conditions is established using neural networks. Retrieval results show that the correlation coefficient and the RMS error, between the millimeter-wave cloud radar SSW and the AMSR-E SSW, are approximately 0.95 and 0.97 m/s, respectively.
机译:星空毫米波雷达可以在晴朗的天空条件下获取海面反向散射信息。根据经典海面散射模型以及全球CloudSat云剖析雷达(CPR)观测值和AMSR-E海面参数的匹配数据集进行的分析表明,海面散射截面显着取决于海面风速( SSW)的范围小于13 m / s。然后,以CPR观测值和海面温度作为输入信息,使用神经网络建立了晴朗天空条件下的SSW检索模型。检索结果表明,毫米波云雷达SSW和AMSR-E SSW之间的相关系数和RMS误差分别约为0.95 m / s和0.97 m / s。

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