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The role of GPS permanent stations in realisation of geocentric reference frame

Identyfikatory
Warianty tytułu
Konferencja
Geodeticke Siete 2001 (International Seminar Geodetic Netowrks 2001; 29-31.10.2001; Podbanske, Slovakia)
Języki publikacji
EN
Abstrakty
EN
Determination of geocentric coordinates using the GPS permanent stations. Precision of precise point positioning as a function of baseline length, observation duration and uncertainty of instantaneous reference permanent station position. Design of permanent station network in Slovakia and the current situation.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
39--50
Opis fizyczny
Bibliogr. 12 poz., tab., wykr.
Twórcy
autor
autor
autor
  • Slovak University of Technology Bratislava
Bibliografia
  • [1] BOUCHER, C. -ALTAMIMI, Z. - SILLARD, P. (1997) The 1997 International Terrestrial Reference Frame (ITRF97). IERS Technical Note 27. Paris, Observatoire de Paris, 191pp.
  • [2] HEFIY, J. - KÁRTIKOVÁ, H. (2000) GPS permanent station network in central Europe and its importance for geodynamics research and realization of geocentric reference system. In: Proceedings of Conference at 50th Anniversary of Institute of Geodesy and Cartography, Bratislava, GKÚ, pp. 65 - 75 (in Slovak).
  • [3] HEFIY, J. (2001a) The permanent Modra-Piesok GPS station and its long-term and short­ term stability. Journal of civil engineering, 1-2, Vol. IX. pp. 31-37.
  • [4] HEFIY, J. (2001b) Possibilities of improving the velocity estimates from CERGOP campaigns. Presented at XXVI GA ofEGS, Symposium G9, Nice 2001. Reports on Geodesy 2 (57), pp. 71-81.
  • [5] HEFIY, J. et al. (2001c) Precision of geocentric coordinates determination using GPS permanent stations. In: Geodesy, photogrametry and surveying in information society. Proceedings from International scientific conference at 50th anniversary of Department of Geodesy foundation, Faculty of Civil Engineering, STU. Bratislava, STU, pp. 263-272 (in Slovak).
  • [6] HEFIY, J. et al. (2001d) Proposal of GPS permanent stations constellation in Slovak Republic for effective geocentric coordinates determination of State Spatial Network points. Report from solution of scientific-technical project "Development of information technologies in the field of geodesy, cartography and cadastre", partial task "Development of integrated geodetic control in Slovakia", Bratislava (in Slovak).
  • [7] HUGENTOBLER, U. - SCHAER, S. - FRIDEZ, P. (2001) (eds.) Bernese GPS Software Version 4.2, Berne, Astronomical Institute of Berne, 515 pp.
  • [8] HOFMANN-WELLENHOF, B. - LICHTENNEGER, IL - COLLINS, J. (2001) Global Positioning System, Theory and Practice. Wien, New York, Springer-Verlag. 382 pp.
  • [9] KUBÁČEK, L. - KUBÁČKOVÁ, L. (2000) Statistics and Metrology. Olomouc, Palacký University in Olomouc, pp. 308 (in Czeeh).
  • [10] LEICK, A. (1995) GPS satellite surveying. New York, Chicester, Toronto, Brisbane, Singapore, John Wiley & Sons Inc, 560 pp.
  • [11] LEITMANOVÁ, K. (2000) State spatial network 1999. In: Proceeding of Conference at 50th anniversary of Institute of Geodesy and Cartography, Bratislava, GKU, pp. 123 - 136 (in Slovak).
  • [12] ROGOWSKI, J. - HEFTY, J. (1998) Final report of the CERGOP study Group CSG-3 “CERGOP reference frame". Reports on Geodesy 10(40), pp. 169-194.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-PWA2-0033-0004
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