UDC: 
DOI: 
10.22389/0016-7126-2025-1021-7-2-11
1 Evstafiev O.V.
Year: 
№: 
1021
Pages: 
2-11

Roskadastr, PLC

1, 
Abstract:
The author considers transforming geocentric spatial coordinates obtained with the Precise Point Positioning method of satellite determinations into State Geodetic System of 2011 (GSK-2011) during geodetic works and large-scale surveys in order to develop an appropriate methodology. One is described for transforming coordinates obtained using the said technique which includes bringing coordinates from the epoch of satellite observations to that of 2011.0 with the help of data on the velocities of tectonic plate moving and conversion by transforming the parameters between GSK-2011 and the coordinate system in which the ephemerides of navigation satellites are specified. The results of testing this method obtained through PPP one are presented. The considered way of transforming data is recommended for making large-scale topographic surveys, in particular, to create digital orthophoto plans at the scale of 1:2000, as well as for solving other geodetic problems
References: 
1.   Aleev D. A., Kolomiets A. G. Sravnitel’nyi analiz metoda tochnogo tochechnogo pozitsionirovaniya (PPP) i perspektivy ego primeneniya v kadastrovykh rabotakh. Vestnik nauki i obrazovaniya, 2018, Vol. 2, no. 7 (43), pp. 99–103.
2.   Bovshin N.A. (2019) High-precision GNSS-positioning in GSK-2011 reference frame. Geodezia i Kartografia, 80(2), pp. 2-14. (In Russian). DOI: 10.22389/0016-7126-2019-944-2-2-14.
3.   Bovshin N.A. (2019) On perfecting the employment of GSK-2011 reference frame in the Far East territory. Geodezia i Kartografia, 80(9), pp. 2-9. (In Russian). DOI: 10.22389/0016-7126-2019-951-9-2-9.
4.   Dvorkin V. V., Karutin S. N. Vysokotochnye navigatsionnye opredeleniya po signalam GNSS. Vestnik SibGAU, 2013, Vol. 6, no. 52, pp. 70–75.
5.   Lipatnikov L.A. (2025) Web service for coordinate operations. Geodezia i Kartografia, 86(3), pp. 2-12. (In Russian). DOI: 10.22389/0016-7126-2025-1017-3-2-12.
6.   Mel'nik G. E., Oshchepkov I. A. O tochnosti opredeleniya skorostei dvizheniya geodezicheskikh punktov. Trudy IPA RAN, 2024, no. 69, pp. 26–38. DOI: 10.32876/ApplAstron.69.26-38.
7.   Tereshchenko V. E., Radchenko A. V., Melkii V. A. Global'naya sistema otscheta i ee lokal'naya realizatsiya – Gosudarstvennaya sistema koordinat 2011 goda. Vestnik SSUGT, 2020, Vol. 25, no. 3, pp. 89–106. DOI: 10.33764/2411-1759-2020-25-3-89-106.
8.   Shevchuk S. O., Melesk A. Kh., Kosarev N. S. Issledovaniya tochnosti metoda RRR dlya navigatsionno-geodezicheskogo obespecheniya geofizicheskikh rabot. Geoprofi, 2016, no. 3, pp. 10–15.
9.   Argus D. F., Gordon R. G., DeMets C. (2011) Geologically current motion of 56 plates relative to the no-net-rotation reference frame. Geochemistry, Geophysics, Geosystems, no. 12 (11), pp. 1–13. DOI: 10.1029/2011GC003751.
10.   Kouba J., Heroux Р. (2001) Precise point positioning using IGS orbit and clock products. GPS Solutions, Volume 5, no. 2, pp. 12–28. DOI: 10.1007/PL00012883.
11.   Zumberge J.F., Heflin M.B., Jefferson D.C., Watkins M.M., Webb F.H. (1997) Precise point positioning for the efficient and robust analysis of GPS data from large networks. Journal of Geophysical Research, Volume 102, no. B3, pp. 5005–5017. DOI: 10.1029/96JB03860.
Citation:
Evstafiev O.V., 
(2025) The method of transforming coordinates into GSK-2011 performing Precise Point Positioning during large-scale surveys. Geodesy and cartography = Geodeziya i Kartografiya, 86(7), pp. 2-11. (In Russian). DOI: 10.22389/0016-7126-2025-1021-7-2-11
Publication History
Received: 15.03.2025
Accepted: 30.06.2025
Published: 20.08.2025

Content

2025 July DOI:
10.22389/0016-7126-2025-1021-7