[1] 张成龙, 刘超, 赵兴旺, 等. 基于改进EEMD的GPS多路径误差建模与削弱方法研究[J]. 大地测量与地球动力学, 2018, 38(10):1021-1026. [2] 邵梦杨, 郭磊, 王甫红. 城市典型环境下单频导航型GNSS接收机多路径误差特性分析[J]. 测绘通报, 2018(9):1-7. [3] 袁运斌, 霍星亮, 张宝成. 近年来我国GNSS电离层延迟精确建模及修正研究进展[J]. 测绘学报,2017, 46(10):1364-1378. [4] BOEHM J, HEINKELMANN R, SCHUH H. Short note:a global model of pressure and temperature for geodetic applications[J]. Journal of Geodesy, 2007, 81(10):679-683. [5] LAGLER K, SCHINDELEGGER M, BÖHM J, et al. GPT2:empirical slant delay model for radio space geodetic techniques[J]. Geophysical Research Letters, 2013, 40(6):1069-1073. [6] BÖHM J, MÖLLER G, SCHINDELEGGER M,et al. Development of an improved empirical model for slant delays in the troposphere (GPT2w)[J]. GPS Solutions, 2015, 19(3):433-441. [7] HERNÁNDEZ-PAJARES M, JUAN J M, SANZ J, et al. The IGS VTEC maps:a reliable source of ionospheric information since 1998[J]. Journal of Geodesy, 2009, 83(3):263-275. [8] SAASTAMOINEN J. Atmospheric correction for the tropo-sphere and stratosphere in radio ranging satellites[M]. Washington, DC:The use of artificial satellites for geodesy, 1972:247-251. [9] ALTAMIMI Z, COLLILIEUX X, MÉTIVIER L. ITRF2008:an improved solution of the international terrestrial reference frame[J]. Journal of Geodesy, 2011, 85(8):457-473. [10] 余涛, 万卫星, 刘立波, 等. 利用IGS数据分析全球TEC的周年和半年变化特性[J]. 地球物理学报, 2006, 49(4):943-949. [11] 时爽爽, 黄劲松, 冯建迪, 等. 基于IGS的白天和夜间电离层TEC变化特性分析[J]. 大地测量与地球动力学, 2015, 35(2):293-297. [12] 王洪栋, 王敏. 测站气温与气压对GPS定位结果的影响[J]. 大地测量与地球动力学, 2016, 36(4):323-326,330. [13] 姚宜斌,曹娜,许超钤,等. GPT2模型的精度检验与分析[J]. 测绘学报, 2015, 44(7):726-733. |