首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Precipitation detection by the TOPEX/Poseidon dual frequency radar altimeter, TOPEX microwave radiometer, Special Sensor Microwave/Imager and climatological shipboard reports
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Precipitation detection by the TOPEX/Poseidon dual frequency radar altimeter, TOPEX microwave radiometer, Special Sensor Microwave/Imager and climatological shipboard reports

机译:通过TOPEX / Poseidon双频雷达高度计,TOPEX微波辐射计,特殊传感器微波/成像仪和气候船上报告进行降水检测

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The athors evaluate the ability of a dual-frequency radar (C and Ku band) altimeter to detect rain events. A TOPEX/Poseidon (T/P) altimeter rain flag for the year 1994 is compared to collocated rain rate (RR) from the Defense Meteorological Satellite Program's Special Sensor Microwave Imager (DMSP SSM/I), as processed to the TOPEX/Poseidon passive radiometer's (TMR) liquid-water content, and to a 34-year climatology of shipboard present-weather reports compiled by G. W. Petty (1995). The altimeter-SSM/I analysis is couched in terms of the tradeoff between the probability of a false positive and the probability of a failure to detect rain. The authors show that the ability of the SSM/I and TMR datasets to detect precipitation are closer to each other than to either the altimeter or the shipboard climatology, and this difference is accentuated at latitudes poleward of 45/spl deg/. They argue that the different footprint sizes explain only part of this discrepancy. They propose that the difference at high latitudes is caused by the altimeter data's sensitivity to snow. In order to detect precipitation (as opposed to detecting bad altimetric values or out-of-range altimetric corrections), a TMR-only flag with liquid-water content of 600 /spl mu/m recovers too few rain events, 400 /spl mu/m is close to climatological moderate-to heavy intensity rains, and 200 /spl mu/m is close to rain of any intensity. For the same purpose, a combined altimeter and TMR flag, with a TMR threshold of 100 /spl mu/m and with the Ku radar cross section 1.5 standard deviations below an average Ku/C curve, gives the best match for climatological precipitation of any intensity class.
机译:Athors评估双频雷达(C和Ku波段)高度计检测雨水事件的能力。将1994年的TOPEX /波塞冬(T / P)高度计降雨标志与国防气象卫星计划的特殊传感器微波成像仪(DMSP SSM / I)的并置降雨率(RR)进行比较,并处理为TOPEX / Poseidon被动辐射仪(TMR)的液态水含量,以及GW Petty(1995)编写的34年船上气候现况报告。高度计-SSM / I分析依据的是假阳性的概率与未能检测到降雨的概率之间的权衡。这组作者表明,SSM / I和TMR数据集检测降水的能力比高度计或船上气候学更接近彼此,并且这种差异在纬向向纬度为45 / spl deg /的情况下更加突出。他们认为不同的足迹尺寸只能解释这种差异的一部分。他们提出,高纬度地区的差异是由高度计数据对雪的敏感性引起的。为了检测降水(与检测不良的海拔高度值或超出范围的海拔高度校正相反),只有TMR标志的液态水含量为600 / spl mu / m才能恢复很少的降雨事件,400 / spl mu / m接近气候中等至强降雨,而200 / spl mu / m接近任何强度的降雨。出于相同的目的,高度计和TMR标志结合使用,TMR阈值为100 / spl mu / m,Ku雷达横截面比平均Ku / C曲线低1.5个标准差,可为任何气候降水提供最佳匹配强度等级。

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