UDC: 
DOI: 
10.22389/0016-7126-2019-954-12-42-55
1 Obidenko V.I.
Year: 
№: 
954
Pages: 
42-55

Siberian State University of Geosystems and Technologies

1, 
Abstract:
In the article the researches on developing modern methodology of supporting the national program “Digital economy of the Russian Federation” with geospatial data and, first of all, its base component, the systems of coordinate support are presented. As the main sentences of upgrading coordinate support it is offered to pass to kinematic model of evolution of coordinates in the state coordinate system GSK-2011 completely. The coordinates in this model are to be given to the consumer not on some separate instants (an initial epoch of installation of a coordinate system, an epoch of the last adjustment etc.), but for the current date, using a federal network of differential geodetic stations as the main tool for implementing this methodology. In order to avoid inconveniences of application the reference system for practical operations (as the coordinates are time-dependent), it is offered to use the additional coordinate system, “fixed” to an appropriate tectonic plate, spun round Euler’s pole within the state reference system GSK-2011.
References: 
1.   Antonovich K.M. Ispol'zovanie sputnikovyh radionavigacionnyh sistem v geodezii. M.: FGUP «Kartgeocentr», 2006, V 2-h tomah. Vol. 2, 359 p.
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.   Vdovin V. S., Dvorkin V. V., Karpik A. P., Lipatnikov L. A., Sorokin S. D., Steblov G. M. Problemy i perspektivy razvitiya aktivnykh sputnikovykh geodezicheskikh setei v Rossii i ikh integratsii v ITRF. Vestnik of SSUGT, 2018, Vol. 23, no. 1, pp. 6–27.
4.   Karpik A.P., Lisitsky D.V. (2019) Surveying industry: prospective development directions in the post-industrial era and the digital economy. Geodezia i Kartografia, 80(4), pp. 55-64. (In Russian). DOI: 10.22389/0016-7126-2019-946-4-55-64.
5.   Karpik A.P., Lamert D.A., Obidenko V.I. (2013) Realization of «Road map»: ways to rise quality of spatial description of objects of State cadastre of real estate. Geodezia i Kartografia, (12), pp. 45-49.
6.   Kluykov A.A. (2018) Determination of vector Euler parameters. Geodezia i Kartografia, 79(2), pp. 2-9 . (In Russian). DOI: 10.22389/0016-7126-2018-932-2-2-9.
7.   Vasil'ev I.V., Korobov A.V., Pobedinskij G.G. Strategicheskie napravleniya razvitiya topografo-geodezicheskogo i kartograficheskogo obespecheniya Rossijskoj Federacii. Vestn. SGUGiT, 2015, 2(30). pp. 5–23.
8.   Pobedinskii G. G. Sistemy koordinat i normativnoe regulirovanie sozdaniya i funktsionirovaniya sputnikovykh setei tochnogo pozitsionirovaniya. Geoprofi, 2016, no. 6, pp. 4–12.
9.   Popad'jov V. V., Efimov G. N., Zubinskij V. I. Geodezicheskaya sistema koordinat 2011 goda. Astronomiya, geodeziya i geofizika: Nauchno-tehnicheskij sbornik, Moskva: FGBU «Tsentr geodezii, kartografii i IPD», 2018, pp. 139–228.
10.   Poprygin V. A., Tret'yakov V. I. GSK-2011. Problema perekhoda. Geoprofi, 2018, no. 1, pp. 8–12.
11.   Surnin Yu.V. (2015) About the correct application of international terminology «Reference system» and «Reference frame» to the concepts of «Coordinate system» and «Coordinate frame» in Russian geodetic practice. Geodezia i Kartografia, (8), pp. 2-9. (In Russian). DOI: 10.22389/0016-7126-2015-902-8-2-9.
12.   Smith D., Roman D., Hilla S. NOAA Technical Report NOS NGS 62, Blueprint for 2022, 1: Geometric Coordinates 2017-04-21. URL: geodesy.noaa.gov/library (accessed: 18.07.2019).
Citation:
Obidenko V.I., 
(2019) The methodology of geodetic supporting Russian Federation digital economy. Geodesy and cartography = Geodezia i Kartografia, 80(12), pp. 42-55. (In Russian). DOI: 10.22389/0016-7126-2019-954-12-42-55
Publication History
Received: 02.09.2019
Accepted: 06.11.2019
Published: 31.12.2019

Content

2019 December DOI:
10.22389/0016-7126-2019-954-12