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首页> 外文期刊>ournal of the Meteorological Society of Japan >Path Attenuation Estimates for the GPM Dual-frequency Precipitation Radar (DPR)
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Path Attenuation Estimates for the GPM Dual-frequency Precipitation Radar (DPR)

机译:GPM双频降水雷达(DPR)的路径衰减估计

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Estimation of path attenuation is a critical part of retrieving precipitation parameters using measurements from the Dual-frequency Precipitation Radar (DPR) on board the Global Precipitation Measurement Mission (GPM) satellite. In this paper, we describe the latest implementation of the surface reference technique (SRT) that uses surface scattering properties to infer path attenuation through the precipitation. Both single- and dual-frequency versions of this method are available and although the dual-frequency version appears to be more accurate at moderate rain rates, the single-frequency approach at Ku-band is needed when the Ka-band data are not available. Despite improvements afforded by the dual-frequency version of the method, other methods such as the Hitschfeld-Bordan and standard dual-frequency approaches offer advantages particularly at lighter rain rates and at near-nadir incidence angles over land. Weighted averages of the results from these methods appear to offer the best estimate of path attenuation presently available.
机译:路径衰减的估计是使用来自全球降水测量任务(GPM)卫星的双频降水雷达(DPR)的测量来检索降水参数的关键部分。在本文中,我们描述了表面参考技术(SRT)的最新实现,它使用表面散射特性通过降水推断出路径衰减。这种方法的单频和双频版本都可用,虽然双频率版本在中等雨率时似乎更加准确,但在不可用的KA波段数据时,需要在KU波带上的单频方法。尽管采用了双频率版本的方法提供了改进,但诸如Hitschfeld-BORDAN和标准双频方法等其他方法,特别是在较轻的雨率和近Nadir入射角下提供优势。来自这些方法的结果的加权平均值似乎提供了目前可用路径衰减的最佳估计。

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