УДК 528.2

DOI: https://doi.org/10.36887/2415-8453-2025-2-77

Lukianchenko Iurii Oleksandrovych,
PhD in Technical Science, lecturer of Economic Expertise and Land Management Department,
West Ukrainian National University
https://orcid.org/0009-0005-9203-4316
Yazlyuk Borys,
Doct. of Sc. in Economics, Professor, Head of the Department of Economic Expertise and Land,
West Ukrainian National University
https://orcid.org/0000-0002-2078-0644
Gumennyi Mykhailo Ivanovych,
PhD in Economic Science, lecturer of Economic Expertise and Land Management Department,
West Ukrainian National University
https://orcid.org/0000-0002-6704-9656
Lopushanskyi Oleksandr,
PhD in Technical Science Associate Professor of Economic Expertise and Land Management Department,
West Ukrainian National University
https://orcid.org/0009-0000-9363-2979
Kryvoshlyk Viktoriya Andriyivna,
bachelor, student of Economic Expertise and Land Management Department
West Ukrainian National University


Geodetic measurements are an integral part of many modern processes, ranging from high-precision engineering projects to the everyday geolocation of photographs. Among the various types of geodetic measurements, those provided by Global Navigation Satellite Systems (GNSS) deserve particular attention. These measurements enable the calculation of the spatial coordinates of the point at which the observations were performed. Typically, the resulting coordinates can be expressed either in geodetic form (latitude, longitude, ellipsoidal height — B, L, H) or in Cartesian form (X, Y, Z). Both types of coordinates are interchangeable and can be converted between each other, provided the parameters of the reference ellipsoid are known. This study focuses on the processing of static GNSS measurements, which play a crucial role in many high-accuracy geodetic applications. For example, such tasks include structural monitoring of engineering facilities such as dams or nuclear power plants. The article presents an accessible method for processing static GNSS measurements that can be effectively integrated into educational curricula. This significantly enhances students’ understanding of working with GNSS receivers. Furthermore, the skills and experience gained from this practice are highly valuable and in demand on the job market, as most modern geospatial tasks require the use of GNSS observations. Additionally, the article describes how to obtain educational GNSS observation data in RINEX format from permanent stations via the website of the European Permanent GNSS Network (EPN).

Keywords: GNSS measurements, static observations, Trimble Business Center, EUREF.

Rеferences.

  1. Bruyninx, C., Legrand, J., Fabian, A., & Pottiaux, E. (2019). GNSS metadata and data validation in the EUREF Permanent Network. GPS Solutions, 23, no.106. DOI: https://doi.org/10.1007/s10291-019-0880-9.
  2. Dach, R., Lutz, S., Walser, P., & Fridez, P. (Eds.). (2015). Bernese GNSS Software Version 5.2. User manual. Astronomical Institute, University of Bern, Bern Open Publishing. DOI: https://doi.org/10.7892/boris.72297.
  3. GAMIT/GLOBK [online]. Available at: http://www-gpsg.mit.edu/gg/.
  4. GipsyX [online]. Available at: https://gipsy-oasis.jpl.nasa.gov/index.php?page=home.
  5. Hofmann-Wellenhof, B., Lichtenegger, H., & Collins, J. (2008). GNSS – Global Navigation Satellite Systems: GPS, GLONASS, Galileo and more. Wien: Springer.
  6. International GNSS Service [online]. Available at: ftp://igs.org/pub/data/format/rinex304.pdf [Accessed 01 03 2020].
  7. Johnston, G., Riddell, A., & Hausler, G. (2017). The International GNSS Service. In P. J. G. Teunissen & O. Montenbruck (Eds.), Springer Handbook of Global Navigation Satellite Systems (1st ed., pp. 967–982). Cham, Switzerland: Springer International Publishing. DOI: https://doi.org/10.1007/978-3-319-42928-1.
  8. Leica Geo Office [online]. Available at: https://leica-geosystems.com/rugbycl/archive-data/software/leica-geo-office.
  9. RINEX, The Receiver Independent Exchange Format, Version 3.03 [online]. Available at: ftp://igs.org/pub/data/format/rinex303.pdf [Accessed 01 03 2020].
  10. Trimble Business Center [online]. Available at: https://geospatial.trimble.com/en/products/software/trimble-business-center.

The article was received 20.04.2025


Quote article, APA style

Lukianchenko Iurii Oleksandrovych, Yazlyuk Borys, Gumennyi Mykhailo Ivanovych, Lopushanskyi Oleksandr, Kryvoshlyk Viktoriya Andriyivna. 20.04.2025 . Processing of static gnss measurements using trimble business center in the educational process. The journal "Ukrainian Journal of Applied Economics and Technology". 2025 / #2. 395-399pp. https://doi.org/10.36887/2415-8453-2025-2-77

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Lukianchenko Iurii Oleksandrovych, Yazlyuk Borys, Gumennyi Mykhailo Ivanovych, Lopushanskyi Oleksandr, Kryvoshlyk Viktoriya Andriyivna. "Processing of static gnss measurements using trimble business center in the educational process". The journal "Ukrainian Journal of Applied Economics and Technology". 20.04.2025 . https://doi.org/10.36887/2415-8453-2025-2-77

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