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A multidimensional histogram rain-flagging technique for SeaWinds on QuikSCAT

机译:QuikSCAT上用于SeaWinds的多维直方图降雨标记技术

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The SeaWinds scatterometer was developed by NASA JPL to measure the speed and direction of global ocean surface winds. SeaWinds was launched aboard the QuikSCAT spacecraft on June 19, 1999 and has continued to operate successfully since being turned on. Although the initial SeaWinds wind vector products were of excellent quality, they were occasionally degraded by the presence of rain. It soon became obvious that a way to flag wind vector cells for rain contamination was needed. The authors have determined a set of parameters that are sensitive to rain and are computed from the scatterometer measurements. These parameters are: (1) the retrieved wind speed, (2) the retrieved wind direction relative to the satellite ground track, (3) the normalized beam difference, which indicates a statistically significant imbalance in the beams relative to the geophysical model function, (4) the maximum likelihood estimate calculated by the wind retrieval algorithm, and (5) the radiometric brightness temperature. Using these parameters and external rain information (SSM/I) an estimate of the conditional probability of rain given the parameters is developed using a multidimensional histogram technique. This probability estimate is then used to flag rain contaminated wind vector cells using only scatterometer data. This technique is currently employed to generate a rain flag for SeaWinds on QuikSCAT data. In this paper, the effects of rain on SeaWinds data are explored, the rain flagging technique is explained, and the performance of the rain flag is illustrated using a number of metrics.
机译:SeaWinds散射仪是由NASA JPL开发的,用于测量全球海洋表面风的速度和方向。 SeaWinds于1999年6月19日在QuikSCAT航天器上发射升空,自开启以来一直继续成功运行。尽管最初的SeaWinds风矢量产品质量优异,但偶尔会因雨水而退化。很快变得很明显,需要一种标记风矢量单元以防雨水污染的方法。作者已经确定了一组对雨水敏感的参数,这些参数是根据散射仪的测量结果计算得出的。这些参数是:(1)检索到的风速;(2)检索到的相对于卫星地面轨道的风向;(3)归一化的射束差,这表明射束相对于地球物理模型函数具有统计上的显着失衡; (4)通过风检索算法计算出的最大似然估计,以及(5)辐射亮度温度。使用这些参数和外部降雨信息(SSM / I),可以使用多维直方图技术对给定参数的降雨的条件概率进行估算。然后仅使用散射仪数据将此概率估计值用于标记受雨水污染的风矢量单元。该技术当前用于在QuikSCAT数据上为SeaWinds生成降雨标记。在本文中,探讨了降雨对SeaWinds数据的影响,解释了降雨标记技术,并使用许多指标说明了降雨标记的性能。

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