[1] Lichtenegger H, Hofmann-Wellenhof B.GPS-data preprocessing for cycle-slip detection [A].In:Bock Y, Leppard N, eds.International Association of Geodesy Symposia on Global Positioning System:An Overview [C].Edinburgh, Scotland, 1989.57-68.
[2] Bisnath S B.Efficient, automated cycle-slip correction of dual-frequency kinematic GPS data [A].In:Proceedings of ION GPS 2000 [C].Salt Lake City, Utah, 2000.145-154.
[3] Bastos L, Landau H.Fixing cycle slips in dual-frequency kinematic GPS-applications using Kalman filtering [J].Manuscripta Geodaetica, 1988, 13(4):249-256.
[4] Blewitt G.An automatic editing algorithm for GPS data [J].Geophysical Research Letters, 1990, 17(3):199-202.
[5] Gao Y, Li Z.Cycle slip detection and ambiguity resolution algorithms for dual-frequency GPS data processing [J].Marine Geodesy, 1999, 22(4):169-181.
[6] Collin F, Warnant R.Application of the wavelet transform for GPS cycle slip correction and comparison with Kalman filter [J].Manuscripta Geodaetica, 1995, 20(3):161-172.
[7] Michaud S, Santeree R.Time-relative positioning with a single civil GPS receiver [J].GPS Solutions, 2001, 5(2):71-77.
[8] Kim D, Langley R B.Estimation of the stochastic model for long-baseline kinematic GPS applications [A].In:Proceedings of the Institute of Navigation 2001 National Technical Meeting [C].Long Beach, CA, USA, 2001.586-595.