[1] XU G C. GPS:Theory, algorithms and applications[M]. Berlin:Springer, 2007. [2] 李征航, 张小红. 卫星导航定位新技术及高精度数据处理方法[M]. 武汉:武汉大学出版社, 2009. [3] 刘经南. GNSS连续运行参考站网的下一代发展方向——地基地球空间信息智能传感网络[J]. 武汉大学学报(信息科学版), 2011, 36(3):253-256. [4] BLEWITT G. An automatic editing algorithm for GPS data[J]. Geophysical Research Letters, 1990, 17(3):199-202. [5] CHEN D,YE S, ZHOU W, et al. A double-differenced cycle slip detection and repair method for GNSS CORS network[J]. GPS Solut, 2016, 20(3):439-450. [6] DU S,GAO Y. Inertial aided cycle slip detection and identification for integrated PPP GPS and INS[J]. Sensors(Basel), 2012, 12(11):14344-14362. [7] KARAIM M, KARAMAT, T.B, NOURELDIN A, et al. A GPS cycle slip detection and correction at measurement level[J]. British Journal of Applied Science & Technology, 2014, 29(4): 4239-4251. [8] ZHANG X,LI X X. Instantaneous re-initialization in real-time kinematic PPP with cycle slip fixing[J]. GPS Solutions, 2012, 16(3): 315-327. [9] YE S, LIU Y Y, SONG W W, et al. A cycle slip fixing method with GPS plus GLONASS observations in real-time kinematic PPP[J]. GPS Solutions, 2016, 20(1):101-110. [10] 陈源军, 易重海. 基于站际历元二次差模型探测与修复周跳的新方法[J]. 武汉大学学报(信息科学版), 2017, 42(6):845-850. [11] 邹璇, 李宗楠, 陈亮,等. 一种历元间差分单站单频周跳探测与修复方法[J]. 武汉大学学报(信息科学版), 2017, 42(10):1406-1410. [12] QIAN C, LIU H, ZHANG M, et al. A geometry-based cycle slip detection and repair method with time-differenced carrier phase (TDCP) for a single frequency global position system (GPS)+BeiDou navigation satellite system (BDS) receiver[J]. Sensors(Basel), 2016, 16(12):2064. [13] FREDA P, ANGRISANO A, GAGLIONE S, et al. Time-differenced carrier phases technique for precise GNSS velocity estimation[J]. GPS Solutions, 2015, 19(2): 335-341. [14] YE S, YAN, CHEN D. Performance analysis of velocity estimation with BDS[J]. Journal of Navigation, 2017, 70(3): 580-594. |