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Please use this identifier to cite or link to this item: https://oldena.lpnu.ua/handle/ntb/40539
Title: Toward geodynamic studies and GNSS CORS measurements: West Ukrainian GNSS network data processing using Bernese v5.2 software
Authors: Golubinka, Iurii
Kramarenko, Sergiy
Lompas, Oleksandr
Marchenko, Dmytro
Affiliation: Lviv Polytechnic National University
Bibliographic description (Ukraine): Toward geodynamic studies and GNSS CORS measurements: West Ukrainian GNSS network data processing using Bernese v5.2 software / Iurii Golubinka, Sergiy Kramarenko, Oleksandr Lompas, Dmytro Marchenko // Litteris et Artibus : proceedings, 23–25 November, 2017. — Lviv : Lviv Polytechnic Publishing House, 2017. — P. 198–201. — (8th International academic conference «Geodesy, architecture & construction 2017» (GAC-2017)).
Bibliographic description (International): Toward geodynamic studies and GNSS CORS measurements: West Ukrainian GNSS network data processing using Bernese v5.2 software / Iurii Golubinka, Sergiy Kramarenko, Oleksandr Lompas, Dmytro Marchenko // Litteris et Artibus : proceedings, 23–25 November, 2017. — Lviv : Lviv Polytechnic Publishing House, 2017. — P. 198–201. — (8th International academic conference «Geodesy, architecture & construction 2017» (GAC-2017)).
Is part of: Litteris et Artibus : матеріали, 2017
Litteris et Artibus : proceedings, 2017
Conference/Event: 7th International youth science forum «Litteris et Artibus»
Journal/Collection: Litteris et Artibus : матеріали
Issue Date: 23-Dec-2017
Publisher: Видавництво Львівської політехніки
Lviv Polytechnic Publishing House
Place of the edition/event: Львів
Lviv
Temporal Coverage: 23–25 листопада 2017 року
23–25 November, 2017
Keywords: satellite geodesy
GNSS
GPS
CORS
velocity vector
time series
plate tectonic
Bernese GNSS software v5.2
Number of pages: 4
Page range: 198-201
Start page: 198
End page: 201
Abstract: Presented study is organized to enhance the services provided by number of GNSS stations in Western Ukrainian region, which are mainly a network of Continuously Operated Reference Stations (CORS) established in different years by different institutions, and improve the efficiency of the GNSS data usage. The main objective of the study is to compute CORS velocities, using available three years’ data, establish an automated procedure of further data computation. The interpretation of the velocities together with geological data for the region and estimation of the crustal movement as well as extension of the studied region to all Ukrainian area
URI: https://ena.lpnu.ua/handle/ntb/40539
ISBN: 978-966-941-108-2
Copyright owner: © Національний університет “Львівська політехніка”, 2017
References (Ukraine): [1] Argus D.F, Gordon G.R., "No-Net-Rotation Model of Current Plate Velocities Incorporating Plate Motion Model Nuvel-1," Geophysical Research Letters, 18, 2038–2042, 1991.
[2] Beutler G., Bauersıma I., Gurtner, W., Rothacher M., Schildknecht T., Geiger A., "Atmospheric refraction and other important biases in GPS carrier phase observations, in Atmospheric Effects on Geodetic Space Measurements," Kensington, Australia.: School of Surveying, University of New South Wales, 1988
[3] Dach R., Hugentobler U., Fridez P., Meindl, M., "Bernese GPS Software version 5.0," Berne: Astronomical Institute, University of Berne, 2007
[4] DeMets C., Gordon R.G., Argus D.F., Stein S., "Effect of recent revisions to the geomagnetic reversal time scale on estimates of current plate motions," Geophysical Research Letters, 21(20),2191–2194,1994
[5] McCarthy, D.D.; Petit, G., "IERS Conventions (2010)," IERS Technical Note 36. Franfkurt am Main: Bundesamt fur Kartographie und Geodasie,2010
[6] Newhall X., "Numerical Representation of Planetary Ephemerides," Cel Mech, 45, 305-310, 1989
[7] Rothacher M., Springer T., Schaer S., Beutler G., "Processing Strategies for Regional GPS Networks," Proceedings of the IAG General Assembly. Rio De Janeiro: Springer, 1997
[8] Saastamoinen, I. I., "Contribution to the theory of atmospheric refraction," Bulletin. Bulletin Geodesique, 13-34, 1973
[9] Schaer S., "Mapping and Predicting the Earth’s Ionosphere Using the Global Positioning System," Vol. 59 of Geodatisch-geophysikalische Arbeiten in der Schweiz, 1999.
References (International): [1] Argus D.F, Gordon G.R., "No-Net-Rotation Model of Current Plate Velocities Incorporating Plate Motion Model Nuvel-1," Geophysical Research Letters, 18, 2038–2042, 1991.
[2] Beutler G., Bauersıma I., Gurtner, W., Rothacher M., Schildknecht T., Geiger A., "Atmospheric refraction and other important biases in GPS carrier phase observations, in Atmospheric Effects on Geodetic Space Measurements," Kensington, Australia., School of Surveying, University of New South Wales, 1988
[3] Dach R., Hugentobler U., Fridez P., Meindl, M., "Bernese GPS Software version 5.0," Berne: Astronomical Institute, University of Berne, 2007
[4] DeMets C., Gordon R.G., Argus D.F., Stein S., "Effect of recent revisions to the geomagnetic reversal time scale on estimates of current plate motions," Geophysical Research Letters, 21(20),2191–2194,1994
[5] McCarthy, D.D.; Petit, G., "IERS Conventions (2010)," IERS Technical Note 36. Franfkurt am Main: Bundesamt fur Kartographie und Geodasie,2010
[6] Newhall X., "Numerical Representation of Planetary Ephemerides," Cel Mech, 45, 305-310, 1989
[7] Rothacher M., Springer T., Schaer S., Beutler G., "Processing Strategies for Regional GPS Networks," Proceedings of the IAG General Assembly. Rio De Janeiro: Springer, 1997
[8] Saastamoinen, I. I., "Contribution to the theory of atmospheric refraction," Bulletin. Bulletin Geodesique, 13-34, 1973
[9] Schaer S., "Mapping and Predicting the Earth’s Ionosphere Using the Global Positioning System," Vol. 59 of Geodatisch-geophysikalische Arbeiten in der Schweiz, 1999.
Content type: Conference Abstract
Appears in Collections:Litteris et Artibus. – 2017 р.

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