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Evaluation of Positioning Functionality in ASG EUPOS for Hydrography and Off-Shore Navigation

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EN
Abstrakty
EN
The paper discusses the ASG EUPOS services. There is presented an assessment of the possibility of using this system selected sites in hydrography and off-shore navigation tasks. Presented and analyzed the experiments were carried out in the port of Gdynia and on the Gulf of Gda?sk. The results obtaining in the work confirm the possibility of the position accuracy guaranteed by ASG EUPOS services. The obtained accuracy greatly exceeds the needs and requirements of coastal navigation and underwater mining and exploration of sea bottom.
Twórcy
autor
  • Gdynia Maritime University, Gdynia, Poland
autor
  • Gdynia Maritime University, Gdynia, Poland
autor
  • Gdynia Maritime University, Gdynia, Poland
  • Institute of Meteorology and Water Management, Warsaw, Poland
Bibliografia
  • [1] Baran W., New National System of Geodetic Coordinates in Poland, Geodezja i Kartografia 1994, t. XLIII, z. 1, s. 41‐49.
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  • [3] Baran L. W., Oszczak S., Zieliński J. B., Wykorzystanie technik kosmicznych w geodezji i nawigacji w Polsce, Nauka 2008, nr 4, s 43‐63 (in Polish).
  • [4] Bosy J., Graszka W., Leonczyk M., ASG‐EUPOS The Polish Contribution to The EUPOS Project, Symposium on Global Navigation Satellite Systems, Berlin, 11‐14 November 2008.
  • [5] Bosy J., Graszka W., Leonczyk M.: ASG‐EUPOS ‐ a Multifunctional Precise Satellite Positioning System in Poland. TransNav, the International Journal on Marine Navigation and Safety of Sea Transportation, Vol. 1, No. 4, pp. 371‐374, 2007
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  • [7] Dawidowicz K., Krzan G.: Accuracy of single receiver static GNSS measurements under conditions of limited satellite availability. Survey Review, Volume 46, Issue 337 (July 2014), pp. 278‐287.
  • [8] Dziewicki M., Felski A., Specht C., Availability of DGPS Reference Station Signals on South Baltic, Proceedings of the 2nd European Symposium on Global Navigation Satellite Systems – GNSS’98, Toulouse, France, 1998.
  • [9] Gocał J., Strach M., RTK w zastosowaniach inżynierskich – odbiorniki GPS na torach, Geodeta ‐ magazyn geoinformacyjny, nr 5, 2004.
  • [10] IHO S‐44. IHO Standards for Hydrographic Surveys, 5th Edition. International Hydrographic Organization, Monaco February 2008
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  • [14] RTCM Recommended Standards for Differential GNSS (Global Navigation Satellite Systems) Service, Version 3.0, RTCM Paper 30‐2004/SC104‐STD, 2004.
  • [15] RTCM Recommended Standards for Network Transport of RTCM via Internet Protocol (NTRIP), Version 1.0, RTCM Paper 200‐2004/SC104‐STD, 2004.
  • [16] Specht C., Koc W., Application of the Polish Active GNSS Geodetic Network for Surveing and Design of the Railroad, 1st International Conference on Road and Rail Transport CETRA 2010, Opatija, Croatia, 17–18 May 2010, pp. 757‐762.
  • [17] Weintrit, A., The Electronic Chart Display and Information System (ECDIS). An Operational Handbook. A Balkema Book. CRC Press, Taylor & Francis Group, Boca Raton – London ‐ New York ‐ Leiden, 2009.
  • [18] Weintrit, A., Six in One or One in Six Variants. Electronic Navigational Charts for Open Sea, Coastal, Off‐Shore, Harbour, Sea‐River and Inland Navigation. TransNav, the International Journal on Marine Navigation and Safety of Sea Transportation, Vol. 4, No. 2, 2010.
  • [19] Weintrit A., Specht C.: Wybrane aspekty metrologiczne w nawigacji morskiej. Rozdział 5 [w:] red. A. Michalski: Wybrane aspekty mobilnych systemów pomiarowych. Wojskowa Akademia Techniczna, Warszawa 2014 (in Polish).
  • [20] Wiśniewski B., Bruniecki K., Moszyński M.: Evaluation of RTKLIBʹs Positioning Accuracy Using low‐cost GNSS Receiver and ASG‐EUPOS. TransNav, the International Journal on Marine Navigation and Safety of Sea Transportation, Vol. 7, No. 1, pp. 79‐85, 2013
  • [21] http://www.asgeupos.pl/index.php?wpg_type=syst_descr
  • [22] http://zasieg.orange.pl/?_ticrsn=5&ticaid=6145f8.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-728541d7-8804-4485-90b7-70a0f91f643b
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