Odalović, Oleg

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orcid::0000-0001-6004-824X
  • Odalović, Oleg (51)
  • Odalović, Oleg R. (1)
  • Одаловић, Олег (1)
Projects

Author's Bibliography

A compliance assessment of GNSS station networks in Serbia

Odalović, Oleg; Petković, Dušan; Grekulović, Sanja; Todorović Drakul, Miljana

(Geographical Institute “Jovan Cvijić” of the Serbian Academy of Sciences and Arts (SASA), 9 Djure Jakšića St., Belgrade 11000, Serbia, 2024)

TY  - JOUR
AU  - Odalović, Oleg
AU  - Petković, Dušan
AU  - Grekulović, Sanja
AU  - Todorović Drakul, Miljana
PY  - 2024
UR  - https://ojs.gi.sanu.ac.rs/index.php/zbornik/article/view/782
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/3502
AB  - Since the early 21st century, Global Positioning System (GPS) technology has dominated geodetic reference networks. Almost all countries established a permanent Global Navigation Satellite System (GNSS) station network to augment all available GNSS systems. By the end of 2005, Serbia completed the Active Geodetic Reference Network as a particular project of Serbia's Republic Geodetic Authority (RGA). Besides RGA, two private companies, Vekom and Geotaur, have established permanent station networks. This paper assesses the compliance of all the three networks, and network results are evaluated against the spatial distance determined by classical geodetic methods. When all available GNSS constellations are utilized, NAVSTAR, GLONASS, BEIDOU, and GALILEO, in the processing procedure, the established networks in Serbia align within a margin of about 3 mm across all coordinate axes. The results obtained within the research indicate that by using GNSS networks, it is possible to provide the coordinates of the points for the establishment of the national spatial reference system of Serbia, the reference system in almost all engineering fields, reference systems for the maintenance works of the real estate cadastre, and it is also possible to provide coordinates of points that can be used to define local, national, and world reference heights surfaces.
PB  - Geographical Institute “Jovan Cvijić” of the Serbian Academy of Sciences and Arts (SASA), 9 Djure Jakšića St., Belgrade 11000, Serbia
T2  - Journal of the Geographical Institute “Jovan Cvijić” SASA
T1  - A compliance assessment of GNSS station networks in Serbia
EP  - 61
IS  - 1
SP  - 47
VL  - 74
DO  - 10.2298/IJGI2401047O
ER  - 
@article{
author = "Odalović, Oleg and Petković, Dušan and Grekulović, Sanja and Todorović Drakul, Miljana",
year = "2024",
abstract = "Since the early 21st century, Global Positioning System (GPS) technology has dominated geodetic reference networks. Almost all countries established a permanent Global Navigation Satellite System (GNSS) station network to augment all available GNSS systems. By the end of 2005, Serbia completed the Active Geodetic Reference Network as a particular project of Serbia's Republic Geodetic Authority (RGA). Besides RGA, two private companies, Vekom and Geotaur, have established permanent station networks. This paper assesses the compliance of all the three networks, and network results are evaluated against the spatial distance determined by classical geodetic methods. When all available GNSS constellations are utilized, NAVSTAR, GLONASS, BEIDOU, and GALILEO, in the processing procedure, the established networks in Serbia align within a margin of about 3 mm across all coordinate axes. The results obtained within the research indicate that by using GNSS networks, it is possible to provide the coordinates of the points for the establishment of the national spatial reference system of Serbia, the reference system in almost all engineering fields, reference systems for the maintenance works of the real estate cadastre, and it is also possible to provide coordinates of points that can be used to define local, national, and world reference heights surfaces.",
publisher = "Geographical Institute “Jovan Cvijić” of the Serbian Academy of Sciences and Arts (SASA), 9 Djure Jakšića St., Belgrade 11000, Serbia",
journal = "Journal of the Geographical Institute “Jovan Cvijić” SASA",
title = "A compliance assessment of GNSS station networks in Serbia",
pages = "61-47",
number = "1",
volume = "74",
doi = "10.2298/IJGI2401047O"
}
Odalović, O., Petković, D., Grekulović, S.,& Todorović Drakul, M.. (2024). A compliance assessment of GNSS station networks in Serbia. in Journal of the Geographical Institute “Jovan Cvijić” SASA
Geographical Institute “Jovan Cvijić” of the Serbian Academy of Sciences and Arts (SASA), 9 Djure Jakšića St., Belgrade 11000, Serbia., 74(1), 47-61.
https://doi.org/10.2298/IJGI2401047O
Odalović O, Petković D, Grekulović S, Todorović Drakul M. A compliance assessment of GNSS station networks in Serbia. in Journal of the Geographical Institute “Jovan Cvijić” SASA. 2024;74(1):47-61.
doi:10.2298/IJGI2401047O .
Odalović, Oleg, Petković, Dušan, Grekulović, Sanja, Todorović Drakul, Miljana, "A compliance assessment of GNSS station networks in Serbia" in Journal of the Geographical Institute “Jovan Cvijić” SASA, 74, no. 1 (2024):47-61,
https://doi.org/10.2298/IJGI2401047O . .

Determination of ionospheric models using global navigational satellite systems and Bernese GNSS software

Petković, Dušan; Grekulović, Sanja; Todorović Drakul, Miljana; Odalović, Oleg

(Faculty of Civil Engineering, University of Belgrade, 2023)

TY  - CONF
AU  - Petković, Dušan
AU  - Grekulović, Sanja
AU  - Todorović Drakul, Miljana
AU  - Odalović, Oleg
PY  - 2023
UR  - https://geoscira.wixsite.com/2023
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/3240
AB  - Since the last few decades of the 20th and the beginning of civilian application of NAVigation Satellite Timing And Ranging Global Positioning System (NAVSTAR GPS) established by the United States Department of Defense, satellite positioning is the most widespread technology for position determination on any place in the Earth's surface (Hofmann-Wellenhof et al., 2008). Besides positioning, a Global Navigation Satellite Systems (GNSS; a common name for all operational navigation systems worldwide) technology is used for other research applications such as atmospheric parameter estimation, i.e., ionospheric determination (Seeber et al., 2003). This paper presents the possibility of the GNSS technology as a tool for determining ionospheric models by the Bernese GNSS Software (Dach et al., 2015). Bernese supports three types of models to represent the ionosphere: local models based on Taylor series expansions, and station-specific and global (or regional) models based on spherical harmonic expansions (Schaer, 1999). Mentioned Ionospheric models (also called Ionospheric maps) can be produced in Bernese ION format or as a common data-exchange IONosphere EXchange (IONEX) format (Schaer et al., 1998). Based on these formats, it is possible to determine the quantity that characterizes the current state of the ionosphere, the so-called Total Electron Content (TEC).
PB  - Faculty of Civil Engineering, University of Belgrade
PB  - Institute of Physics Belgrade, University of Belgrade
C3  - International Conference on Recent Trends in Geoscience Research and Applications, Belgrade, October 23–27, 2023
T1  - Determination of ionospheric models using global navigational satellite systems and Bernese GNSS software
SP  - 90
UR  - https://hdl.handle.net/21.15107/rcub_grafar_3240
ER  - 
@conference{
author = "Petković, Dušan and Grekulović, Sanja and Todorović Drakul, Miljana and Odalović, Oleg",
year = "2023",
abstract = "Since the last few decades of the 20th and the beginning of civilian application of NAVigation Satellite Timing And Ranging Global Positioning System (NAVSTAR GPS) established by the United States Department of Defense, satellite positioning is the most widespread technology for position determination on any place in the Earth's surface (Hofmann-Wellenhof et al., 2008). Besides positioning, a Global Navigation Satellite Systems (GNSS; a common name for all operational navigation systems worldwide) technology is used for other research applications such as atmospheric parameter estimation, i.e., ionospheric determination (Seeber et al., 2003). This paper presents the possibility of the GNSS technology as a tool for determining ionospheric models by the Bernese GNSS Software (Dach et al., 2015). Bernese supports three types of models to represent the ionosphere: local models based on Taylor series expansions, and station-specific and global (or regional) models based on spherical harmonic expansions (Schaer, 1999). Mentioned Ionospheric models (also called Ionospheric maps) can be produced in Bernese ION format or as a common data-exchange IONosphere EXchange (IONEX) format (Schaer et al., 1998). Based on these formats, it is possible to determine the quantity that characterizes the current state of the ionosphere, the so-called Total Electron Content (TEC).",
publisher = "Faculty of Civil Engineering, University of Belgrade, Institute of Physics Belgrade, University of Belgrade",
journal = "International Conference on Recent Trends in Geoscience Research and Applications, Belgrade, October 23–27, 2023",
title = "Determination of ionospheric models using global navigational satellite systems and Bernese GNSS software",
pages = "90",
url = "https://hdl.handle.net/21.15107/rcub_grafar_3240"
}
Petković, D., Grekulović, S., Todorović Drakul, M.,& Odalović, O.. (2023). Determination of ionospheric models using global navigational satellite systems and Bernese GNSS software. in International Conference on Recent Trends in Geoscience Research and Applications, Belgrade, October 23–27, 2023
Faculty of Civil Engineering, University of Belgrade., 90.
https://hdl.handle.net/21.15107/rcub_grafar_3240
Petković D, Grekulović S, Todorović Drakul M, Odalović O. Determination of ionospheric models using global navigational satellite systems and Bernese GNSS software. in International Conference on Recent Trends in Geoscience Research and Applications, Belgrade, October 23–27, 2023. 2023;:90.
https://hdl.handle.net/21.15107/rcub_grafar_3240 .
Petković, Dušan, Grekulović, Sanja, Todorović Drakul, Miljana, Odalović, Oleg, "Determination of ionospheric models using global navigational satellite systems and Bernese GNSS software" in International Conference on Recent Trends in Geoscience Research and Applications, Belgrade, October 23–27, 2023 (2023):90,
https://hdl.handle.net/21.15107/rcub_grafar_3240 .

Одређивање мерне несигурности резултата мерења просторног растојања применом глобалних навигационих сателитских система

Odalović, Oleg; Petković, Dušan; Grekulović, Sanja; Todorović-Drakul, Miljana

(Друштво метролога, 2022)

TY  - CONF
AU  - Odalović, Oleg
AU  - Petković, Dušan
AU  - Grekulović, Sanja
AU  - Todorović-Drakul, Miljana
PY  - 2022
UR  - http://www.drustvometrologa.org/radovi2022.php
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/3044
AB  - Постоје четири у потпуности успостављена Глобална навигациона сателитска система (ГНСС): амерички GPS NAVSTAR, руски GLONASS, кинески BEIDOU (COMPASS) и европски GALILEO. Њиховом применом успешно се успостављају терестрички референтни системи широм планете. У овом раду приказан је поступак успостављања теренске базе за еталонирање мерила дужине применом технологије ГНСС-а. На релативно кратком растојању дефинисане су крајње тачке теренске базе чије су координате одређене на основу ГНСС опажања. Одређена је мерна несигурност дефинисане базе и извршено је поређење добијених резултата са вредностима добијеним класичним геодетским методама.
AB  - There are four fully operational Global Navigation Satellite Systems (GNSS): United States GPS NAVSTAR, Russian GLONASS, Chine’s BEIDOU (COMPASS), and European GALILEO. With their application, reference systems around the planet were established. This paper presents a procedure for establishing a field base for calibrating length measurement equipment using GNSS. A field base is defined as a short distance determined by its endpoints using GNSS technology. The measurement uncertainty was calculated for the defined base, and the results were compared with the values obtained using traditional geodetic methods.
PB  - Друштво метролога
C3  - Конгрес метролога 2022
T1  - Одређивање мерне несигурности резултата мерења просторног растојања применом глобалних навигационих сателитских система
T1  - Determination of spatial distance measurement uncertainty using global navigation satellite systems
UR  - https://hdl.handle.net/21.15107/rcub_grafar_3044
ER  - 
@conference{
author = "Odalović, Oleg and Petković, Dušan and Grekulović, Sanja and Todorović-Drakul, Miljana",
year = "2022",
abstract = "Постоје четири у потпуности успостављена Глобална навигациона сателитска система (ГНСС): амерички GPS NAVSTAR, руски GLONASS, кинески BEIDOU (COMPASS) и европски GALILEO. Њиховом применом успешно се успостављају терестрички референтни системи широм планете. У овом раду приказан је поступак успостављања теренске базе за еталонирање мерила дужине применом технологије ГНСС-а. На релативно кратком растојању дефинисане су крајње тачке теренске базе чије су координате одређене на основу ГНСС опажања. Одређена је мерна несигурност дефинисане базе и извршено је поређење добијених резултата са вредностима добијеним класичним геодетским методама., There are four fully operational Global Navigation Satellite Systems (GNSS): United States GPS NAVSTAR, Russian GLONASS, Chine’s BEIDOU (COMPASS), and European GALILEO. With their application, reference systems around the planet were established. This paper presents a procedure for establishing a field base for calibrating length measurement equipment using GNSS. A field base is defined as a short distance determined by its endpoints using GNSS technology. The measurement uncertainty was calculated for the defined base, and the results were compared with the values obtained using traditional geodetic methods.",
publisher = "Друштво метролога",
journal = "Конгрес метролога 2022",
title = "Одређивање мерне несигурности резултата мерења просторног растојања применом глобалних навигационих сателитских система, Determination of spatial distance measurement uncertainty using global navigation satellite systems",
url = "https://hdl.handle.net/21.15107/rcub_grafar_3044"
}
Odalović, O., Petković, D., Grekulović, S.,& Todorović-Drakul, M.. (2022). Одређивање мерне несигурности резултата мерења просторног растојања применом глобалних навигационих сателитских система. in Конгрес метролога 2022
Друштво метролога..
https://hdl.handle.net/21.15107/rcub_grafar_3044
Odalović O, Petković D, Grekulović S, Todorović-Drakul M. Одређивање мерне несигурности резултата мерења просторног растојања применом глобалних навигационих сателитских система. in Конгрес метролога 2022. 2022;.
https://hdl.handle.net/21.15107/rcub_grafar_3044 .
Odalović, Oleg, Petković, Dušan, Grekulović, Sanja, Todorović-Drakul, Miljana, "Одређивање мерне несигурности резултата мерења просторног растојања применом глобалних навигационих сателитских система" in Конгрес метролога 2022 (2022),
https://hdl.handle.net/21.15107/rcub_grafar_3044 .

Determinations of the preliminary coordinates for the new GNSS permanent station network in Serbia

Odalović, Oleg; Grekulović, Sanja; Todorović Drakul, Miljana; Petković, Dušan

(SGEM, 51 Alexander Malinov blvd, Sofia, 1712, Bulgaria, 2022)

TY  - CONF
AU  - Odalović, Oleg
AU  - Grekulović, Sanja
AU  - Todorović Drakul, Miljana
AU  - Petković, Dušan
PY  - 2022
UR  - https://epslibrary.at/sgem_jresearch_publication_view.php?page=view&editid1=8490&
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/3036
AB  - The new network of permanent GNSS (Global Navigation Satellite System) stations should be established by the end of this year. At the moment, 18 permanent stations are already established. All stations coordinates must be determined following the conditions dictated by the Republic Geodetic Authority of Serbia, i.e., the Rule Book for establishing the GNSS permanent stations network. The coordinates of stations, the final solution, must be calculated from three consecutive uninterrupted daily sessions as a combined solution of all three days. The essential condition that must be fulfilled is the daily repeatability of the coordinates of the points for the three daily solutions on the level of 10 mm in the horizontal direction and 15 mm in the vertical direction. In other words, GNSS coordinates of the permanent station can be treated as calculated and adopted as final if the differences between coordinates of the daily solution and final solution do not exceed 10 mm in the horizontal direction and 15 mm in the vertical direction. In this research, preliminary calculations of coordinates repeatability are checked using Bernese GNSS Software Version 5.2 and two online RINEX processing tools, Australian AUSPOS - Online GPS Processing Service and Canadian CSRS-PPP (Canadian Spatial Reference System Precise Point Positioning).
PB  - SGEM, 51 Alexander Malinov blvd, Sofia, 1712, Bulgaria
C3  - 22nd International Multidisciplinary Scientific GeoConference SGEM 2022, Vol22, Issue 2.1
T1  - Determinations of the preliminary coordinates for the new GNSS permanent station network in Serbia
EP  - 194
IS  - 2.1
SP  - 187
VL  - 22
DO  - 10.5593/sgem2022/2.1/s09.23
ER  - 
@conference{
author = "Odalović, Oleg and Grekulović, Sanja and Todorović Drakul, Miljana and Petković, Dušan",
year = "2022",
abstract = "The new network of permanent GNSS (Global Navigation Satellite System) stations should be established by the end of this year. At the moment, 18 permanent stations are already established. All stations coordinates must be determined following the conditions dictated by the Republic Geodetic Authority of Serbia, i.e., the Rule Book for establishing the GNSS permanent stations network. The coordinates of stations, the final solution, must be calculated from three consecutive uninterrupted daily sessions as a combined solution of all three days. The essential condition that must be fulfilled is the daily repeatability of the coordinates of the points for the three daily solutions on the level of 10 mm in the horizontal direction and 15 mm in the vertical direction. In other words, GNSS coordinates of the permanent station can be treated as calculated and adopted as final if the differences between coordinates of the daily solution and final solution do not exceed 10 mm in the horizontal direction and 15 mm in the vertical direction. In this research, preliminary calculations of coordinates repeatability are checked using Bernese GNSS Software Version 5.2 and two online RINEX processing tools, Australian AUSPOS - Online GPS Processing Service and Canadian CSRS-PPP (Canadian Spatial Reference System Precise Point Positioning).",
publisher = "SGEM, 51 Alexander Malinov blvd, Sofia, 1712, Bulgaria",
journal = "22nd International Multidisciplinary Scientific GeoConference SGEM 2022, Vol22, Issue 2.1",
title = "Determinations of the preliminary coordinates for the new GNSS permanent station network in Serbia",
pages = "194-187",
number = "2.1",
volume = "22",
doi = "10.5593/sgem2022/2.1/s09.23"
}
Odalović, O., Grekulović, S., Todorović Drakul, M.,& Petković, D.. (2022). Determinations of the preliminary coordinates for the new GNSS permanent station network in Serbia. in 22nd International Multidisciplinary Scientific GeoConference SGEM 2022, Vol22, Issue 2.1
SGEM, 51 Alexander Malinov blvd, Sofia, 1712, Bulgaria., 22(2.1), 187-194.
https://doi.org/10.5593/sgem2022/2.1/s09.23
Odalović O, Grekulović S, Todorović Drakul M, Petković D. Determinations of the preliminary coordinates for the new GNSS permanent station network in Serbia. in 22nd International Multidisciplinary Scientific GeoConference SGEM 2022, Vol22, Issue 2.1. 2022;22(2.1):187-194.
doi:10.5593/sgem2022/2.1/s09.23 .
Odalović, Oleg, Grekulović, Sanja, Todorović Drakul, Miljana, Petković, Dušan, "Determinations of the preliminary coordinates for the new GNSS permanent station network in Serbia" in 22nd International Multidisciplinary Scientific GeoConference SGEM 2022, Vol22, Issue 2.1, 22, no. 2.1 (2022):187-194,
https://doi.org/10.5593/sgem2022/2.1/s09.23 . .

Influence of the solar hydrogen Lya line on the GNSS signal delay in the ionospheric D-region

Petković, Dušan; Odalović, Oleg; Nina, Aleksandra

(Astronomical Institute of the Slovak Academy of Sciences, 2022)

TY  - JOUR
AU  - Petković, Dušan
AU  - Odalović, Oleg
AU  - Nina, Aleksandra
PY  - 2022
UR  - https://www.astro.sk/caosp/Eedition/Abstracts/2022/Vol_52/No_3/index.html
UR  - https://www.astro.sk/caosp/Eedition/Abstracts/2022/Vol_52/No_3/pp116-125_abstract.html
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2802
AB  - Recent research indicates that the influence of the ionospheric D-region on the propagation of satellite signals cannot be ignored during the intense X-radiation emitted during solar X-ray flares. In this paper, we investigate the influence of changes in the solar hydrogen Lya radiation, which is manifested in variations of the D-region electron density and, consequently, the total electron content in this region, on the propagation of the Global Navigation Satellite System (GNSS) signals. We consider changes during a solar cycle and year, represented by the smoothed daily sunspot number and the day of year. The obtained results indicate that the influence of the D-region on these signals is not negligible for positioning with a single signal recorded by a single receiver during the period around the maximum of a solar cycle.
PB  - Astronomical Institute of the Slovak Academy of Sciences
T2  - Contributions of the Astronomical Observatory Skalnate Pleso
T1  - Influence of the solar hydrogen Lya line on the GNSS signal delay in the ionospheric D-region
EP  - 125
IS  - 3
SP  - 116
VL  - 52
DO  - 10.31577/caosp.2022.52.3.116
ER  - 
@article{
author = "Petković, Dušan and Odalović, Oleg and Nina, Aleksandra",
year = "2022",
abstract = "Recent research indicates that the influence of the ionospheric D-region on the propagation of satellite signals cannot be ignored during the intense X-radiation emitted during solar X-ray flares. In this paper, we investigate the influence of changes in the solar hydrogen Lya radiation, which is manifested in variations of the D-region electron density and, consequently, the total electron content in this region, on the propagation of the Global Navigation Satellite System (GNSS) signals. We consider changes during a solar cycle and year, represented by the smoothed daily sunspot number and the day of year. The obtained results indicate that the influence of the D-region on these signals is not negligible for positioning with a single signal recorded by a single receiver during the period around the maximum of a solar cycle.",
publisher = "Astronomical Institute of the Slovak Academy of Sciences",
journal = "Contributions of the Astronomical Observatory Skalnate Pleso",
title = "Influence of the solar hydrogen Lya line on the GNSS signal delay in the ionospheric D-region",
pages = "125-116",
number = "3",
volume = "52",
doi = "10.31577/caosp.2022.52.3.116"
}
Petković, D., Odalović, O.,& Nina, A.. (2022). Influence of the solar hydrogen Lya line on the GNSS signal delay in the ionospheric D-region. in Contributions of the Astronomical Observatory Skalnate Pleso
Astronomical Institute of the Slovak Academy of Sciences., 52(3), 116-125.
https://doi.org/10.31577/caosp.2022.52.3.116
Petković D, Odalović O, Nina A. Influence of the solar hydrogen Lya line on the GNSS signal delay in the ionospheric D-region. in Contributions of the Astronomical Observatory Skalnate Pleso. 2022;52(3):116-125.
doi:10.31577/caosp.2022.52.3.116 .
Petković, Dušan, Odalović, Oleg, Nina, Aleksandra, "Influence of the solar hydrogen Lya line on the GNSS signal delay in the ionospheric D-region" in Contributions of the Astronomical Observatory Skalnate Pleso, 52, no. 3 (2022):116-125,
https://doi.org/10.31577/caosp.2022.52.3.116 . .

Estimation of vertical accuracy of digital terrain model FABDEM on the territory of the republic of Serbia

Grekulović, Sanja; Odalović, Oleg; Todorović Drakul, Miljana; Petković, Dušan

(SGEM, 51 Alexander Malinov blvd, Sofia, 1712, Bulgaria, 2022)

TY  - CONF
AU  - Grekulović, Sanja
AU  - Odalović, Oleg
AU  - Todorović Drakul, Miljana
AU  - Petković, Dušan
PY  - 2022
UR  - https://epslibrary.at/sgem_jresearch_publication_view.php?page=view&editid1=8492&
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/3037
AB  - In 2004, a digital terrain model (DTM) was created in Serbia. It was obtained by vectorizing isohypses on topographic maps with a scale of 1: 25000. The resolution of the digital model of Serbia is 30 m, and the vertical accuracy, as the authors claim, is 10
m. From December 2021, the global model FABDEM (Forest And Buildings removed Copernicus DEM) is available to the public. It was created based on the data of the Copernicus GLO30 model so that data on forests and buildings were removed from it. Important features of the global model are its horizontal resolution of 30 m and vertical accuracy of less than 5 m. This paper aims to assess the vertical accuracy of the global FABDEM model and analyze the differences between the global FABDEM and DTM  in the territory of the Republic of Serbia. Vertical accuracy and analysis of the two models were assessed by comparing the heights derived from FABDEM and DTM with the heights of the independent set of points of the gravimetric survey of Serbia (GSS). The heights of the GSS points were determined using classical geodetic methods, and they are relatively uniformly distributed on the territory of the Republic of Serbia. A short description of mentioned comparison is presented in this paper. Statistical analysis results that compare terrestrial heights with heights derived from DTMs show minor differences between the two data sets.
PB  - SGEM, 51 Alexander Malinov blvd, Sofia, 1712, Bulgaria
C3  - 22nd International Multidisciplinary Scientific GeoConference SGEM 2022, Vol22, Issue 2.1
T1  - Estimation of vertical accuracy of digital terrain model FABDEM on the territory of the republic of Serbia
EP  - 210
IS  - 2.1
SP  - 203
VL  - 22
DO  - 10.5593/sgem2022/2.1/s09.25
ER  - 
@conference{
author = "Grekulović, Sanja and Odalović, Oleg and Todorović Drakul, Miljana and Petković, Dušan",
year = "2022",
abstract = "In 2004, a digital terrain model (DTM) was created in Serbia. It was obtained by vectorizing isohypses on topographic maps with a scale of 1: 25000. The resolution of the digital model of Serbia is 30 m, and the vertical accuracy, as the authors claim, is 10
m. From December 2021, the global model FABDEM (Forest And Buildings removed Copernicus DEM) is available to the public. It was created based on the data of the Copernicus GLO30 model so that data on forests and buildings were removed from it. Important features of the global model are its horizontal resolution of 30 m and vertical accuracy of less than 5 m. This paper aims to assess the vertical accuracy of the global FABDEM model and analyze the differences between the global FABDEM and DTM  in the territory of the Republic of Serbia. Vertical accuracy and analysis of the two models were assessed by comparing the heights derived from FABDEM and DTM with the heights of the independent set of points of the gravimetric survey of Serbia (GSS). The heights of the GSS points were determined using classical geodetic methods, and they are relatively uniformly distributed on the territory of the Republic of Serbia. A short description of mentioned comparison is presented in this paper. Statistical analysis results that compare terrestrial heights with heights derived from DTMs show minor differences between the two data sets.",
publisher = "SGEM, 51 Alexander Malinov blvd, Sofia, 1712, Bulgaria",
journal = "22nd International Multidisciplinary Scientific GeoConference SGEM 2022, Vol22, Issue 2.1",
title = "Estimation of vertical accuracy of digital terrain model FABDEM on the territory of the republic of Serbia",
pages = "210-203",
number = "2.1",
volume = "22",
doi = "10.5593/sgem2022/2.1/s09.25"
}
Grekulović, S., Odalović, O., Todorović Drakul, M.,& Petković, D.. (2022). Estimation of vertical accuracy of digital terrain model FABDEM on the territory of the republic of Serbia. in 22nd International Multidisciplinary Scientific GeoConference SGEM 2022, Vol22, Issue 2.1
SGEM, 51 Alexander Malinov blvd, Sofia, 1712, Bulgaria., 22(2.1), 203-210.
https://doi.org/10.5593/sgem2022/2.1/s09.25
Grekulović S, Odalović O, Todorović Drakul M, Petković D. Estimation of vertical accuracy of digital terrain model FABDEM on the territory of the republic of Serbia. in 22nd International Multidisciplinary Scientific GeoConference SGEM 2022, Vol22, Issue 2.1. 2022;22(2.1):203-210.
doi:10.5593/sgem2022/2.1/s09.25 .
Grekulović, Sanja, Odalović, Oleg, Todorović Drakul, Miljana, Petković, Dušan, "Estimation of vertical accuracy of digital terrain model FABDEM on the territory of the republic of Serbia" in 22nd International Multidisciplinary Scientific GeoConference SGEM 2022, Vol22, Issue 2.1, 22, no. 2.1 (2022):203-210,
https://doi.org/10.5593/sgem2022/2.1/s09.25 . .
1

Influence of the periodic changes in the incoming solar hydrogen Ly-α radiation intensity on the total electron content in the ionospheric D-region

Petković, Dušan; Odalović, Oleg; Nina, Aleksandra

(2022)

TY  - CONF
AU  - Petković, Dušan
AU  - Odalović, Oleg
AU  - Nina, Aleksandra
PY  - 2022
UR  - asspectro2022.ipb.ac.rs/book-AsSpectro2022c.pdf
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2678
AB  - This paper analyzes variations in the total electron content in the D-region induced by periodical changes in the solar hydrogen Lyα radiation. The considered changes are a consequence of variations in the solar radiation intensity during a solar cycle and a consequence of the Earth's revolution. The presented analysis is based on the Quiet ionospheric D-region (QIonDR) model, which shows the dependencies of ionospheric parameters on the smoothed daily sunspot number and season. We consider the vertical and slant (for different zenith angles) total electron content in the D-region (TECD) which are important for calculations of delays of satellite signals. The obtained results show a significant influence of the considered zenith angle and period of the solar cycle and season on calculating the considered ionospheric parameter.
T1  - Influence of the periodic changes in the incoming solar hydrogen Ly-α radiation intensity on the total electron content in the ionospheric D-region
EP  - 43
SP  - 39
UR  - https://hdl.handle.net/21.15107/rcub_grafar_2678
ER  - 
@conference{
author = "Petković, Dušan and Odalović, Oleg and Nina, Aleksandra",
year = "2022",
abstract = "This paper analyzes variations in the total electron content in the D-region induced by periodical changes in the solar hydrogen Lyα radiation. The considered changes are a consequence of variations in the solar radiation intensity during a solar cycle and a consequence of the Earth's revolution. The presented analysis is based on the Quiet ionospheric D-region (QIonDR) model, which shows the dependencies of ionospheric parameters on the smoothed daily sunspot number and season. We consider the vertical and slant (for different zenith angles) total electron content in the D-region (TECD) which are important for calculations of delays of satellite signals. The obtained results show a significant influence of the considered zenith angle and period of the solar cycle and season on calculating the considered ionospheric parameter.",
title = "Influence of the periodic changes in the incoming solar hydrogen Ly-α radiation intensity on the total electron content in the ionospheric D-region",
pages = "43-39",
url = "https://hdl.handle.net/21.15107/rcub_grafar_2678"
}
Petković, D., Odalović, O.,& Nina, A.. (2022). Influence of the periodic changes in the incoming solar hydrogen Ly-α radiation intensity on the total electron content in the ionospheric D-region. , 39-43.
https://hdl.handle.net/21.15107/rcub_grafar_2678
Petković D, Odalović O, Nina A. Influence of the periodic changes in the incoming solar hydrogen Ly-α radiation intensity on the total electron content in the ionospheric D-region. 2022;:39-43.
https://hdl.handle.net/21.15107/rcub_grafar_2678 .
Petković, Dušan, Odalović, Oleg, Nina, Aleksandra, "Influence of the periodic changes in the incoming solar hydrogen Ly-α radiation intensity on the total electron content in the ionospheric D-region" (2022):39-43,
https://hdl.handle.net/21.15107/rcub_grafar_2678 .

Calculating the differences of VTEC values obtained by altimetric and GNSS observations in coastal areas

Marković, Miloš; Odalović, Oleg; Stanković, Marko

(Survey, 2022)

TY  - JOUR
AU  - Marković, Miloš
AU  - Odalović, Oleg
AU  - Stanković, Marko
PY  - 2022
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2777
AB  - The difference between the VTEC values obtained from the Global Navigation Satellite System
(GNSS) and satellite altimetry is much more noticeable over the ocean and the sea due to less
coverage of the GNSS observations. Previous research shows that differences can go up to 15
TECU. The main problem is calculating VTEC from raw data which is ambiguous. This paper
presents filtering methods for estimating the differences between mentioned datasets. By using
this solution, it is possible to achieve better accuracy on a global estimation of the deviation.
The International Reference Ionosphere values were used for validation of the results.
PB  - Survey
PB  - Taylor & Frencis
T2  - Survey Review
T1  - Calculating the differences of VTEC values obtained by altimetric and GNSS observations in coastal areas
DO  - 10.1080/00396265.2022.2137130
ER  - 
@article{
author = "Marković, Miloš and Odalović, Oleg and Stanković, Marko",
year = "2022",
abstract = "The difference between the VTEC values obtained from the Global Navigation Satellite System
(GNSS) and satellite altimetry is much more noticeable over the ocean and the sea due to less
coverage of the GNSS observations. Previous research shows that differences can go up to 15
TECU. The main problem is calculating VTEC from raw data which is ambiguous. This paper
presents filtering methods for estimating the differences between mentioned datasets. By using
this solution, it is possible to achieve better accuracy on a global estimation of the deviation.
The International Reference Ionosphere values were used for validation of the results.",
publisher = "Survey, Taylor & Frencis",
journal = "Survey Review",
title = "Calculating the differences of VTEC values obtained by altimetric and GNSS observations in coastal areas",
doi = "10.1080/00396265.2022.2137130"
}
Marković, M., Odalović, O.,& Stanković, M.. (2022). Calculating the differences of VTEC values obtained by altimetric and GNSS observations in coastal areas. in Survey Review
Survey..
https://doi.org/10.1080/00396265.2022.2137130
Marković M, Odalović O, Stanković M. Calculating the differences of VTEC values obtained by altimetric and GNSS observations in coastal areas. in Survey Review. 2022;.
doi:10.1080/00396265.2022.2137130 .
Marković, Miloš, Odalović, Oleg, Stanković, Marko, "Calculating the differences of VTEC values obtained by altimetric and GNSS observations in coastal areas" in Survey Review (2022),
https://doi.org/10.1080/00396265.2022.2137130 . .

Modeling of vertical gravity gradient by normal gravity field and digital terrain models

Odalović, Oleg; Medved, Klemen; Naod, Sofija

(2022)

TY  - JOUR
AU  - Odalović, Oleg
AU  - Medved, Klemen
AU  - Naod, Sofija
PY  - 2022
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2725
AB  - Vertical gravity gradient, as a change of gravity with the change in height, is a significant physical quantity used in many geodetic and geophysical modeling applications. In this research, we used a normal gravity field and digital terrain models to model the vertical gravity gradient without using other sources of information such as global geopotential models, results of gravity measurements, or digital density models of topographic masses. We measured vertical gravity gradients by relative gravimeters at 120 points, which we used as validation values for a typical forward modeling problem. In all calculations, we assumed a constant density of topographic masses above the ellipsoid and accounted for the effects of the Earth's curvature. In the territory of Slovenia, where a digital terrain model with a resolution of 1 × 1 m is available, the differences between the measured and modeled values of the vertical gravity gradients are on average − 9.3 μGal/m with a standard deviation of 12.3 μGal/m. For the territory of Serbia, using a digital terrain model with a resolution of 25 × 25 m, the same differences were obtained with an average of − 7.8 μGal/m and a standard deviation of 21.4 μGal/m. It can be said that the quality of the modeled values of vertical gravity gradients is directly related to the resolution of the digital terrain model.
T2  - Journal of Geodesy, Springer
T1  - Modeling of vertical gravity gradient by normal gravity field and digital terrain models
VL  - 96
DO  - 10.1007/s00190-022-01669-y
ER  - 
@article{
author = "Odalović, Oleg and Medved, Klemen and Naod, Sofija",
year = "2022",
abstract = "Vertical gravity gradient, as a change of gravity with the change in height, is a significant physical quantity used in many geodetic and geophysical modeling applications. In this research, we used a normal gravity field and digital terrain models to model the vertical gravity gradient without using other sources of information such as global geopotential models, results of gravity measurements, or digital density models of topographic masses. We measured vertical gravity gradients by relative gravimeters at 120 points, which we used as validation values for a typical forward modeling problem. In all calculations, we assumed a constant density of topographic masses above the ellipsoid and accounted for the effects of the Earth's curvature. In the territory of Slovenia, where a digital terrain model with a resolution of 1 × 1 m is available, the differences between the measured and modeled values of the vertical gravity gradients are on average − 9.3 μGal/m with a standard deviation of 12.3 μGal/m. For the territory of Serbia, using a digital terrain model with a resolution of 25 × 25 m, the same differences were obtained with an average of − 7.8 μGal/m and a standard deviation of 21.4 μGal/m. It can be said that the quality of the modeled values of vertical gravity gradients is directly related to the resolution of the digital terrain model.",
journal = "Journal of Geodesy, Springer",
title = "Modeling of vertical gravity gradient by normal gravity field and digital terrain models",
volume = "96",
doi = "10.1007/s00190-022-01669-y"
}
Odalović, O., Medved, K.,& Naod, S.. (2022). Modeling of vertical gravity gradient by normal gravity field and digital terrain models. in Journal of Geodesy, Springer, 96.
https://doi.org/10.1007/s00190-022-01669-y
Odalović O, Medved K, Naod S. Modeling of vertical gravity gradient by normal gravity field and digital terrain models. in Journal of Geodesy, Springer. 2022;96.
doi:10.1007/s00190-022-01669-y .
Odalović, Oleg, Medved, Klemen, Naod, Sofija, "Modeling of vertical gravity gradient by normal gravity field and digital terrain models" in Journal of Geodesy, Springer, 96 (2022),
https://doi.org/10.1007/s00190-022-01669-y . .

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

Stanković, Marko; Odalović, Oleg; Marković, Miloš

(Association of Surveyors of Slovenia, 2022)

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 . .

Nove karte gravimetričnih anomalij na območju Republike Slovenije

Medved, Klemen; Odalović, Oleg; Koler, Božo

(2022)

TY  - CONF
AU  - Medved, Klemen
AU  - Odalović, Oleg
AU  - Koler, Božo
PY  - 2022
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2688
AB  - Obstoječa karta Bouguerovih anomalij, ki pokriva ozemlje Republike Slovenije, je stara nekajdesetletij. Od takrat je na voljo kar nekaj novih podatkov o merjenem težnostnem pospešku naobmočju Slovenije, ter kakovostnih digitalnih modelov terena, ki so potrebni za izdelavo takšnihkart. Poleg tega so se spremenili tudi metodologija in standardi za izdelavo kart gravimetričnihanomalij. V nizu starih gravimetričnih podatkov, ki izhajajo iz obdobja Jugoslavije, je bilo odkritihin odstranjenih nekaj grobih pogreškov. Na podlagi vseh novih gravimetričnih podatkov so bileizdelane karte gravimetričnih anomalij Republike Slovenije.
C3  - Slovensko združenje za geodezijo in geofiziko
T1  - Nove karte gravimetričnih anomalij na območju Republike Slovenije
UR  - https://hdl.handle.net/21.15107/rcub_grafar_2688
ER  - 
@conference{
author = "Medved, Klemen and Odalović, Oleg and Koler, Božo",
year = "2022",
abstract = "Obstoječa karta Bouguerovih anomalij, ki pokriva ozemlje Republike Slovenije, je stara nekajdesetletij. Od takrat je na voljo kar nekaj novih podatkov o merjenem težnostnem pospešku naobmočju Slovenije, ter kakovostnih digitalnih modelov terena, ki so potrebni za izdelavo takšnihkart. Poleg tega so se spremenili tudi metodologija in standardi za izdelavo kart gravimetričnihanomalij. V nizu starih gravimetričnih podatkov, ki izhajajo iz obdobja Jugoslavije, je bilo odkritihin odstranjenih nekaj grobih pogreškov. Na podlagi vseh novih gravimetričnih podatkov so bileizdelane karte gravimetričnih anomalij Republike Slovenije.",
journal = "Slovensko združenje za geodezijo in geofiziko",
title = "Nove karte gravimetričnih anomalij na območju Republike Slovenije",
url = "https://hdl.handle.net/21.15107/rcub_grafar_2688"
}
Medved, K., Odalović, O.,& Koler, B.. (2022). Nove karte gravimetričnih anomalij na območju Republike Slovenije. in Slovensko združenje za geodezijo in geofiziko.
https://hdl.handle.net/21.15107/rcub_grafar_2688
Medved K, Odalović O, Koler B. Nove karte gravimetričnih anomalij na območju Republike Slovenije. in Slovensko združenje za geodezijo in geofiziko. 2022;.
https://hdl.handle.net/21.15107/rcub_grafar_2688 .
Medved, Klemen, Odalović, Oleg, Koler, Božo, "Nove karte gravimetričnih anomalij na območju Republike Slovenije" in Slovensko združenje za geodezijo in geofiziko (2022),
https://hdl.handle.net/21.15107/rcub_grafar_2688 .

GNSS signals as a tool for detection of the influence of solar radiation of terrestrial ionosphere

Одаловић, Олег

(2022)

TY  - CONF
AU  - Одаловић, Олег
PY  - 2022
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2677
AB  - Solar radiation has the most significant influence on photo-ionization in the 
Earth's ionosphere, and different parts of its spectrum in the UV and X domains 
have a dominant role in producing free electrons at different ionospheric heights. In 
calm conditions, the dominant role in photo-ionization processes in the D-region 
has the hydrogen Lyα line, while in the higher layers, the ionosphere is primarily 
ionized by photons from the X spectrum. 
Through ionization processes, solar radiation significantly affects changes in the 
electron density in the ionosphere and, consequently, the propagation of 
electromagnetic (EM) waves in this atmospheric layer. One of the most significant 
EM waves propagating in the ionosphere is Global Navigation Satellite Systems 
(GNSS) signals with various applications, including navigation and positioning 
applications. Since 1987 International Association of Geodesy (IAG), as one of the 
several associations of the International Union of Geodesy and Geophysics 
(IUGG), has been responsible for establishing and maintaining European 
Terrestrial Reference System (ETRS). To establish and maintain ETRS, IAG has 
formed a special commission entitled EUREF (European Reference Frame), 
responsible for creating and maintaining the EUREF Permanent Network (EPN) as 
a science-driven network of continuously operating GNSS reference stations. More 
than 100 European agencies and universities are voluntarily involved in the EPN, 
with 368 stations all over Europe. In general, all GNSS stations continuously 
receive the data from all currently available GNSS: American NavStar, Russian 
GLONASS, Chines BeiDou, and European Galileo systems. The received data are 
stored in EPN Data Centres (DC), and all data are publicly available in several 
RINEX formats (Receiver Independent Exchange Format). Besides data centers, 
EUREF organized EPN Analysis Centers (AC) to provide products such as the 
EPN GNSS station positions and velocities, EPN zenith tropospheric path delay 
estimates, and ETRS89 satellite orbit and correction streams. 
In the precise positioning process, the crucial element is modeling the 
ionosphere, which gives significance for practical applications to studies that 
analyze the influence of solar radiation and its spectrum on photo-ionization 
processes. Namely, the ionosphere delays EM waves that pass to it and induces a 
37
IV Meeting on Astrophysical Spectroscopy - A&M DATA - Atmosphere 
BOOK OF ABSTRACTS AND CONTRIBUTED PAPERS 
Eds. V. A. Srećković, M. S. Dimitrijević, N. Veselinović and N. Cvetanović
delay of propagation related to the electronic density (Total Electron Content - 
TEC) and the wave frequency. This delay is directly proportional to the TEC and 
inversely proportional to the square of the carrier frequency. Those effects can 
produce an error in points coordinates from 3 to 15 m. Besides this effect, there are 
also effects caused by irregularities in the ionosphere – scintillation effects – which 
can cause a large number of cycle slips in GNSS signals. The magnitude of 
mentioned errors is the main reason for many studies and papers dedicated to 
modeling ionospheric effects on GNSS and using GNSS signals to determine 
global, regional, and local ionospheric models. 
It is usual in GNSS applications to split the determination of ionosphere into 
deterministic and stochastic parts. The deterministic part is dedicated to creating 
models of the ionosphere, and the stochastic part is dedicated to the determination 
of short-term TEC variation throughout the estimation of Stochastic Ionosphere 
Parameters (SIP). This paper is dedicated to determining the deterministic part by 
modeling local, regional, and station-specific ionosphere models. All mentioned 
models are created based on available EPN data by Bernese GNSS Software 
Version 5.2 and mentioned models are represented by Taylor series expansion in 
the case of local models and spherical harmonic expansion for the regional and 
station-specific models. All models can be produced for the desired period and, in 
such a way, create relevant scientific data for studying the effect in the ionosphere 
induced by changes in solar radiation
C3  - IV Meeting on Astrophysical Spectroscopy -  A&M DATA - Atmosphere, BOOK OF ABSTRACTS AND  CONTRIBUTED PAPERS
T1  - GNSS signals as a tool for detection of the influence of solar  radiation of terrestrial ionosphere
UR  - https://hdl.handle.net/21.15107/rcub_grafar_2677
ER  - 
@conference{
author = "Одаловић, Олег",
year = "2022",
abstract = "Solar radiation has the most significant influence on photo-ionization in the 
Earth's ionosphere, and different parts of its spectrum in the UV and X domains 
have a dominant role in producing free electrons at different ionospheric heights. In 
calm conditions, the dominant role in photo-ionization processes in the D-region 
has the hydrogen Lyα line, while in the higher layers, the ionosphere is primarily 
ionized by photons from the X spectrum. 
Through ionization processes, solar radiation significantly affects changes in the 
electron density in the ionosphere and, consequently, the propagation of 
electromagnetic (EM) waves in this atmospheric layer. One of the most significant 
EM waves propagating in the ionosphere is Global Navigation Satellite Systems 
(GNSS) signals with various applications, including navigation and positioning 
applications. Since 1987 International Association of Geodesy (IAG), as one of the 
several associations of the International Union of Geodesy and Geophysics 
(IUGG), has been responsible for establishing and maintaining European 
Terrestrial Reference System (ETRS). To establish and maintain ETRS, IAG has 
formed a special commission entitled EUREF (European Reference Frame), 
responsible for creating and maintaining the EUREF Permanent Network (EPN) as 
a science-driven network of continuously operating GNSS reference stations. More 
than 100 European agencies and universities are voluntarily involved in the EPN, 
with 368 stations all over Europe. In general, all GNSS stations continuously 
receive the data from all currently available GNSS: American NavStar, Russian 
GLONASS, Chines BeiDou, and European Galileo systems. The received data are 
stored in EPN Data Centres (DC), and all data are publicly available in several 
RINEX formats (Receiver Independent Exchange Format). Besides data centers, 
EUREF organized EPN Analysis Centers (AC) to provide products such as the 
EPN GNSS station positions and velocities, EPN zenith tropospheric path delay 
estimates, and ETRS89 satellite orbit and correction streams. 
In the precise positioning process, the crucial element is modeling the 
ionosphere, which gives significance for practical applications to studies that 
analyze the influence of solar radiation and its spectrum on photo-ionization 
processes. Namely, the ionosphere delays EM waves that pass to it and induces a 
37
IV Meeting on Astrophysical Spectroscopy - A&M DATA - Atmosphere 
BOOK OF ABSTRACTS AND CONTRIBUTED PAPERS 
Eds. V. A. Srećković, M. S. Dimitrijević, N. Veselinović and N. Cvetanović
delay of propagation related to the electronic density (Total Electron Content - 
TEC) and the wave frequency. This delay is directly proportional to the TEC and 
inversely proportional to the square of the carrier frequency. Those effects can 
produce an error in points coordinates from 3 to 15 m. Besides this effect, there are 
also effects caused by irregularities in the ionosphere – scintillation effects – which 
can cause a large number of cycle slips in GNSS signals. The magnitude of 
mentioned errors is the main reason for many studies and papers dedicated to 
modeling ionospheric effects on GNSS and using GNSS signals to determine 
global, regional, and local ionospheric models. 
It is usual in GNSS applications to split the determination of ionosphere into 
deterministic and stochastic parts. The deterministic part is dedicated to creating 
models of the ionosphere, and the stochastic part is dedicated to the determination 
of short-term TEC variation throughout the estimation of Stochastic Ionosphere 
Parameters (SIP). This paper is dedicated to determining the deterministic part by 
modeling local, regional, and station-specific ionosphere models. All mentioned 
models are created based on available EPN data by Bernese GNSS Software 
Version 5.2 and mentioned models are represented by Taylor series expansion in 
the case of local models and spherical harmonic expansion for the regional and 
station-specific models. All models can be produced for the desired period and, in 
such a way, create relevant scientific data for studying the effect in the ionosphere 
induced by changes in solar radiation",
journal = "IV Meeting on Astrophysical Spectroscopy -  A&M DATA - Atmosphere, BOOK OF ABSTRACTS AND  CONTRIBUTED PAPERS",
title = "GNSS signals as a tool for detection of the influence of solar  radiation of terrestrial ionosphere",
url = "https://hdl.handle.net/21.15107/rcub_grafar_2677"
}
Одаловић, О.. (2022). GNSS signals as a tool for detection of the influence of solar  radiation of terrestrial ionosphere. in IV Meeting on Astrophysical Spectroscopy -  A&M DATA - Atmosphere, BOOK OF ABSTRACTS AND  CONTRIBUTED PAPERS.
https://hdl.handle.net/21.15107/rcub_grafar_2677
Одаловић О. GNSS signals as a tool for detection of the influence of solar  radiation of terrestrial ionosphere. in IV Meeting on Astrophysical Spectroscopy -  A&M DATA - Atmosphere, BOOK OF ABSTRACTS AND  CONTRIBUTED PAPERS. 2022;.
https://hdl.handle.net/21.15107/rcub_grafar_2677 .
Одаловић, Олег, "GNSS signals as a tool for detection of the influence of solar  radiation of terrestrial ionosphere" in IV Meeting on Astrophysical Spectroscopy -  A&M DATA - Atmosphere, BOOK OF ABSTRACTS AND  CONTRIBUTED PAPERS (2022),
https://hdl.handle.net/21.15107/rcub_grafar_2677 .

History of geodetic works in Vojvodina (Northern Serbia) and use of old maps in Serbian national spatial data infrastructure

Naod, Sofija; Odalović, Oleg; Brajović, Ljiljana; Savanović, Rajko

(2021)

TY  - JOUR
AU  - Naod, Sofija
AU  - Odalović, Oleg
AU  - Brajović, Ljiljana
AU  - Savanović, Rajko
PY  - 2021
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2286
AB  - Imperial hegemony established by the Habsburg Monarchy relied upon proper mapping during its conquests. The need for the development of geodesy and establishing reference frames was important. Until the end of the First World War, Vojvodina belonged to the Austrian-Hungarian Empire, so all of its surveys were carried out as part of many organized land surveys in the Monarchy. Today, more than 100 years after Vojvodina became the Autonomous Province of Serbia, the network developed by the Monarchy and cadastral plans from that period are still in use. In this paper, in addition to a historical overview of military and cadastral surveys in Vojvodina, we will show data that have historical significance and are available on the Internet and in historical archives. We will also emphasize how the maps available in historical archives of the neighbouring countries could have been used to set up Serbian national spatial data infrastructure.
T2  - Survey Review
T1  - History of geodetic works in Vojvodina (Northern Serbia) and use of old maps in Serbian national spatial data infrastructure
DO  - 10.1080/00396265.2021.1886546
ER  - 
@article{
author = "Naod, Sofija and Odalović, Oleg and Brajović, Ljiljana and Savanović, Rajko",
year = "2021",
abstract = "Imperial hegemony established by the Habsburg Monarchy relied upon proper mapping during its conquests. The need for the development of geodesy and establishing reference frames was important. Until the end of the First World War, Vojvodina belonged to the Austrian-Hungarian Empire, so all of its surveys were carried out as part of many organized land surveys in the Monarchy. Today, more than 100 years after Vojvodina became the Autonomous Province of Serbia, the network developed by the Monarchy and cadastral plans from that period are still in use. In this paper, in addition to a historical overview of military and cadastral surveys in Vojvodina, we will show data that have historical significance and are available on the Internet and in historical archives. We will also emphasize how the maps available in historical archives of the neighbouring countries could have been used to set up Serbian national spatial data infrastructure.",
journal = "Survey Review",
title = "History of geodetic works in Vojvodina (Northern Serbia) and use of old maps in Serbian national spatial data infrastructure",
doi = "10.1080/00396265.2021.1886546"
}
Naod, S., Odalović, O., Brajović, L.,& Savanović, R.. (2021). History of geodetic works in Vojvodina (Northern Serbia) and use of old maps in Serbian national spatial data infrastructure. in Survey Review.
https://doi.org/10.1080/00396265.2021.1886546
Naod S, Odalović O, Brajović L, Savanović R. History of geodetic works in Vojvodina (Northern Serbia) and use of old maps in Serbian national spatial data infrastructure. in Survey Review. 2021;.
doi:10.1080/00396265.2021.1886546 .
Naod, Sofija, Odalović, Oleg, Brajović, Ljiljana, Savanović, Rajko, "History of geodetic works in Vojvodina (Northern Serbia) and use of old maps in Serbian national spatial data infrastructure" in Survey Review (2021),
https://doi.org/10.1080/00396265.2021.1886546 . .
1

New Bouguer Anomaly Map for the Territory of the Slovenia

Medved, Klemen; Odalović, Oleg; Koler, Božo

(2021)

TY  - JOUR
AU  - Medved, Klemen
AU  - Odalović, Oleg
AU  - Koler, Božo
PY  - 2021
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2423
AB  - The existing Bouguer anomaly map, which covers the territory of the Republic of Slovenia
is a few decades old. Since then, quite a few new gravimetric measurements (data) for the territory of Slovenia as well as high quality digital terrain models that are needed for creating such a map have been made available. The methodology and standards for creating gravity anomaly maps are also changing. Thus, the national Bouguer anomaly map was updated. There were some gross errors detected in the set of old gravimetric data. Additionally, the influence of new updated gravimetric data was analyzed. The comparison of the various maps and the analysis of the influence of input gravimetric data indicates that the new gravimetric data of Slovenia has a significant influence on the creation of the gravimetric anomaly maps for Slovenia (even over 30 mGals at some points).
T2  - REMOTE SENSING
T1  - New Bouguer Anomaly Map for the Territory of the Slovenia
VL  - 13(22):4510
DO  - 10.3390/rs13224510
ER  - 
@article{
author = "Medved, Klemen and Odalović, Oleg and Koler, Božo",
year = "2021",
abstract = "The existing Bouguer anomaly map, which covers the territory of the Republic of Slovenia
is a few decades old. Since then, quite a few new gravimetric measurements (data) for the territory of Slovenia as well as high quality digital terrain models that are needed for creating such a map have been made available. The methodology and standards for creating gravity anomaly maps are also changing. Thus, the national Bouguer anomaly map was updated. There were some gross errors detected in the set of old gravimetric data. Additionally, the influence of new updated gravimetric data was analyzed. The comparison of the various maps and the analysis of the influence of input gravimetric data indicates that the new gravimetric data of Slovenia has a significant influence on the creation of the gravimetric anomaly maps for Slovenia (even over 30 mGals at some points).",
journal = "REMOTE SENSING",
title = "New Bouguer Anomaly Map for the Territory of the Slovenia",
volume = "13(22):4510",
doi = "10.3390/rs13224510"
}
Medved, K., Odalović, O.,& Koler, B.. (2021). New Bouguer Anomaly Map for the Territory of the Slovenia. in REMOTE SENSING, 13(22):4510.
https://doi.org/10.3390/rs13224510
Medved K, Odalović O, Koler B. New Bouguer Anomaly Map for the Territory of the Slovenia. in REMOTE SENSING. 2021;13(22):4510.
doi:10.3390/rs13224510 .
Medved, Klemen, Odalović, Oleg, Koler, Božo, "New Bouguer Anomaly Map for the Territory of the Slovenia" in REMOTE SENSING, 13(22):4510 (2021),
https://doi.org/10.3390/rs13224510 . .

Horizontal coordinates transformation and residuals modelling on the territory of the Republic of Srpska

Vasiljević, Slavko; Vasić, Dejan; Odalović, Oleg; Blagojević, Dragan; Milovanović, Branko

(Taylor & Francis, 2020)

TY  - JOUR
AU  - Vasiljević, Slavko
AU  - Vasić, Dejan
AU  - Odalović, Oleg
AU  - Blagojević, Dragan
AU  - Milovanović, Branko
PY  - 2020
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2005
AB  - The paper describes the optimal model for coordinate transformation between ETRS89 and old national reference system in the Republic of Srpska. The Helmert`s parameters were estimated, based on a set of 1 741 common points. The average magnitude of residuals was 0.3 m per coordinate and the residual vectors were homogeneous at the local level. The basic model was complemented by a corrections grid that uses bilinear interpolation. The accuracy of the transformed horizontal positions obtained by this model is about 10 cm. In this way, a link between the ETRS89 and local reference system has been established on the overall territory of the Republic of Srpska.
PB  - Taylor & Francis
T2  - Survey Review
T1  - Horizontal coordinates transformation and residuals modelling on the territory of the Republic of Srpska
DO  - 10.1080/00396265.2020.1781357
ER  - 
@article{
author = "Vasiljević, Slavko and Vasić, Dejan and Odalović, Oleg and Blagojević, Dragan and Milovanović, Branko",
year = "2020",
abstract = "The paper describes the optimal model for coordinate transformation between ETRS89 and old national reference system in the Republic of Srpska. The Helmert`s parameters were estimated, based on a set of 1 741 common points. The average magnitude of residuals was 0.3 m per coordinate and the residual vectors were homogeneous at the local level. The basic model was complemented by a corrections grid that uses bilinear interpolation. The accuracy of the transformed horizontal positions obtained by this model is about 10 cm. In this way, a link between the ETRS89 and local reference system has been established on the overall territory of the Republic of Srpska.",
publisher = "Taylor & Francis",
journal = "Survey Review",
title = "Horizontal coordinates transformation and residuals modelling on the territory of the Republic of Srpska",
doi = "10.1080/00396265.2020.1781357"
}
Vasiljević, S., Vasić, D., Odalović, O., Blagojević, D.,& Milovanović, B.. (2020). Horizontal coordinates transformation and residuals modelling on the territory of the Republic of Srpska. in Survey Review
Taylor & Francis..
https://doi.org/10.1080/00396265.2020.1781357
Vasiljević S, Vasić D, Odalović O, Blagojević D, Milovanović B. Horizontal coordinates transformation and residuals modelling on the territory of the Republic of Srpska. in Survey Review. 2020;.
doi:10.1080/00396265.2020.1781357 .
Vasiljević, Slavko, Vasić, Dejan, Odalović, Oleg, Blagojević, Dragan, Milovanović, Branko, "Horizontal coordinates transformation and residuals modelling on the territory of the Republic of Srpska" in Survey Review (2020),
https://doi.org/10.1080/00396265.2020.1781357 . .

Possibility to determine highly precise geoid for Egypt territory

Moamen Awad, Habib Gad; Odalović, Oleg; Naod, Sofija

(2020)

TY  - JOUR
AU  - Moamen Awad, Habib Gad
AU  - Odalović, Oleg
AU  - Naod, Sofija
PY  - 2020
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2201
AB  - This paper presents an attempt to consider whether it is
possible to determine a geoid at the centimetre level in the
territory of Egypt based on recently available global and local
gravity field data. The paper has two main objectives. Firstly,
the paper overviews previously published geoid solutions,
while the second objective investigates the performance of
the recent global geopotential models (GGM) in Egypt.
The existing geoid solutions have illustrated that there
is an insufficient distribution of data which is sampled
inconsistently. At this time, data deficiency still exists, and to
overcome it, we have selected a "data window" and applied
the Least Square Collocation (LSC) technique. The outcome
from LSC was interesting and acceptable, and we obtained
a "sample" geoid that has a standard deviation of 11 cm for
the external control points.
T2  - GEODETSKI VESTNIK
T1  - Possibility to determine highly precise geoid for Egypt territory
VL  - 64
DO  - 10.15292/geodetski-vestnik.2020.04.578-593
ER  - 
@article{
author = "Moamen Awad, Habib Gad and Odalović, Oleg and Naod, Sofija",
year = "2020",
abstract = "This paper presents an attempt to consider whether it is
possible to determine a geoid at the centimetre level in the
territory of Egypt based on recently available global and local
gravity field data. The paper has two main objectives. Firstly,
the paper overviews previously published geoid solutions,
while the second objective investigates the performance of
the recent global geopotential models (GGM) in Egypt.
The existing geoid solutions have illustrated that there
is an insufficient distribution of data which is sampled
inconsistently. At this time, data deficiency still exists, and to
overcome it, we have selected a "data window" and applied
the Least Square Collocation (LSC) technique. The outcome
from LSC was interesting and acceptable, and we obtained
a "sample" geoid that has a standard deviation of 11 cm for
the external control points.",
journal = "GEODETSKI VESTNIK",
title = "Possibility to determine highly precise geoid for Egypt territory",
volume = "64",
doi = "10.15292/geodetski-vestnik.2020.04.578-593"
}
Moamen Awad, H. G., Odalović, O.,& Naod, S.. (2020). Possibility to determine highly precise geoid for Egypt territory. in GEODETSKI VESTNIK, 64.
https://doi.org/10.15292/geodetski-vestnik.2020.04.578-593
Moamen Awad HG, Odalović O, Naod S. Possibility to determine highly precise geoid for Egypt territory. in GEODETSKI VESTNIK. 2020;64.
doi:10.15292/geodetski-vestnik.2020.04.578-593 .
Moamen Awad, Habib Gad, Odalović, Oleg, Naod, Sofija, "Possibility to determine highly precise geoid for Egypt territory" in GEODETSKI VESTNIK, 64 (2020),
https://doi.org/10.15292/geodetski-vestnik.2020.04.578-593 . .
1

Evaluation and tailoring of global geopotential models in the determination of gravity field in Serbia

Odalović, Oleg; Joksimović, Danilo; Petković, Dušan; Stanković, Marko; Grekulović, Sanja

(2020)

TY  - CONF
AU  - Odalović, Oleg
AU  - Joksimović, Danilo
AU  - Petković, Dušan
AU  - Stanković, Marko
AU  - Grekulović, Sanja
PY  - 2020
UR  - https://stepgrad.aggf.unibl.org/sr
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2006
AB  - Within this paper, we evaluated the quality of three Global Geopotential Models entitled: EGM96,
EGM2008, and GOCO05c. The models were evaluated by using 1001 terrestrial discrete values of height anomalies determined by Global Navigation Satellite Systems and normal heights, which we considered to be true values within this research. In addition to the quality evaluation, we tailored the models by using more than 80000 free air anomalies. The results obtained from the evaluation and tailoring indicate that by using the GOCO05c it is possible to determine a set of anomaly heights across Serbia, which are in agreement with terrestrial values with an average value of -7 cm, the standard deviation of ±9 cm and with the range of 44 cm.
AB  - У оквиру рада оцењен је квалитет три глобална гепотенцијална модела: EGM96, EGM2008 и GOCO05s. Квалитет модела је тестиран коришћењем 1001 условно тачних вредности
дискретних вредности аномалија висина које су претходно одређене применом (комбиновањем) Глобалних навигационих сателитских система и нормалних висина. Поред
наведеног, модели су и прилагођени територији Србије коришћењем више од 80000 аномалија слободног ваздуха. Резултати добијени из наведених одређивања указују да се
применом модела GOCO05c могу одредити аномалије висина на територији Србије које
апроксимирају терестрички одређене аномалије висина са средњом вредношћу од -7 cm,
стандардном девијацијом од ±9 cm и то у оквиру распона од 44 cm.
C3  - Међународна научна конференција ''Савремена теорија и пракса у градитељству XIV”
T1  - Evaluation and tailoring of global geopotential models in the determination of gravity field in Serbia
T1  - Оцена и тејлоровање глобалних геопотенцијалних модела при одређивању гравитационог поља на територији Србије
EP  - 90
SP  - 77
DO  - 10.7251/STP2014077O
ER  - 
@conference{
author = "Odalović, Oleg and Joksimović, Danilo and Petković, Dušan and Stanković, Marko and Grekulović, Sanja",
year = "2020",
abstract = "Within this paper, we evaluated the quality of three Global Geopotential Models entitled: EGM96,
EGM2008, and GOCO05c. The models were evaluated by using 1001 terrestrial discrete values of height anomalies determined by Global Navigation Satellite Systems and normal heights, which we considered to be true values within this research. In addition to the quality evaluation, we tailored the models by using more than 80000 free air anomalies. The results obtained from the evaluation and tailoring indicate that by using the GOCO05c it is possible to determine a set of anomaly heights across Serbia, which are in agreement with terrestrial values with an average value of -7 cm, the standard deviation of ±9 cm and with the range of 44 cm., У оквиру рада оцењен је квалитет три глобална гепотенцијална модела: EGM96, EGM2008 и GOCO05s. Квалитет модела је тестиран коришћењем 1001 условно тачних вредности
дискретних вредности аномалија висина које су претходно одређене применом (комбиновањем) Глобалних навигационих сателитских система и нормалних висина. Поред
наведеног, модели су и прилагођени територији Србије коришћењем више од 80000 аномалија слободног ваздуха. Резултати добијени из наведених одређивања указују да се
применом модела GOCO05c могу одредити аномалије висина на територији Србије које
апроксимирају терестрички одређене аномалије висина са средњом вредношћу од -7 cm,
стандардном девијацијом од ±9 cm и то у оквиру распона од 44 cm.",
journal = "Међународна научна конференција ''Савремена теорија и пракса у градитељству XIV”",
title = "Evaluation and tailoring of global geopotential models in the determination of gravity field in Serbia, Оцена и тејлоровање глобалних геопотенцијалних модела при одређивању гравитационог поља на територији Србије",
pages = "90-77",
doi = "10.7251/STP2014077O"
}
Odalović, O., Joksimović, D., Petković, D., Stanković, M.,& Grekulović, S.. (2020). Evaluation and tailoring of global geopotential models in the determination of gravity field in Serbia. in Међународна научна конференција ''Савремена теорија и пракса у градитељству XIV”, 77-90.
https://doi.org/10.7251/STP2014077O
Odalović O, Joksimović D, Petković D, Stanković M, Grekulović S. Evaluation and tailoring of global geopotential models in the determination of gravity field in Serbia. in Међународна научна конференција ''Савремена теорија и пракса у градитељству XIV”. 2020;:77-90.
doi:10.7251/STP2014077O .
Odalović, Oleg, Joksimović, Danilo, Petković, Dušan, Stanković, Marko, Grekulović, Sanja, "Evaluation and tailoring of global geopotential models in the determination of gravity field in Serbia" in Међународна научна конференција ''Савремена теорија и пракса у градитељству XIV” (2020):77-90,
https://doi.org/10.7251/STP2014077O . .

ESTIMATION OF THE DEFLECTION OF VERTICAL COMPONENTS USING PRECISE LEVELLING AND GNSS MEASUREMENTS ON HIGH PRECISION LEVELLING NETWORK OF SERBIA

Marković, Miloš; Stanković, Marko; Odalović, Oleg; Joksimović, Danilo; Petković, Dušan

(2019)

TY  - CONF
AU  - Marković, Miloš
AU  - Stanković, Marko
AU  - Odalović, Oleg
AU  - Joksimović, Danilo
AU  - Petković, Dušan
PY  - 2019
UR  - https://www.sgem.org/index.php/elibrary?view=publication&task=show&id=5478
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/1769
AB  - This paper presents the combined method of determining the deflection of vertical components ? and ? based on the precise levelling and GNSS measurements. In general, there are several methods, but the combined method simplifies data collecting and subsequent processing of results in comparison with other methods. Components determination was performed on the high precision levelling network in Serbia, by calculating undulation on each point, so as azimuth and length for each side of the network starting from reference point. The length of sides is in the range of 20 km to 300 km. A point approximately located in the middle of the network was chosen as a reference point. By applying least-squares method, the estimated values of the components were obtained. In addition to the statistical evaluation of the deflection of vertical components, the paper shows a comparison of the obtained values with the values from the global Geopotential models, which justifies using the combined method for networks of similar design.
C3  - 19th International Multidisciplinary Scientific GeoConference SGEM 2019
T1  - ESTIMATION OF THE DEFLECTION OF VERTICAL COMPONENTS USING PRECISE LEVELLING AND GNSS MEASUREMENTS ON HIGH PRECISION LEVELLING NETWORK OF SERBIA
IS  - 2.2
VL  - 19
DO  - 10.5593/sgem2019/2.2/S09.014
ER  - 
@conference{
author = "Marković, Miloš and Stanković, Marko and Odalović, Oleg and Joksimović, Danilo and Petković, Dušan",
year = "2019",
abstract = "This paper presents the combined method of determining the deflection of vertical components ? and ? based on the precise levelling and GNSS measurements. In general, there are several methods, but the combined method simplifies data collecting and subsequent processing of results in comparison with other methods. Components determination was performed on the high precision levelling network in Serbia, by calculating undulation on each point, so as azimuth and length for each side of the network starting from reference point. The length of sides is in the range of 20 km to 300 km. A point approximately located in the middle of the network was chosen as a reference point. By applying least-squares method, the estimated values of the components were obtained. In addition to the statistical evaluation of the deflection of vertical components, the paper shows a comparison of the obtained values with the values from the global Geopotential models, which justifies using the combined method for networks of similar design.",
journal = "19th International Multidisciplinary Scientific GeoConference SGEM 2019",
title = "ESTIMATION OF THE DEFLECTION OF VERTICAL COMPONENTS USING PRECISE LEVELLING AND GNSS MEASUREMENTS ON HIGH PRECISION LEVELLING NETWORK OF SERBIA",
number = "2.2",
volume = "19",
doi = "10.5593/sgem2019/2.2/S09.014"
}
Marković, M., Stanković, M., Odalović, O., Joksimović, D.,& Petković, D.. (2019). ESTIMATION OF THE DEFLECTION OF VERTICAL COMPONENTS USING PRECISE LEVELLING AND GNSS MEASUREMENTS ON HIGH PRECISION LEVELLING NETWORK OF SERBIA. in 19th International Multidisciplinary Scientific GeoConference SGEM 2019, 19(2.2).
https://doi.org/10.5593/sgem2019/2.2/S09.014
Marković M, Stanković M, Odalović O, Joksimović D, Petković D. ESTIMATION OF THE DEFLECTION OF VERTICAL COMPONENTS USING PRECISE LEVELLING AND GNSS MEASUREMENTS ON HIGH PRECISION LEVELLING NETWORK OF SERBIA. in 19th International Multidisciplinary Scientific GeoConference SGEM 2019. 2019;19(2.2).
doi:10.5593/sgem2019/2.2/S09.014 .
Marković, Miloš, Stanković, Marko, Odalović, Oleg, Joksimović, Danilo, Petković, Dušan, "ESTIMATION OF THE DEFLECTION OF VERTICAL COMPONENTS USING PRECISE LEVELLING AND GNSS MEASUREMENTS ON HIGH PRECISION LEVELLING NETWORK OF SERBIA" in 19th International Multidisciplinary Scientific GeoConference SGEM 2019, 19, no. 2.2 (2019),
https://doi.org/10.5593/sgem2019/2.2/S09.014 . .
1

Height anomalies determined by three different GOCO models

Joksimović, Danilo; Stanković, Marko; Marković, Miloš; Petković, Dušan; Odalović, Oleg

(2019)

TY  - CONF
AU  - Joksimović, Danilo
AU  - Stanković, Marko
AU  - Marković, Miloš
AU  - Petković, Dušan
AU  - Odalović, Oleg
PY  - 2019
UR  - https://www.sgem.org/index.php/elibrary-research-areas?view=publication&task=show&id=5484
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/1768
AB  - This paperwork is dedicated to the research of the quality of height anomalies derived from the Global Geopotential Models GOCO over the Serbia territory. Three different types of approaches for the same model were considered: time wise, space wise and direct approach. The quality of the mentioned models is determined by comparison with terrestrial data of height anomalies, that are relate to the second high precision leveling network of the Republic of Serbia (the period of realization of tide gauges observations for determining the vertical position of the reference surface of the height reference system of the Republic of Serbia is 1971.0 years) and European Terrestrial Reference System 1989, realization ETRF2000, epoch 2010.63. By direct comparison, it was established that all models give almost identical data on the territory of Serbia and that with the application of the model one can approximate height anomalies at the territory of Serbia with a mean value of maximum 7 cm and with a standard deviation of 20 cm. Besides of this, models are compared in their spectral domains, with each other and with the model EGM2008, by comparison their degree and error degree variances.
C3  - International Multidisciplinary Scientific GeoConference-SGEM
T1  - Height anomalies determined by three different GOCO models
IS  - 2.2
VL  - 19
DO  - 10.5593/sgem2019/2.2/S09.020
ER  - 
@conference{
author = "Joksimović, Danilo and Stanković, Marko and Marković, Miloš and Petković, Dušan and Odalović, Oleg",
year = "2019",
abstract = "This paperwork is dedicated to the research of the quality of height anomalies derived from the Global Geopotential Models GOCO over the Serbia territory. Three different types of approaches for the same model were considered: time wise, space wise and direct approach. The quality of the mentioned models is determined by comparison with terrestrial data of height anomalies, that are relate to the second high precision leveling network of the Republic of Serbia (the period of realization of tide gauges observations for determining the vertical position of the reference surface of the height reference system of the Republic of Serbia is 1971.0 years) and European Terrestrial Reference System 1989, realization ETRF2000, epoch 2010.63. By direct comparison, it was established that all models give almost identical data on the territory of Serbia and that with the application of the model one can approximate height anomalies at the territory of Serbia with a mean value of maximum 7 cm and with a standard deviation of 20 cm. Besides of this, models are compared in their spectral domains, with each other and with the model EGM2008, by comparison their degree and error degree variances.",
journal = "International Multidisciplinary Scientific GeoConference-SGEM",
title = "Height anomalies determined by three different GOCO models",
number = "2.2",
volume = "19",
doi = "10.5593/sgem2019/2.2/S09.020"
}
Joksimović, D., Stanković, M., Marković, M., Petković, D.,& Odalović, O.. (2019). Height anomalies determined by three different GOCO models. in International Multidisciplinary Scientific GeoConference-SGEM, 19(2.2).
https://doi.org/10.5593/sgem2019/2.2/S09.020
Joksimović D, Stanković M, Marković M, Petković D, Odalović O. Height anomalies determined by three different GOCO models. in International Multidisciplinary Scientific GeoConference-SGEM. 2019;19(2.2).
doi:10.5593/sgem2019/2.2/S09.020 .
Joksimović, Danilo, Stanković, Marko, Marković, Miloš, Petković, Dušan, Odalović, Oleg, "Height anomalies determined by three different GOCO models" in International Multidisciplinary Scientific GeoConference-SGEM, 19, no. 2.2 (2019),
https://doi.org/10.5593/sgem2019/2.2/S09.020 . .

GNSS and SAR Signal Delay in Perturbed Ionospheric D-Region During Solar X-Ray Flares

Nina, Aleksandra; Nico, Giovanni; Odalović, Oleg; Čadež, Vladimir M.; Todorović-Drakul, Miljana; Radovanović, Milan; Popović, Luka Č.

(IEEE (Institute of Electrical and Electronics Engineers), 2019)

TY  - JOUR
AU  - Nina, Aleksandra
AU  - Nico, Giovanni
AU  - Odalović, Oleg
AU  - Čadež, Vladimir M.
AU  - Todorović-Drakul, Miljana
AU  - Radovanović, Milan
AU  - Popović, Luka Č.
PY  - 2019
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/1760
AB  - We investigate the influence of the perturbed (by a solar X-ray flare) ionospheric D-region on the GNSS and SAR signals. We calculate a signal delay in the D-region based on the low ionospheric monitoring by very low frequency (VLF) radio waves. Results show that the ionospheric delay in the perturbed D-region can be important and, therefore, should be taken into account in modeling the ionospheric influence on the GNSS and SAR signal propagation and in calculations relevant for space geodesy. This conclusion is significant because numerous existing models ignore the
impact of this ionospheric part on the GNSS and SAR signals due to its small electron density which is true only in quiet conditions and can result in significant errors in space geodesy during intensive ionospheric disturbances.
PB  - IEEE (Institute of Electrical and Electronics Engineers)
T2  - IEEE Geoscience and Remote Sensing Letters
T1  - GNSS and SAR Signal Delay in Perturbed Ionospheric D-Region During Solar X-Ray Flares
DO  - 10.1109/LGRS.2019.2941643
ER  - 
@article{
author = "Nina, Aleksandra and Nico, Giovanni and Odalović, Oleg and Čadež, Vladimir M. and Todorović-Drakul, Miljana and Radovanović, Milan and Popović, Luka Č.",
year = "2019",
abstract = "We investigate the influence of the perturbed (by a solar X-ray flare) ionospheric D-region on the GNSS and SAR signals. We calculate a signal delay in the D-region based on the low ionospheric monitoring by very low frequency (VLF) radio waves. Results show that the ionospheric delay in the perturbed D-region can be important and, therefore, should be taken into account in modeling the ionospheric influence on the GNSS and SAR signal propagation and in calculations relevant for space geodesy. This conclusion is significant because numerous existing models ignore the
impact of this ionospheric part on the GNSS and SAR signals due to its small electron density which is true only in quiet conditions and can result in significant errors in space geodesy during intensive ionospheric disturbances.",
publisher = "IEEE (Institute of Electrical and Electronics Engineers)",
journal = "IEEE Geoscience and Remote Sensing Letters",
title = "GNSS and SAR Signal Delay in Perturbed Ionospheric D-Region During Solar X-Ray Flares",
doi = "10.1109/LGRS.2019.2941643"
}
Nina, A., Nico, G., Odalović, O., Čadež, V. M., Todorović-Drakul, M., Radovanović, M.,& Popović, L. Č.. (2019). GNSS and SAR Signal Delay in Perturbed Ionospheric D-Region During Solar X-Ray Flares. in IEEE Geoscience and Remote Sensing Letters
IEEE (Institute of Electrical and Electronics Engineers)..
https://doi.org/10.1109/LGRS.2019.2941643
Nina A, Nico G, Odalović O, Čadež VM, Todorović-Drakul M, Radovanović M, Popović LČ. GNSS and SAR Signal Delay in Perturbed Ionospheric D-Region During Solar X-Ray Flares. in IEEE Geoscience and Remote Sensing Letters. 2019;.
doi:10.1109/LGRS.2019.2941643 .
Nina, Aleksandra, Nico, Giovanni, Odalović, Oleg, Čadež, Vladimir M., Todorović-Drakul, Miljana, Radovanović, Milan, Popović, Luka Č., "GNSS and SAR Signal Delay in Perturbed Ionospheric D-Region During Solar X-Ray Flares" in IEEE Geoscience and Remote Sensing Letters (2019),
https://doi.org/10.1109/LGRS.2019.2941643 . .
14
10
15

Modelling extreme values of the total electron content: Case study of Serbia

Todorović-Drakul, Miljana; Samardžić-Petrović, Mileva; Grekulović, Sanja; Odalović, Oleg; Blagojević, Dragan

(Geofizicki Zavod, 2018)

TY  - JOUR
AU  - Todorović-Drakul, Miljana
AU  - Samardžić-Petrović, Mileva
AU  - Grekulović, Sanja
AU  - Odalović, Oleg
AU  - Blagojević, Dragan
PY  - 2018
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/955
AB  - This paper is dedicated to modeling extreme TEC (Total Electron Content) values at the territory of Serbia. For the extreme TEC values, we consider the maximum values from the peak of the 11-year cycle of solar activity in the years 2013, 2014 and 2015 for the days of the winter and summer solstice and autumnal and vernal equinox. The average TEC values between 10 and 12 UT (Universal Time) were treated. As the basic data for all processing, we used GNSS (Global Navigation Satellite System) observation obtained by three permanent stations located in the territory of Serbia. Those data, we accept as actual, i. e. as a "true TEC values". The main objectives of this research were to examine the possibility to use two machine learning techniques: neural networks and support vector machine. In order to emphasize the quality of applied techniques, all results are adequately compared to the TEC values obtained by using International Reference Ionosphere global model. In addition, we separately analyzed the quality of techniques throughout temporal and spatial-temporal approach.
PB  - Geofizicki Zavod
T2  - Geofizika
T1  - Modelling extreme values of the total electron content: Case study of Serbia
EP  - 314
IS  - 2
SP  - 297
VL  - 34
DO  - 10.15233/gfz.2017.34.12
ER  - 
@article{
author = "Todorović-Drakul, Miljana and Samardžić-Petrović, Mileva and Grekulović, Sanja and Odalović, Oleg and Blagojević, Dragan",
year = "2018",
abstract = "This paper is dedicated to modeling extreme TEC (Total Electron Content) values at the territory of Serbia. For the extreme TEC values, we consider the maximum values from the peak of the 11-year cycle of solar activity in the years 2013, 2014 and 2015 for the days of the winter and summer solstice and autumnal and vernal equinox. The average TEC values between 10 and 12 UT (Universal Time) were treated. As the basic data for all processing, we used GNSS (Global Navigation Satellite System) observation obtained by three permanent stations located in the territory of Serbia. Those data, we accept as actual, i. e. as a "true TEC values". The main objectives of this research were to examine the possibility to use two machine learning techniques: neural networks and support vector machine. In order to emphasize the quality of applied techniques, all results are adequately compared to the TEC values obtained by using International Reference Ionosphere global model. In addition, we separately analyzed the quality of techniques throughout temporal and spatial-temporal approach.",
publisher = "Geofizicki Zavod",
journal = "Geofizika",
title = "Modelling extreme values of the total electron content: Case study of Serbia",
pages = "314-297",
number = "2",
volume = "34",
doi = "10.15233/gfz.2017.34.12"
}
Todorović-Drakul, M., Samardžić-Petrović, M., Grekulović, S., Odalović, O.,& Blagojević, D.. (2018). Modelling extreme values of the total electron content: Case study of Serbia. in Geofizika
Geofizicki Zavod., 34(2), 297-314.
https://doi.org/10.15233/gfz.2017.34.12
Todorović-Drakul M, Samardžić-Petrović M, Grekulović S, Odalović O, Blagojević D. Modelling extreme values of the total electron content: Case study of Serbia. in Geofizika. 2018;34(2):297-314.
doi:10.15233/gfz.2017.34.12 .
Todorović-Drakul, Miljana, Samardžić-Petrović, Mileva, Grekulović, Sanja, Odalović, Oleg, Blagojević, Dragan, "Modelling extreme values of the total electron content: Case study of Serbia" in Geofizika, 34, no. 2 (2018):297-314,
https://doi.org/10.15233/gfz.2017.34.12 . .
1
1

Chronology of the development of geodetic reference networks in Serbia

Odalović, Oleg; Todorović-Drakul, Miljana; Grekulović, Sanja; Popović, Jovan; Joksimović, Danilo

(Taylor and Francis Ltd., 2018)

TY  - JOUR
AU  - Odalović, Oleg
AU  - Todorović-Drakul, Miljana
AU  - Grekulović, Sanja
AU  - Popović, Jovan
AU  - Joksimović, Danilo
PY  - 2018
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/930
AB  - In this paper, the development of geodetic reference networks in Serbia is shown. This historical summary covers the time from the first organised work in 1855 until today. Special attention has been paid to the establishment of the modern network using Global Navigation Satellite Systems (GNSS). Within the networks established by GNSS, two last realised networks are especially distinguished. The first one is a classic spatial reference network SREF (Serbian Reference Frame) established in 2003, and the second one is a permanent stations network - AGROS (Active Geodetic Reference Network of Serbia) realised in 2006.
PB  - Taylor and Francis Ltd.
T2  - Survey Review
T1  - Chronology of the development of geodetic reference networks in Serbia
EP  - 173
IS  - 359
SP  - 163
VL  - 50
DO  - 10.1080/00396265.2016.1249998
ER  - 
@article{
author = "Odalović, Oleg and Todorović-Drakul, Miljana and Grekulović, Sanja and Popović, Jovan and Joksimović, Danilo",
year = "2018",
abstract = "In this paper, the development of geodetic reference networks in Serbia is shown. This historical summary covers the time from the first organised work in 1855 until today. Special attention has been paid to the establishment of the modern network using Global Navigation Satellite Systems (GNSS). Within the networks established by GNSS, two last realised networks are especially distinguished. The first one is a classic spatial reference network SREF (Serbian Reference Frame) established in 2003, and the second one is a permanent stations network - AGROS (Active Geodetic Reference Network of Serbia) realised in 2006.",
publisher = "Taylor and Francis Ltd.",
journal = "Survey Review",
title = "Chronology of the development of geodetic reference networks in Serbia",
pages = "173-163",
number = "359",
volume = "50",
doi = "10.1080/00396265.2016.1249998"
}
Odalović, O., Todorović-Drakul, M., Grekulović, S., Popović, J.,& Joksimović, D.. (2018). Chronology of the development of geodetic reference networks in Serbia. in Survey Review
Taylor and Francis Ltd.., 50(359), 163-173.
https://doi.org/10.1080/00396265.2016.1249998
Odalović O, Todorović-Drakul M, Grekulović S, Popović J, Joksimović D. Chronology of the development of geodetic reference networks in Serbia. in Survey Review. 2018;50(359):163-173.
doi:10.1080/00396265.2016.1249998 .
Odalović, Oleg, Todorović-Drakul, Miljana, Grekulović, Sanja, Popović, Jovan, Joksimović, Danilo, "Chronology of the development of geodetic reference networks in Serbia" in Survey Review, 50, no. 359 (2018):163-173,
https://doi.org/10.1080/00396265.2016.1249998 . .
3
3
3

Terrain correction computations using digital density model of topographic masses

Odalović, Oleg; Grekulović, Sanja; Starcević, Miroslav; Nikolić, Dobrica; Todorović-Drakul, Miljana; Joksimović, Danilo

(Zvava Geodetov Slovenije, 2018)

TY  - JOUR
AU  - Odalović, Oleg
AU  - Grekulović, Sanja
AU  - Starcević, Miroslav
AU  - Nikolić, Dobrica
AU  - Todorović-Drakul, Miljana
AU  - Joksimović, Danilo
PY  - 2018
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/961
AB  - This paper presents the determination of terrain correction by the means of the Digital Density Model (DDM) of topographic masses (Earth's crust mass above the geoid) for the territory of Serbia. The DDM is determined using the Digital Terrain Model (DTM) with the resolution of 30 m, basic geological map of Serbia, and a set of hypotheses on the density of the Earth's crust masses. The assumption that the general lithosphere density over the territory of Serbia ranges between 2200 kg/m(3) and 2800 kg/m(3) was adopted. Terrain correction is determined at 5765 points, with relatively uniform distribution over the territory of Serbia. The calculations had also included comparing the values obtained therein to the terrain corrections obtained when accepting the hypothesis of constant lithosphere density of 2670 kg/m(3) . Results of comparison highlight that the differences of terrain correction values ranging from -1.31 mGal to 0.73 mGal, along with 98 % of differences falling within the range of +/- 0.2 mGal.
PB  - Zvava Geodetov Slovenije
T2  - Geodetski vestnik
T1  - Terrain correction computations using digital density model of topographic masses
EP  - 97
IS  - 1
SP  - 79
VL  - 62
DO  - 10.15292/geodetski-vestnik.2018.01.79-97
ER  - 
@article{
author = "Odalović, Oleg and Grekulović, Sanja and Starcević, Miroslav and Nikolić, Dobrica and Todorović-Drakul, Miljana and Joksimović, Danilo",
year = "2018",
abstract = "This paper presents the determination of terrain correction by the means of the Digital Density Model (DDM) of topographic masses (Earth's crust mass above the geoid) for the territory of Serbia. The DDM is determined using the Digital Terrain Model (DTM) with the resolution of 30 m, basic geological map of Serbia, and a set of hypotheses on the density of the Earth's crust masses. The assumption that the general lithosphere density over the territory of Serbia ranges between 2200 kg/m(3) and 2800 kg/m(3) was adopted. Terrain correction is determined at 5765 points, with relatively uniform distribution over the territory of Serbia. The calculations had also included comparing the values obtained therein to the terrain corrections obtained when accepting the hypothesis of constant lithosphere density of 2670 kg/m(3) . Results of comparison highlight that the differences of terrain correction values ranging from -1.31 mGal to 0.73 mGal, along with 98 % of differences falling within the range of +/- 0.2 mGal.",
publisher = "Zvava Geodetov Slovenije",
journal = "Geodetski vestnik",
title = "Terrain correction computations using digital density model of topographic masses",
pages = "97-79",
number = "1",
volume = "62",
doi = "10.15292/geodetski-vestnik.2018.01.79-97"
}
Odalović, O., Grekulović, S., Starcević, M., Nikolić, D., Todorović-Drakul, M.,& Joksimović, D.. (2018). Terrain correction computations using digital density model of topographic masses. in Geodetski vestnik
Zvava Geodetov Slovenije., 62(1), 79-97.
https://doi.org/10.15292/geodetski-vestnik.2018.01.79-97
Odalović O, Grekulović S, Starcević M, Nikolić D, Todorović-Drakul M, Joksimović D. Terrain correction computations using digital density model of topographic masses. in Geodetski vestnik. 2018;62(1):79-97.
doi:10.15292/geodetski-vestnik.2018.01.79-97 .
Odalović, Oleg, Grekulović, Sanja, Starcević, Miroslav, Nikolić, Dobrica, Todorović-Drakul, Miljana, Joksimović, Danilo, "Terrain correction computations using digital density model of topographic masses" in Geodetski vestnik, 62, no. 1 (2018):79-97,
https://doi.org/10.15292/geodetski-vestnik.2018.01.79-97 . .

Determination of deflection of the vertical components by using global geopotential model EGM2008

Odalović, Oleg; Stanković, Marko D.; Grekulović, Sanja; Joksimović, Danilo; Todorović-Drakul, Miljana

(Savez inženjera i tehničara Srbije, Beograd, 2018)

TY  - JOUR
AU  - Odalović, Oleg
AU  - Stanković, Marko D.
AU  - Grekulović, Sanja
AU  - Joksimović, Danilo
AU  - Todorović-Drakul, Miljana
PY  - 2018
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/924
AB  - This paper presents the determination of the vertical deflection components using the Global Geopotential Model EGM2008. The components are defined in two groups of points: 4083 points are relatively correctly distributed across the territory of Serbia and 46 Laplas and geoid points defined in Serbia in the past century, from the set of institutions. All presented determinations in this paper are related to the Geodetic Reference System 1980 (GRS80), with the coordinates of all the points used to refer to the International Terrestrial Frame 1996 (ITRF96). Analysis of the results of the determination showed that the EGM2008 can be used to approximate the astrogeodetic determination with the agreement of several arc seconds.
AB  - U okviru rada prikazano je određivanje komponenti odstupanja vertikala primenom Globalnog geopotencijalnog modela EGM2008 (Earth Gravitational Model 2008). Komponente su određene u dve grupe tačaka: 4083 tačke relativno pravilno raspoređene po teritoriji Srbije i 46 Laplasovih i geoidnih tačaka koje su određene u Srbiji u prošlom veku, od stane niza institucija. Sva prikazana određivanja u okviru rada odnose se na Geodetski referentni sistem 1980 (Geodetic Reference System 1980 - GRS80), pri čemu se koordinate svih korišćenih tačaka odnose na Međunarodni referentni okvir za epohu 1996 (International Terestrial Frame 1996 - ITRF96). Analizom rezultata određivanja pokazano je da se EGM2008 može koristiti za aproksimaciju astrogeodetskih određivanja sa saglasnošću od nekoliko lučnih sekundi.
PB  - Savez inženjera i tehničara Srbije, Beograd
T2  - Tehnika
T1  - Determination of deflection of the vertical components by using global geopotential model EGM2008
T1  - Određivanje komponenti odstupanja vertikale primenom globalnog geopotencijalnog modela EGM2008
EP  - 338
IS  - 3
SP  - 333
VL  - 73
DO  - 10.5937/tehnika1803333O
ER  - 
@article{
author = "Odalović, Oleg and Stanković, Marko D. and Grekulović, Sanja and Joksimović, Danilo and Todorović-Drakul, Miljana",
year = "2018",
abstract = "This paper presents the determination of the vertical deflection components using the Global Geopotential Model EGM2008. The components are defined in two groups of points: 4083 points are relatively correctly distributed across the territory of Serbia and 46 Laplas and geoid points defined in Serbia in the past century, from the set of institutions. All presented determinations in this paper are related to the Geodetic Reference System 1980 (GRS80), with the coordinates of all the points used to refer to the International Terrestrial Frame 1996 (ITRF96). Analysis of the results of the determination showed that the EGM2008 can be used to approximate the astrogeodetic determination with the agreement of several arc seconds., U okviru rada prikazano je određivanje komponenti odstupanja vertikala primenom Globalnog geopotencijalnog modela EGM2008 (Earth Gravitational Model 2008). Komponente su određene u dve grupe tačaka: 4083 tačke relativno pravilno raspoređene po teritoriji Srbije i 46 Laplasovih i geoidnih tačaka koje su određene u Srbiji u prošlom veku, od stane niza institucija. Sva prikazana određivanja u okviru rada odnose se na Geodetski referentni sistem 1980 (Geodetic Reference System 1980 - GRS80), pri čemu se koordinate svih korišćenih tačaka odnose na Međunarodni referentni okvir za epohu 1996 (International Terestrial Frame 1996 - ITRF96). Analizom rezultata određivanja pokazano je da se EGM2008 može koristiti za aproksimaciju astrogeodetskih određivanja sa saglasnošću od nekoliko lučnih sekundi.",
publisher = "Savez inženjera i tehničara Srbije, Beograd",
journal = "Tehnika",
title = "Determination of deflection of the vertical components by using global geopotential model EGM2008, Određivanje komponenti odstupanja vertikale primenom globalnog geopotencijalnog modela EGM2008",
pages = "338-333",
number = "3",
volume = "73",
doi = "10.5937/tehnika1803333O"
}
Odalović, O., Stanković, M. D., Grekulović, S., Joksimović, D.,& Todorović-Drakul, M.. (2018). Determination of deflection of the vertical components by using global geopotential model EGM2008. in Tehnika
Savez inženjera i tehničara Srbije, Beograd., 73(3), 333-338.
https://doi.org/10.5937/tehnika1803333O
Odalović O, Stanković MD, Grekulović S, Joksimović D, Todorović-Drakul M. Determination of deflection of the vertical components by using global geopotential model EGM2008. in Tehnika. 2018;73(3):333-338.
doi:10.5937/tehnika1803333O .
Odalović, Oleg, Stanković, Marko D., Grekulović, Sanja, Joksimović, Danilo, Todorović-Drakul, Miljana, "Determination of deflection of the vertical components by using global geopotential model EGM2008" in Tehnika, 73, no. 3 (2018):333-338,
https://doi.org/10.5937/tehnika1803333O . .

Глобални геопотенцијални модели

Odalović, Oleg; Grekulović, Sanja; Vasiljević, Ivana

(2018)

TY  - GEN
AU  - Odalović, Oleg
AU  - Grekulović, Sanja
AU  - Vasiljević, Ivana
PY  - 2018
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2405
AB  - Уџбеник садржи 9 поглавља при чему jе прво поглавље посвећено основама теориjе физичке геодезиjе и то онаj део коjи се односи на сфернохармониjски развоj реалног и нормалног потенциjала Земљине теже и теже Нормалне Земље, респективно. Од другог до петог поглавља детаљно jе описан начин примене глобалних модела при одређивању аномалиjа убрзања, аномалиjа висина, поремећаjног убрзања и компоненти одступањавертикале. Посебнапажњауоквируовихпоглављапосвећенаjеизначењуи значаjу резолуциjе глобалних модела. У шестом и седмом поглављу приказани су само неки од напредних аспеката коришћења глобалних модела и начини процене њиховог квалитета као што су: вариjансе степена глобалних модела, грешке вариjанси степена глобалних модела, алтернативни начини примене глобалних модела путем самих дефинициjа функционала аномалиjског потенциjала. У осмом поглављу дате су теориjске поставке и илустративни пример прилагођавања глобалног модела, сагласно терестричким подацима коjи су на располагању. Девето поглавље у потпуности jе посвећено поступку комбиновања глобалних геопотенциjланих модела у прецесу одређивања квазигеоида или геоида центиметраске тачности, а посебна пажња посвећена jе remove-restore методи.
T1  - Глобални геопотенцијални модели
EP  - 86
UR  - https://hdl.handle.net/21.15107/rcub_grafar_2405
ER  - 
@misc{
author = "Odalović, Oleg and Grekulović, Sanja and Vasiljević, Ivana",
year = "2018",
abstract = "Уџбеник садржи 9 поглавља при чему jе прво поглавље посвећено основама теориjе физичке геодезиjе и то онаj део коjи се односи на сфернохармониjски развоj реалног и нормалног потенциjала Земљине теже и теже Нормалне Земље, респективно. Од другог до петог поглавља детаљно jе описан начин примене глобалних модела при одређивању аномалиjа убрзања, аномалиjа висина, поремећаjног убрзања и компоненти одступањавертикале. Посебнапажњауоквируовихпоглављапосвећенаjеизначењуи значаjу резолуциjе глобалних модела. У шестом и седмом поглављу приказани су само неки од напредних аспеката коришћења глобалних модела и начини процене њиховог квалитета као што су: вариjансе степена глобалних модела, грешке вариjанси степена глобалних модела, алтернативни начини примене глобалних модела путем самих дефинициjа функционала аномалиjског потенциjала. У осмом поглављу дате су теориjске поставке и илустративни пример прилагођавања глобалног модела, сагласно терестричким подацима коjи су на располагању. Девето поглавље у потпуности jе посвећено поступку комбиновања глобалних геопотенциjланих модела у прецесу одређивања квазигеоида или геоида центиметраске тачности, а посебна пажња посвећена jе remove-restore методи.",
title = "Глобални геопотенцијални модели",
pages = "86",
url = "https://hdl.handle.net/21.15107/rcub_grafar_2405"
}
Odalović, O., Grekulović, S.,& Vasiljević, I.. (2018). Глобални геопотенцијални модели. .
https://hdl.handle.net/21.15107/rcub_grafar_2405
Odalović O, Grekulović S, Vasiljević I. Глобални геопотенцијални модели. 2018;:null-86.
https://hdl.handle.net/21.15107/rcub_grafar_2405 .
Odalović, Oleg, Grekulović, Sanja, Vasiljević, Ivana, "Глобални геопотенцијални модели" (2018),
https://hdl.handle.net/21.15107/rcub_grafar_2405 .