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Validation and comparison of several global geopotential models with an official quasigeoid solution of Serbia

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2022
Authors
Stanković, Marko
Odalović, Oleg
Marković, Miloš
Article (Published version)
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Abstract
This study aims to analyze the quality of several local reference quasigeoid surfaces obtained from several Global Geopotential Models (GGM) relative to the official quasigeoid solution of Serbia (SQM2011) and GNSS/dh observations for the territory of Serbia. Therefore, validation and comparison of the derived surfaces from the three GGM’s were made based on comparisons of height anomaly derived from GGM’s, SQM2011, and the GNSS/dh observations at the points of the high-precision leveling network. The selected publicly available GGM’s in this study are GOCO05c, SGGUGM-2, and XGM2019e. Primarily, at 1001 points of the high-precision leveling network, the differences between GGM and GNSS/dh height anomaly were calculated. The final translation parameters were calculated in the iteration procedure, which was then used to calculate the final values of the estimated height anomaly for all GGM’s at 143207 points of the regular grid of spatial resolution 0.5' × 0.5' on the ent...ire territory of Serbia. From the estimated height anomaly, three GGM-derived surfaces were modeled relative to the SQM2011. According to the results of the calculations, SGG-UGM-2 provides the best approximation of the quasigeoid SQM2011, where the remaining differences have a mean value of 0.01 m, a standard deviation of 0.06 m, and a span of 0.67 m

Keywords:
globalni geopotencialni model / anomalije višin / kvazigeoid / gravitacija / GNSS/dh
Source:
Geodetski vestnik, 2022, 66
Publisher:
  • Association of Surveyors of Slovenia

DOI: 10.15292/geodetski-vestnik.2022.03.432-448

ISSN: 0351-0271

[ Google Scholar ]
URI
https://grafar.grf.bg.ac.rs/handle/123456789/2718
Collections
  • Radovi istraživača / Researcher's publications
  • Катедра за геодезију и геоинформатику
Institution/Community
GraFar
TY  - JOUR
AU  - Stanković, Marko
AU  - Odalović, Oleg
AU  - Marković, Miloš
PY  - 2022
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2718
AB  - This study aims to analyze the quality of several local reference
quasigeoid surfaces obtained from several Global Geopotential
Models (GGM) relative to the official quasigeoid solution
of Serbia (SQM2011) and GNSS/dh observations for the
territory of Serbia. Therefore, validation and comparison of
the derived surfaces from the three GGM’s were made based
on comparisons of height anomaly derived from GGM’s,
SQM2011, and the GNSS/dh observations at the points
of the high-precision leveling network. The selected publicly
available GGM’s in this study are GOCO05c, SGGUGM-2, and XGM2019e. Primarily, at 1001 points of
the high-precision leveling network, the differences between
GGM and GNSS/dh height anomaly were calculated. The
final translation parameters were calculated in the iteration
procedure, which was then used to calculate the final values
of the estimated height anomaly for all GGM’s at 143207
points of the regular grid of spatial resolution 0.5' × 0.5'
on the entire territory of Serbia. From the estimated height
anomaly, three GGM-derived surfaces were modeled relative
to the SQM2011. According to the results of the calculations,
SGG-UGM-2 provides the best approximation of the quasigeoid SQM2011, where the remaining differences have a
mean value of 0.01 m, a standard deviation of 0.06 m, and
a span of 0.67 m
PB  - Association of Surveyors of Slovenia
T2  - Geodetski vestnik
T1  - Validation and comparison of several global geopotential models with an official quasigeoid solution of Serbia
VL  - 66
DO  - 10.15292/geodetski-vestnik.2022.03.432-448
ER  - 
@article{
author = "Stanković, Marko and Odalović, Oleg and Marković, Miloš",
year = "2022",
abstract = "This study aims to analyze the quality of several local reference
quasigeoid surfaces obtained from several Global Geopotential
Models (GGM) relative to the official quasigeoid solution
of Serbia (SQM2011) and GNSS/dh observations for the
territory of Serbia. Therefore, validation and comparison of
the derived surfaces from the three GGM’s were made based
on comparisons of height anomaly derived from GGM’s,
SQM2011, and the GNSS/dh observations at the points
of the high-precision leveling network. The selected publicly
available GGM’s in this study are GOCO05c, SGGUGM-2, and XGM2019e. Primarily, at 1001 points of
the high-precision leveling network, the differences between
GGM and GNSS/dh height anomaly were calculated. The
final translation parameters were calculated in the iteration
procedure, which was then used to calculate the final values
of the estimated height anomaly for all GGM’s at 143207
points of the regular grid of spatial resolution 0.5' × 0.5'
on the entire territory of Serbia. From the estimated height
anomaly, three GGM-derived surfaces were modeled relative
to the SQM2011. According to the results of the calculations,
SGG-UGM-2 provides the best approximation of the quasigeoid SQM2011, where the remaining differences have a
mean value of 0.01 m, a standard deviation of 0.06 m, and
a span of 0.67 m",
publisher = "Association of Surveyors of Slovenia",
journal = "Geodetski vestnik",
title = "Validation and comparison of several global geopotential models with an official quasigeoid solution of Serbia",
volume = "66",
doi = "10.15292/geodetski-vestnik.2022.03.432-448"
}
Stanković, M., Odalović, O.,& Marković, M.. (2022). Validation and comparison of several global geopotential models with an official quasigeoid solution of Serbia. in Geodetski vestnik
Association of Surveyors of Slovenia., 66.
https://doi.org/10.15292/geodetski-vestnik.2022.03.432-448
Stanković M, Odalović O, Marković M. Validation and comparison of several global geopotential models with an official quasigeoid solution of Serbia. in Geodetski vestnik. 2022;66.
doi:10.15292/geodetski-vestnik.2022.03.432-448 .
Stanković, Marko, Odalović, Oleg, Marković, Miloš, "Validation and comparison of several global geopotential models with an official quasigeoid solution of Serbia" in Geodetski vestnik, 66 (2022),
https://doi.org/10.15292/geodetski-vestnik.2022.03.432-448 . .

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