[1] TEUNISSEN P J G, KHODABANDEH A.Review and principles of PPP-RTK methods[J].Journal of Geodesy, 2015, 89(3): 217-240. [2] DAVIS J L, HERRING T A, SHAPIRO I I, et al.Geodesy by radio interferometry: effects of atmospheric modeling errors on estimates of baseline length[J].Radio Science, 1985, 20(6): 1593-1607. [3] BEVIS M, BUSINGER S, HERRING T A, et al.GPS meteorology: remote sensing of atmospheric water vapor using the global positioning system[J].Journal of Geophysical Research: Atmospheres, 1992, 97(D14): 15787-15801. [4] HADAS T, HOBIGER T, HORDYNIEC P.Considering different recent advancements in GNSS on real-time zenith troposphere estimates[J].GPS Solutions, 2020, 24(4): 99. [5] YAO Yibin, HU Yufeng, YU Chen, et al.An improved global zenith tropospheric delay model GZTD2 considering diurnal variations[J].Nonlinear Processes in Geophysics, 2016, 23(3): 127-136. [6] WANG Jungang, LIU Zhizhao.Improving GNSS PPP accuracy through WVR PWV augmentation[J].Journal of Geodesy, 2019, 93(9): 1685-1705. [7] CUI Bobin.GNSS augmentation services for large-area PPP-RTK[EB/OL].[2025-05-12].https://dgk.badw.de/fileadmin/user_upload/Files/DGK/docs/c-939.pdf. [8] 丁文玉.地基GPS探测对流层斜路径湿延迟[J].测绘通报, 2016(2): 75-78. [9] 李盼.GNSS精密单点定位模糊度快速固定技术和方法研究[D].武汉: 武汉大学, 2016. [10] LI Lei, XU Ying, YAN Lizi, et al.A regional NWP tropospheric delay inversion method based on a general regression neural network model[J].Sensors, 2020, 20(11): 3167. [11] YAO Yibin, HU Yufeng.An empirical zenith wet delay correction model using piecewise height functions[J].Annales Geophysicae, 2018, 36(6): 1507-1519. [12] 宋佳, 李敏, 赵齐乐, 等.一种区域实时对流层内插模型及其在PPP中的应用[J].测绘通报, 2018(4): 1-5. [13] 黄良珂.基于区域 CORS 网精密天顶对流层延建模方法研究[J].大地测量与地球动力学, 2013, 33(6):141-144. [14] 章迪.GNSS对流层天顶延迟模型及映射函数研究[J].测绘学报, 2022, 51(9): 1984. |