GPS meteorology: validation and comparisons with ground-based microwave radiometer and mesoscale model for the Italian GPS permanent stations

R. Pacione , C. Sciarretta , F. Vespe , C. Faccani , R. Ferretti , E. Fionda , C. Ferraro , A. Nardi
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引用次数: 23

Abstract

Ground-based GPS meteorology has been developed during the last decade. Beside the GPS traditional application for precise geodesy, the GPS system has proved to be a powerful tool in atmospheric studies, such as climatology and meteorology. During 1999, at the Space Geodesy Center (CGS) of the Italian Space Agency (ASI) an operative and automatic system was developed in order to produce GPS tropospheric parameters on a daily basic for the Italian GPS permanent stations. In this work the operational processing of the GPS data is described. Moreover, the validation of the GPS tropospheric parameters through a comparison with other independent GPS solutions as well as independent techniques is presented. The GPS internal validation of zenith tropospheric delay (ZTD) shows a bias of 5 mm (absolute values) and a standard deviation ranging from 4 to 20 mm. For a few stations a comparison is performed between the GPS derived precipitable water vapor (PWV) and both the one computed using the MM5 and the one measured by the water vapor radiometer (WVR) and radiosondes (RAOB). The agreement between GPS and MM5 is within the range of 2–7 mm; for GPS, WVR and RAOB the standard deviation ranges from 0.85 to 1.62 mm.

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GPS气象学:意大利GPS永久站地基微波辐射计和中尺度模式的验证和比较
地面GPS气象学在过去十年中得到了发展。除了传统的精确大地测量应用之外,GPS系统已被证明是大气研究的有力工具,如气候学和气象学。1999年,意大利空间局(ASI)空间大地测量中心(CGS)开发了一个操作和自动系统,以便为意大利GPS永久站每天生成GPS对流层参数。本文描述了GPS数据的操作处理。此外,通过与其他独立GPS解和独立技术的比较,对GPS对流层参数进行了验证。GPS内部验证的天顶对流层延迟(ZTD)偏差为5 mm(绝对值),标准差为4 ~ 20 mm。在一些站点,将GPS推导的可降水量(PWV)与MM5计算的降水量和水汽辐射计(WVR)和无线电探空仪(RAOB)测量的降水量进行了比较。GPS与MM5的一致性在2 - 7mm范围内;GPS、WVR和RAOB的标准差范围为0.85 ~ 1.62 mm。
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