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Application of GPS radio occultation to the assessment of temperature profile retrievals from microwave and infrared sounders

机译:GPS无线电掩星在微波和红外探测器评估温度曲线检索评估中的应用

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Comparisons of satellite temperature profile products from GPS radio occultation (RO) and hyperspectral infrared (IR)/microwave (MW) sounders are made using a previously developed matchup technique. The profile matchup technique matches GPS RO and IR/MW sounder profiles temporally, within 1 h, and spatially, taking into account the unique RO profile geometry and theoretical spatial resolution by calculating a ray-path averaged sounder profile. The comparisons use the GPS RO dry temperature product. Sounder minus GPS RO differences are computed and used to calculate bias and rms profile statistics, which are created for global and 30° latitude zones for selected time periods. These statistics are created from various combinations of temperature profile data from the Constellation Observing System for Meteorology, Ionosphere & Climate (COSMIC) network, Global Navigation Satellite System Receiver for Atmospheric Sounding (GRAS) instrument, and the Atmospheric Infrared Sounder (AIRS)/Advanced Microwave Sounding Unit (AMSU), Infrared Atmospheric Sounding Interferometer (IASI)/AMSU, and Crosstrack Infrared Sounder (CrIS)/Advanced Technology Microwave Sounder (ATMS) sounding systems. By overlaying combinations of these matchup statistics for similar time and space domains, comparisons of different sounders' products, sounder product versions, and GPS RO products can be made. The COSMIC GPS RO network has the spatial coverage, time continuity, and stability to provide a common reference for comparison of the sounder profile products. The results of this study demonstrate that GPS RO has potential to act as a common temperature reference and can help facilitate inter-comparison of sounding retrieval methods and also highlight differences among sensor product versions.
机译:GPS无线电掩星(RO)和高光谱红外线(IR)/微波(MW)发声器的卫星温度谱产品的比较是使用先前开发的匹配技术进行的。简介匹配技术在时间上匹配GPS RO和IR / MW发声器配置文件,在1小时内和空间上,考虑到唯一的RO轮廓几何形状和理论空间分辨率,通过计算Ray-Path平均的探测器配置文件。比较使用GPS RO干温产品。测量器减去GPS RO差异计算并用于计算偏置和RMS配置文件统计信息,该统计数据是为选定的时间段的全局和30°纬度区域创建的。这些统计数据是从气象,电离层和气候(COSMIC)网络的星座观察系统的各种统计数据,全球导航卫星系统接收器,用于大气探测器(GRAS)仪器,以及大气红外发声器(空气)/高级微波探测单元(AMSU),红外大气发声干涉仪(IASI)/ AMSU和Crosstrack红外发声器(CRIS)/先进的技术微波发声器(ATM)发声系统。通过覆盖这些匹配统计的组合,了解类似的时间和空间域,可以进行不同探测器的产品,发声器产品版本和GPS RO产品的比较。宇宙GPS RO网络具有空间覆盖,时间连续性和稳定性,以提供用于比较探测器配置文件产品的公共参考。本研究的结果表明,GPS RO具有作为共同温度参考的可能性,并且可以帮助促进声音检索方法的相互比较,并且还突出传感器产品版本之间的差异。

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