@ARTICLE{Weiss_Gabriel_Establishment_2022, author={Weiss, Gabriel and Labant, Slavomir and Gasinec, Juraj and Stankova, Hana and Cernota, Pavel and Weiss, Erik and Weiss, Roland}, volume={vol. 71}, number={No 1}, pages={e15}, journal={Advances in Geodesy and Geoinformation}, howpublished={online}, year={2022}, publisher={Commitee on Geodesy PAS}, abstract={Slope deformations, i.e., all types of landslides of rock masses (flow, creep, fall down, etc.), caused by gravitational forces, are the most widespread implementation of geological hazards and a negative geomorphological phenomenon that threatens the security of the population, destroy all utility values of the affected regions, negatively affects the environment, and cause considerable economic damage. Nowadays, the Global Navigation Satellite Systems (GNSS) provide accurate data for precise observations around the world due to the growing number of satellites from multiple operators, as well as more powerful and advanced technologies and the implementation of mathematical and physical models more accurately describing systematic errors that degrade GNSS observations such as ionospheric, tropospheric, and relativistic effects or multipath. The correct combination of measurement methods provides even more precise, i.e., better measurement results or estimates of unknown parameters. The combination of measurement procedures and their significant evaluations represent the essential attribute of deformation monitoring of landslides concerning the protection of the environment and the population’s safety in the interest areas for the sustainable development of human society. This article presents the establishment and use of a local geodetic network in particular local space for various needs. Depending upon the specific conditions, it is possible to use GNSS technology to obtain accurate observations and achieve the results applicable to the deformation survey for subsequent processing of the adjustment procedure.}, type={Article}, title={Establishment of local geodetic networks based on least-squares adjustments of GNSS baseline vectors}, URL={http://czasopisma.pan.pl/Content/123256/PDF/e15.pdf}, doi={10.24425/gac.2022.141168}, keywords={GNSS measurements, local geodetic networks, LSM adjustments, confidence ellipsoid}, }