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首页> 外文期刊>SOLA: Scientific Online Letters on the Atmosphere >Early Evaluation of Ku- and Ka-Band Sensitivities for the Global Precipitation Measurement (GPM) Dual-Frequency Precipitation Radar (DPR)
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Early Evaluation of Ku- and Ka-Band Sensitivities for the Global Precipitation Measurement (GPM) Dual-Frequency Precipitation Radar (DPR)

机译:对全球降水测量(GPM)双频降水雷达(DPR)的Ku和Ka波段敏感性的早期评估

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References(19) Cited-By(3) The purpose of this paper is to quantify the sensitivity of the Global Precipitation Measurement (GPM) mission core observatory Dual-frequency Precipitation Radar (DPR) with focus on the Ka-band detectability of light rain and snow in comparison with the Ku-band capability. In this work, storm top height (STH) is utilized exclusively as the metric of radar sensitivity. The GPM DPR standard product level 2 version 3 is used in this analysis for the period from April to August 2014. The Ka high sensitivity (HS) mode and Ku have little systematic difference in STH over a broad range of the histogram, implying that the advantage of the Ka HS mode may not be as distinct as expected. The non-Rayleigh scattering effect may have partly offset the sensitivity advantage of the Ka HS over the Ku.
机译:参考文献(19)引用了(3)本文的目的是量化全球降水测量(GPM)任务核心天文台双频降水雷达(DPR)的灵敏度,重点是小雨的Ka波段可探测性与Ku频段功能相比在这项工作中,风暴顶高度(STH)仅用作雷达灵敏度的度量。在此分析中使用了GPM DPR标准产品2级第3版(2014年4月至2014年8月)。Ka高灵敏度(HS)模式和Ku在较大的直方图范围内STH的系统差异很小,这意味着Ka HS模式的优势可能不如预期的那么明显。非瑞利散射效应可能部分抵消了Ka HS相对于Ku的灵敏度优势。

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