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Preliminary validation of the refractivity from the new radio occultation sounder GNOS/FY-3C

机译:新型无线电掩星探测器GNOS / FY-3C的折射率的初步验证

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As a new member of the space-based radio occultation sounders, the GNOS (Global Navigation Satellite System Occultation Sounder) mounted on Fengyun-3C (FY-3C) has been carrying out atmospheric sounding since 23 September 2013. GNOS takes approximately 800 daily measurements using GPS (Global Positioning System) and Chinese BDS (BeiDou navigation satellite) signals. In this work, the atmospheric refractivity profiles from GNOS were compared with the ones obtained from the co-located ECMWF (European Centre for Medium-Range Weather Forecasts) reanalysis. The mean bias of the refractivity obtained through GNOS GPS (BDS) was found to be approximately -0.09% (-0.04 %) from the near surface to up to 46 km. While the average standard deviation was approximately 1.81% (1.26 %), it was as low as 0.75% (0.53 %) in the range of 5-25 km, where best sounding results are usually achieved. Further, COSMIC (Constellation Observing System for Meteorology, Ionosphere and Climate) and MetOp/GRAS (GNSS Receiver for Atmospheric Sounding) radio occultation data were compared with the ECMWF reanalysis; the results thus obtained could be used as reference data for GNOS. Our results showed that GNOS/FY-3C meets the design requirements in terms of accuracy and precision of the sounder. It possesses a sounding capability similar to COSMIC and MetOp/GRAS in the vertical range of 0-30 km, though it needs further improvement above 30 km. Overall, it provides a new data source for the global numerical weather prediction (NWP) community.
机译:作为天基无线电掩星探测器的新成员,自2013年9月23日起,安装在风云3C(FY-3C)上的GNOS(全球导航卫星系统掩星探测器)一直在进行大气探测。GNOS每天进行约800次测量使用GPS(全球定位系统)和中文BDS(北斗导航卫星)信号。在这项工作中,将来自GNOS的大气折射率剖面与从同一地点的ECMWF(欧洲中距离天气预报中心)重新分析获得的大气折射率剖面进行了比较。通过GNOS GPS(BDS)获得的折射率的平均偏差从近地表到最高46 km约为-0.09%(-0.04%)。虽然平均标准偏差约为1.81%(1.26%),但在5-25 km的范围内,平均标准偏差低至0.75%(0.53%),通常可获得最佳的探测结果。此外,将COSMIC(气象,电离层和气候星座观测系统)和MetOp / GRAS(用于大气探测的GNSS接收器)无线电掩星数据与ECMWF重新分析进行了比较;这样获得的结果可以用作GNOS的参考数据。我们的结果表明,GNOS / FY-3C在发声器的准确性和精度方面满足了设计要求。它在0-30 km的垂直范围内具有类似于COSMIC和MetOp / GRAS的探测能力,尽管在30 km以上需要进一步改进。总体而言,它为全球数值天气预报(NWP)社区提供了新的数据源。

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