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Precipitation retrieval from spaceborne microwave radiometers based on maximum a a posteriori probability estimation

机译:基于最大后验概率估计的星载微波辐射计的降水检索

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A retrieval technique for estimating rainfall rate and precipitating cloud parameters from spaceborne multifrequency microwave radiometers is described. The algorithm is based on the maximum a posteriori probability criterion (MAP) applied to a simulated data base of cloud structures and related upward brightness temperatures. The cloud data base is randomly generated by imposing the mean values, the variances, and the correlations among the hydrometeor contents at each layer of the cloud vertical structure, derived from the outputs of a time-dependent microphysical cloud model. The simulated upward brightness temperatures are computed by applying a plane-parallel radiative transfer scheme. Given a multifrequency brightness temperature measurement, the MAP criterion is used to select the most probable cloud structure within the cloud-radiation data base. The algorithm is computationally efficient and has been numerically tested and compared against other methods. Its potential to retrieve rainfall over land has been explored by means of Special Sensor Microwave/Imager measurements for a rainfall event over Central Italy. The comparison of estimated rain rates with available raingauge measurements is also shown.
机译:描述了一种从星载多频微波辐射计中估算降雨率和降水云参数的检索技术。该算法基于应用于云结构和相关向上亮度温度的模拟数据库的最大后验概率准则(MAP)。云数据库是通过在依赖于时间的微物理云模型的输出中强加平均值,方差和云垂直结构每一层的水汽含量之间的相关性而随机生成的。通过应用平面平行辐射传输方案来计算模拟的向上亮度温度。给定多频亮度温度测量值,MAP准则用于选择云辐射数据库中最可能的云结构。该算法计算效率高,并且已经过数值测试,并与其他方法进行了比较。通过特殊传感器微波/成像仪的测量,已经探明了其在陆地上重新获得降雨的潜力,用于意大利中部的一次降雨事件。还显示了估计的降雨率与可用的雨量计测量值的比较。

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