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Assessment of CYGNSS Wind Speed Retrieval Uncertainty

机译:CYGNSS风速反演不确定度的评估

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摘要

Measurements of near surface wind speed made by the Cyclone Global Navigation Satellite System (CYGNSS) constellation of GNSS-R satellites are evaluated and their uncertainty is assessed in two ways. A bottom-up assessment begins with a model for the error in engineering measurements and propagates that error through the wind speed retrieval algorithm analytically. A top-down assessment performs a statistical comparison between CYGNSS measurements and coincident "ground truth" measurements of wind speed. Results of the two approaches are compared. Overall performance, as determined by the top-down method, is decomposed using the bottom-up approach into its contributing sources of error. Overall root mean square (RMS) uncertainty in the CYGNSS retrievals is 1.4 m/s at wind speeds below 20 m/s. At higher wind speeds, an increase in the retrieval error is primarily caused by a decrease in the sensitivity of the ocean scattering cross section to changes in wind speed. In tropical cyclones, retrieval errors are compounded by unaccounted departures from a fully developed sea state. Overall RMS uncertainty in the CYGNSS retrievals is 17% at wind speeds above 20 m/s.
机译:评估了GNSS-R卫星的气旋全球导航卫星系统(CYGNSS)星座进行的近地表风速测量,并通过两种方式评估了其不确定性。自下而上的评估始于工程测量误差的模型,然后通过风速检索算法以分析方式传播该误差。自上而下的评估在CYGNSS测量值与同时的“地面真实”风速测量值之间进行统计比较。比较了两种方法的结果。由上而下的方法确定的总体性能将使用自下而上的方法分解为错误的主要来源。当风速低于20 m / s时,CYGNSS检索的总体均方根(RMS)不确定度为1.4 m / s。在较高的风速下,取回误差的增加主要是由于海洋散射横截面对风速变化的敏感性降低所致。在热带气旋中,取回错误是由于未完全成熟的海面状态而无法解释的。当风速超过20 m / s时,CYGNSS检索的总体RMS不确定度为17%。

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