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Analysis of algorithms for the retrieval of rain-rate profiles from a spaceborne dual-wavelength radar

机译:从星载双波长雷达中获取降雨率剖面的算法分析

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The ability to retrieve rain-rate profiles from a dual-wavelength spaceborne radar system operating at 13.6 and 35 GHz is analyzed. The fundamental problem of extracting either the attenuation and/or the reflectivity from the backscatter echo, which contains both contributions, is addressed. Three algorithms, the backscatter, the attenuation coefficient, and the dual-wavelength methods, are examined. These algorithms are tested using four rain-rate profiles derived from radar measurements. In particular, measured (true) values are compared with calculated (retrieved) rain rates applying the algorithms with superimposed uncertainties assuming a suggested spaceborne dual-wavelength radar system. Error values of rain rates are determined where these values reflect failure of the assumptions utilized in the derivation of the algorithms, rain backscatter noise, and instrument noise.
机译:分析了从工作在13.6和35 GHz的双波长星载雷达系统中检索降雨率剖面的能力。解决了从包含两个贡献的后向散射回波中提取衰减和/或反射率的基本问题。考察了三种算法,即反向散射,衰减系数和双​​波长方法。这些算法使用从雷达测量得出的四个降雨率曲线进行了测试。尤其是,使用建议的星载双波长雷达系统,使用具有叠加不确定性的算法,将测量的(真实)值与计算的(获取的)降雨率进行比较。确定降雨率的误差值,这些值反映了算法推导中使用的假设的失败,降雨后向散射噪声和仪器噪声。

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