Code du cours BūvZB005
Crédits 5
La quantité totale d'heures en classe120
Nombre de conferences28
Nombre de travaux pratiques et des séminaires0
Nombre des travaux du laboratoire28
La quantitē d'heures de travail autonome d'un ētudiant79
Date de l'approbation du cours14.11.2023
BūvZ3152 [GBUV3153]
1. Konecny Geoinformation: remote sensing, photogrammetry and geographic information systems. CRC Press, 2014.
2. Kraus K. Photogrammetry: geometry from images and laser scans. Walter de Gruyter, 2011.
3. Lillesand T., Kiefer R., Chipman W. Remote sensing and image interpretation. Hoboken, NJ: Wiley & Sons, 2015.
4. J.Štrauhmanis J. Ģeomātikas pamati. , RTU, 2006.
1. Luhmann T.Robson S., Kyle S., and Boehm J. Close-range photogrammetry and 3D imaging. Berlin; Boston: Walter de Gruyter, 2013.
2. Vosselman G., Maas H.G., Airborne and terrestrial laser scanning. Dunbeath: Whittles Publishing,2010.
3. Strimbu B. Introduction to Remote Sensing and Photogrammetry. Forestry Applications. Orgon State University, College of Forestry, 2017. Pieejams: https://mars.forestry.oregonstate.edu/sites/mars/files/ForestRSP.pdf
4. Principles of Photogrammetry and Remote Sensing. Uttarakhand Open University, 2023. Pieejams: https://www.uou.ac.in/sites/default/files/slm/GEOG-504.pdf
5. Abdulateef N. A. and Khalaf Y.H. Orthophoto production from aerial photograph by using matlab and GIS. 2018, International Journal of Civil Engineering and Technology 9(9):156-164. Pieejams: https://www.researchgate.net/publication/328294557_Orthophoto_production_from_aerial_photograph_by_using_matlab_and_GIS"
1. Copernicus Open Access Hub. Pieejams: https://scihub.copernicus.eu/ (Sentinel 1-2 data);
2. The International Society for Photogrammetry and Remote Sensing. Pieejams: https://www.isprs.org
3. EuroSDR National Mapping and Cadastral Agencies with Research Institutes and Universities in Europe [tiešsaiste] Pieejams: https://www.eurosdr.net