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Bogusz, Janusz; Rebischung, Paul, 2025, "Horizontal and vertical GNSS displacements as processed by IGS and NGL with series of loadings", https://doi.org/10.18150/HBF8HG, RepOD, V1
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[ENG:]
The files contain research data for the article: Bogusz J., Rebischung P., Klos A. (2025). Impact of alignment strategy to the reference frame on the 3D annual station motions from different GNSS solutions. Journal of Geodesy (2025) 99:93, doi:10.1007/s00190-025-02009-6.
We have included time series of horizontal and vertical displacements of Global Positioning System (GPS) stations in the files:
displacements observed by GPS and processed by IGS, displacements observed by GPS and processed by NGL, and displacements predicted by environmental loading models for GPS locations.
This is the result of the National Science Center (NCN) project, Poland, Grant UMO-2021/41/B/ST10/01458.
[PL:]
Pliki zawierają dane badawcze dotyczące artykułu: Bogusz J., Rebischung P., Klos A. (2025). Wpływ strategii dopasowania do układu odniesienia na roczne przemieszczenia stacji 3D z różnych rozwiązań GNSS. Journal of Geodesy (2025) 99:93, doi:10.1007/s00190-025-02009-6.
W plikach zamieściliśmy szeregi czasowe przemieszczeń poziomych i pionowych stacji Globalnego Systemu Pozycjonowania (GPS):
przemieszczenia obserwowane przez GPS i opracowane w IGS, przemieszczenia obserwowane przez GPS i opracowane w NGL oraz przemieszczenia przewidywane przez modele obciążenia środowiskowego dla lokalizacji stacji GPS.
Jest to wynik realizacji projektu Narodowego Centrum Nauki (NCN) w Polsce, grant UMO-2021/41/B/ST10/01458.
GNSS, annual station motions, terrestrial reference frame, network effect, IGS, NGL, roczne ruchy stacji, efekt sieciowy, Międzynarodowy Ziemski Układ Odniesienia
Bogusz J., Rebischung P., Klos A. (2025). Impact of alignment strategy to the reference frame on the 3D annual station motions from different GNSS solutions. Journal of Geodesy (2025) 99:93 https://doi.org/10.1007/s00190-025-02009-6 doi: 10.1007/s00190-025-02009-6
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