测绘通报 ›› 2026, Vol. 0 ›› Issue (7): 37-46.doi: 10.13474/j.cnki.11-2246.2026.0706

• 学术研究 • 上一篇    下一篇

基于IGU与IGF精密星历的GNSS大气可降水量反演精度评估与应用分析

王亮1, 曹诚2, 胡敏1, 胡启亮3   

  1. 1. 邵阳学院, 湖南 邵阳 422000;
    2. 湖南省第二测绘院, 湖南 长沙 410000;
    3. 江苏省地质勘查技术院, 江苏 南京 210049
  • 收稿日期:2026-01-04 发布日期:2026-08-15
  • 作者简介:王亮(1987—),男,硕士,讲师,主要研究方向为卫星导航定位。E-mail:3508@hnsyu.edu.cn
  • 基金资助:
    湖南省教育厅科学研究项目(25C0553)

Assessment and application analysis of GNSS precipitable water vapor retrieval accuracy based on IGU and IGF precise orbits

Wang Liang1, Cao Cheng2, Hu Min1, Hu Qiliang3   

  1. 1. Shaoyang University, Shaoyang 422000, China;
    2. The Second Surveying and Mapping Institute of Hunan Province, Changsha 410000, China;
    3. Jiangsu Institute of Geological Exploration Technology, Nanjing 210049, China
  • Received:2026-01-04 Published:2026-08-15

摘要: [目的] 本文旨在评估国际GNSS服务提供的IGU与IGF精密星历对GNSS反演大气可降水量(PWV)精度的影响。[方法] 基于GNSS水汽遥感原理,利用RTKLIB处理全球多模GNSS实验(MGEX)跟踪网中8个代表测站2024年1月的观测数据,以ERA5再分析资料的PWV为基准,通过平均偏差、均方根误差、标准差及相关系数定量比较两种星历的反演结果。[结果] 结果表明,IGF星历反演PWV的整体精度更高,其RMSE和标准差均为1.9 mm,优于IGU星历的2.1 mm。PWV反演精度呈明显纬度差异,中高纬度地区精度(RMSE约1.4 mm)显著优于赤道附近(RMSE约2.5 mm)。PWV时序变化与降水量密切相关,短时快速上升(如增幅超过5 mm)后常伴随降雨发生。[结论] 本文研究证明了IGF星历在PWV反演中具有更高的可靠性,GNSS反演PWV不仅能反映水汽的时空分布特征,还可为短临降雨预报提供有效信息,对推动GNSS水汽遥感业务化应用具有参考意义。

关键词: 全球卫星导航系统, ERA5再分析资料, 水汽反演, IGS星历(IGU/IGF), 大气可降水量, 降雨预报

Abstract: [Purposes] To evaluate the impact of IGU and IGF precise ephemerides provided by the International GNSS Service on the accuracy of global navigation satellite system (GNSS)-based precipitable water vapor (PWV)retrieval. [Methods] Based on the principles of GNSS water vapor remote sensing,RTKLIB was used to process observational data from eight representative stations in the multi-GNSS experiment (MGEX)tracking network for January 2024.Using PWV from ERA5 reanalysis data as a benchmark,the retrieval results from the two ephemerides were quantitatively compared through mean bias,root mean square error (RMSE),standard deviation,and correlation coefficient. [Findings] The results indicate that the IGF ephemeris yields higher overall accuracy for PWV retrieval,with RMSE and standard deviation both at 1.9 mm,outperforming the IGU ephemeris (2.1 mm).The PWV retrieval accuracy shows significant latitudinal variation,with higher accuracy in mid-to-high latitude regions (RMSE approximately 1.4 mm)compared to regions near the equator (RMSE approximately 2.5 mm).The temporal variation of PWV is closely related to rainfall events,with rapid short-term increases (e.g.,exceeding 5 mm)often followed by rainfall. [Conclusions] This study demonstrates that the IGF ephemeris offers higher reliability in PWV retrieval.GNSS-based PWV retrieval not only reflects the spatiotemporal distribution characteristics of water vapor but also provides valuable information for short-term and imminent rainfall forecasting,offering insights to promote the operational application of GNSS water vapor remote sensing.

Key words: GNSS, ERA5 reanalysis data, water vapor retrieval, IGS orbits (IGU/IGF), PWV, rainfall forecasting

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