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Analysis of GNSS Data Using Precise Point Positioning Technique for the Determination of Permanent Station in Romania


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[1]. King M., Edwards S., and Clarke P. (2002). Precise point positioning: Breaking the monopoly of relative GPS processing. Eng. Surv. Showc., pp. 40-41.Search in Google Scholar

[2]. Wabbena G., Schmitz M., and Bagge A.(2005). PPP-RTK: Precise Point Positioning Using State-Space Representation in RTK Networks, in Proceedings of the 18th International Technical Meeting of the Satellite Division of The Institute of Navigation (ION GNSS 2005), pp. 2584-2594.Search in Google Scholar

[3]. Leandro R.F., Santos M. C., and Langley R. B. (2010). Analyzing GNSS data in precise point positioning software, GPS Solut., vol. 15, no. 1, pp. 1-13.Search in Google Scholar

[4]. Rizos C. (2008). The Research Challenges of IAG Commission 4 ‘Positioning & Applications, in VI Hotine- Marussi Symposium on Theoretical and Computational Geodesy SE - 19, vol. 132, P. Xu, J. Liu, and A. Dermanis, Eds. Springer Berlin Heidelberg, pp. 126-132.Search in Google Scholar

[5]. Blewitt G. (1989). Carrier phase ambiguity resolution for the Global Positioning System applied to geodetic baselines up to 2000 km, J. Geophys. Res. Solid Earth, vol. 94, no. B8, pp. 10187-10203.10.1029/JB094iB08p10187Search in Google Scholar

[6]. Xu P., Shi C., Fang R., Liu J., Niu X., Zhang Q. and Yanagidani T.(2012). High-rate precise point positioning (PPP) to measure seismic wave motions: an experimental comparison of GPS PPP with inertial measurement units,J. Geod., vol. 87, no. 4, pp. 361-372.Search in Google Scholar

[7]. Héroux P. and Kouba J. (2001). GPS precise point positioning using IGS orbit products, Phys. Chem. Earth, Part A Solid Earth Geod., vol. 26, no. 6, pp. 573-578.10.1016/S1464-1895(01)00103-XSearch in Google Scholar

[8]. Nistor S. and Buda A. S. (2015). Ambiguity resolution in precise point positioning technique: a case study, J. Appl. Eng. Sci.10.1515/jaes-2015-0007Search in Google Scholar

[9]. Ge M., Gendt G., Rothacher M., Shi C., and Liu J.(2007). Resolution of GPS carrier-phase ambiguities in Precise Point Positioning (PPP) with daily observations, J. Geod., vol. 82, no. 7, pp. 389-399.Search in Google Scholar

[10]. Schaer S. and Steigenberger P. (2006). Determination and use of GPS differential code bias values, in IGS Workshop, pp. 8-11.Search in Google Scholar

[11]. El-Rabbany A.(2002), Precise GPS point positioning: the future alternative to differential GPS surveying, Dept. Civ. Eng. (Geomatics Option), Ryerson Univ.Search in Google Scholar

[12]. Zumberge J.P., Heflin M. B., Jefferson D. C., Watkins M. M., and Webb F. H. (1997). Precise point positioning for the efficient and robust analysis of GPS data from large networks, J. Geophys. Res., vol. 102, no. B3, p. 5005.10.1029/96JB03860Search in Google Scholar

[13]. Geng J., Meng X., Dodson A. H., and Teferle F. N. (2010). Integer ambiguity resolution in precise point positioning: method comparison, J. Geod., vol. 84, no. 9, pp. 569-581.10.1007/s00190-010-0399-xSearch in Google Scholar

[14]. Teunissen P. G. (1998). GPS Carrier Phase Ambiguity Fixing Concepts, in GPS for Geodesy SE - 8, Teunissen P. G. and Kleusberg A., Eds. Springer Berlin Heidelberg, pp. 319-388.Search in Google Scholar

[15]. Boehm J., Werl B., and Schuh H.(2006). Troposphere mapping functions for GPS and very long baseline interferometry from European Centre for Medium-Range Weather Forecasts operational analysis data, J. Geophys. Res., vol. 111, no. B2, p. B02406.10.1029/2005JB003629Search in Google Scholar

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