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Tytuł artykułu

Variation of static-PPP positioning accuracy using GPS-single frequency observations (Aswan, Egypt)

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Precise Point Positioning (PPP) is a technique used for position computation with a high accuracy using only one GNSS receiver. It depends on highly accurate satellite position and clock data rather than broadcast ephemeries. PPP precision varies based on positioning technique (static or kinematic), observations type (single or dual frequency) and the duration of collected observations. PPP-(dual frequency receivers) offers comparable accuracy to differential GPS. PPP- single frequency receivers has many applications such as infrastructure, hydrography and precision agriculture. PPP using low cost GPS singlefrequency receivers is an area of great interest for millions of users in developing countries such as Egypt. This research presents a study for the variability of single frequency static GPS-PPP precision based on different observation durations.
Słowa kluczowe
Rocznik
Strony
19--26
Opis fizyczny
Bibliogr. 23 poz., tab., wykr.
Twórcy
autor
  • College of Engineering, Aswan University, Egypt
Bibliografia
  • Abdel-salam M.(2005). “Precise Point Positioning Using Un-Differenced Code and Carrier Phase Observations”. Ph.D thesis, University of Calg ary, Canada.
  • Bakker, P. and Tiberius, C. (2016). “Real-time single-frequency precise point positioning for cars and trains “. Innovation column. GPS world magazine. January, 2016.
  • Bisnath, S.N., Beran, T., Langley, R. B. (2002). “Precise platform positioning with a single GPS receiver. “ GPS World, 13(4): 42-49.
  • Bisnath, S., Gao, Y. (2008).”Current State of Precise Point Positioning and Future Prospects and Limitations”. International Association of Geodesy Symposia, Vol. 133 pp. 615-623, 2008.
  • Chen, W., Hu, C., Gao, S., Chen, Y., Ding, X. (2009).” Error correction models and their effects on GPS precise point positioning”. Surv. Rev. 41(313): 238-252.
  • Choy, S. (2009).” An Investigation into the Accuracy of single frequency Precise Point Positioning (PPP)”. Ph.D. thesis. RMIT university, Australia.
  • Colombo, O .L., Sutter, A.W., Evans, A.G. (2004).”Evaluation of Precise, Kinematic GPS Point Positioning”. In: Proceedings of ION GNSS 17th International Technical Meeting of the Satellite Division, Long Beach, California, pp. 1423-1430.
  • CSRS-PPP (2017). Canadian Spatial Reference System (CSRS) Precise Point Positioning (PPP) service.
  • http://www.geod.nrcan.gc.ca/products-produits/ppp_e.php. Accessed (10/3/2017).
  • Gao, Y., Shen, X. (2001). “Improving convergence speed of carrier phase based Precise Point Positioning”. In: Proceedings of ION GNSS 13th International Technical Meeting of the Satellite Division, Salt Lake City, Utah, pp. 1532-1539.
  • Geng, J., Teferle, F.N., Meng, X., Dodson, A.H. (2010). “Kinematic precise point positioning at remote marine platforms”. GPS Solutions. 14(4): 343-350.
  • GPS-SPS (2008). GPS standard positioning service (SPS) specifications. http://www.gps.gov/technical/ ps/2008-SPS-performance-standard.pdf. Accessed (13/5/2017).
  • Huber, K. and Heuberger, F. (2010)."PPP: Precise Point Positioning - Constraints and Opportunities". FIG Congress 2010 (Facing the Challenges - Building the Capacity) Sydney, Australia, 1116 April 2010.
  • IGS (2017). International GNSS Service (IGS) products. http://igscb.jpl.nasa.gov/components/prods.html. Accessed (10/4/2017).
  • Kouba, J., Héroux, P. (2001). “Precise point positioning using IGS orbit and clock products”. GPS Solutions. 5(2): 12-28.
  • Marel, H. and Bakker, P. (2012).“GNSS Solutions: single versus dual frequency precise point positioning”. InsideGNSS magazine. July/August 2012.
  • Promark 3.0 Manual (2005): Promark 3.0 Receivers Reference Manual. Copyright Thales Navigation Company.
  • Rizos, C., Janssen, V., Roberts, C. and Grinter, T. (2012). "Precise point positioning: is the era of differential GNSS positioning drawing to an end?". FIG Working Week 2012. Rome, Italy, 6-10 May 2012.
  • Soycan, M., Ata, E. (2011). “Precise point positioning versus traditional solution for GNSS networks”. Sci. Res. Essays. 6(4): 799-808.
  • Soycan, M. (2012).” A Quality Evaluation of Precise Point Positioning within the Bernese GPS Software Version 5.0”. Arabian Journal for Science and Engineering. 37-1. Pages 147-162 Earth Sciences.
  • TEQC (2017). TEQC-UNAVCO tutorial. http://facility.unavco.org/software/teqc/doc/UNAVCO_Teqc_Tutorial.pdf. Accessed (5/4/2017).
  • Mireault, Y., Tétreault, P., Lahaye, F., Héroux, P., and Kouba, J. (2008).”Online Precise Point Positioning: A New, Timely Service from Natural Resources Canada”. GPS world magazine, September 2008.
  • Zumberge, J. F., Heflin, M. B., Jefferson, D. C., Watkins, M. M. and Webb, F. H. (1997).”Precise Point Processing for the Efficient and Robust Analysis of GPS Data from Large Networks”, J. Geophys. Res., 102(B3), 5005-5017.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-659f8785-87c3-4c0b-9838-cf90b275ba9f
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