GPS/GLONASS time offset monitoring based on combined Precise Point Positioning (PPP) approach

Advances in Space Research - Tập 55 - Trang 2950-2960 - 2015
G. Huang1,2, Q. Zhang1, W. Fu1, H. Guo3
1College of Geology Engineering and Geomantic, Chang’an University, Xi’an 710054, China
2National Key Laboratory of Geo-Information Engineering, Xi’an, 710054, China
3Beijing Satellite Navigation Center, Beijing 100094, China

Tài liệu tham khảo

Bauch, A., Piester, D., Moudrak, A., Petit, D., 2004. Time comparisons between USNO and PTB: a model for the determination of the time offset between GPS time and the further Galileo system time. In: Proceedings of the 2004 IEEE International Conference on Ultrasonics, Ferroelectrics and Frequency Control (UFFC) Joint Conference, 24–27 August 2004, Montreal, Canada. Cai, C., 2009. Precise point positioning using dual-frequency GPS and GLONASS measurements. Master Paper, University of Calgary. Cai, 2012, Modeling and assessment of combined GPS/GLONASS precise point positioning, GPS Solution, 17, 223, 10.1007/s10291-012-0273-9 Cai, 2007, Precise point positioning using combined GPS and GLONASS observations, J. Global Positioning Syst., 6, 13, 10.5081/jgps.6.1.13 Cai, C., Gao, Y., 2008. Estimation of GPS-GLONASS system time difference with application to PPP, ION GNSS 21st. In: International Technical Meeting of the Satellite Division, 16–19, September 2008, Savannah, GA, pp. 2880–2887. Chen, J., Xiao, P., Zhang, Y., Wu, B., 2013. GPS/GLONASS system bias estimation and application in GPS/GLONASS combined positioning. In: China Satellite Navigation Conference (CSNC) 2013 Proceedings. Lecture Notes in Electrical Engineering, vol. 244, pp. 323–333, http://dx.doi.org/10.1007/978-3-642-37404-3_29. Chen, J., Zhang, Y., Lin, L., Wu, B., 2013b. Precise GNSS timing bias estimation based on single multi-GNSS station. In: The 4nd China Satellite Navigation Conference, Wuhn, China, pp. 319–325. Dach, R., Hugentobler, U., Schildknecht, T., Bernier, L.G., Dudle, G., 2005. Precise continuous time and frequency transfer using GPS carrier phase. In: Proceedings of the IEEE International Frequency Control Symposium and Exposition, Vancouver, B.C., 29–31 August. Dong, S., Li, X., Wu, H., 2007. About compass time and its coordination with other GNSSs. In: 39th Annual Precise Time and Time Interval (PTTI) Meeting, 26–29 Nov 2007, Long Beach, CA, pp. 20–23. Dong, 2008, The compass and its time reference system, Metrologia, 45, S47, 10.1088/0026-1394/45/6/S08 Dong, 2008, The compass and its time reference system, Metrologia, 45, S47, 10.1088/0026-1394/45/6/S08 Han, 2011, BeiDou navigation satellite system and its time scales, Metrologia, 48, 1, 10.1088/0026-1394/48/4/S13 Huang, G., Yang, Y., Liu, C., Zhang, Q., Zhang, S., 2013. GNSS precise point positioning algorithm based on parameter equivalent reduction principle. In: China Satellite Navigation Conference (CSNC) 2013 Proceedings Lecture Notes in Electrical Engineering vol. 244, pp. 449–469. ICD-Galileo, 2014. European GNSS (Galileo) open service signal in space interface control document, OS SIS ICD, Issue 1.2, European Union. ICD-GLONASS, 2008. Global Navigation Satellite System GLONASS Interface Control Document, version 5.1, Moscow. ICD-GPS, 2013. Interface Control Document-Navstar GPS Space Segment/Navigation User Interfaces, ICD GPS-200H. Jin, 2012, M_DCB: Matlab code for estimating GNSS satellite and receiver differential code biases, GPS Solution, 16, 541, 10.1007/s10291-012-0279-3 Jin, 2010, Effects of physical correlations on long-distance GPS positioning and zenith tropospheric delay estimates, Adv. Space Res., 46, 190, 10.1016/j.asr.2010.01.017 Jin, 2005, An improvement of GPS height estimates: stochastic modeling, Earth Planets Space, 57, 253, 10.1186/BF03352561 Kozlov, D., Tkachenko, M., Tochilin, A., 2000. Statistical characterization of hardware biases in GPS/GLONASS receivers. In: Proceedings of ION GPS 2000, Sept 19–22, Salt Lake City, UT, pp. 817–826. Moudrak, A., Konovaltsev, A., Further, J., Hammesfahr, J., Defraigne, P., 2004. GPS Galileo time offset: how it affects positioning accuracy and how to cope with it. In: Proceeding of ION GNSS 2004, Long Beach, CA, USA, ION GPS 2004, 21–24 September 2004, pp. 660–669. Piriz, 2008, GNSS interoperability: offset between reference time scales and timing biases, Metrologia, 45, S87, 10.1088/0026-1394/45/6/S14 Ray, 2005, Geodetic techniques for time and frequency comparisons using GPS phase and code measurements, Inst. Phys. Publishing, Metrologia, 42, 215, 10.1088/0026-1394/42/4/005 Ray, J., Senior, K., 2003. IGS/BIPM Pilot Project: GPS carrier phase for time/frequency transfer and time scale formation. In: 4th International Time Scale Algorithms Symposium at BIPM, Sevres, France, 18–19 March 2002. Metrologia. 40(3):270–288, erratum 40(4):205. Senior, K., Koppang, PA., Matsakis, D., Ray, J., et al., 2001. Developing an IGS time scale. In: Proceedings of 2001 IEEE International Frequency Control Symp., and PDA Exhibition, pp. 211–218. Senior, 2003, Developing an IGS time scale, IEEE Trans. Ultrason. Ferroelectr. Freq. Control, 50, 585, 10.1109/TUFFC.2003.1209545 Wu, 2013, Advanced receiver autonomous integrity monitoring (ARAIM) schemes with GNSS time offsets, Adv. Space Res., 52, 52, 10.1016/j.asr.2013.03.002 Zhu, L., Zhang, H., Li, X., Xu, L., 2013. Monitoring and correction method of the system time offset of global navigation satellite system. In: The 4nd China Satellite Navigation Conference, Wuhan, China, pp. 319–325. Zumberge, 1997, Precise point positioning for the efficient and robust analysis of GPS data from large networks, J. Geophys. Res., 102, 5005, 10.1029/96JB03860