Kurs-Code BūvZB005
Kreditpunkte 5
Stundenzahl insgesamt (im Auditorium)120
Vorlesungen (Stundenzahl)28
Stundenzahl fŅr Seminare und praktische Arbeitsaufträge0
Arbeit im Labor (Stundenzahl)28
Selbststandige Arbeit des Studenten (Stunden)79
Bestätigt am (Datum)14.11.2023
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