Books and Papers
Luhmann, T. (2017):
Industriephotogrammetrie. In Sackewitz (ed.): Handbuch zur Industriellen Bildverarbeitung, 3. Aufl., Fraunhofer Verlag, Stuttgart, pp. 214-219
Eric, V.; Göring, M.; Luhmann, T. (2017):
Intensity of the terrestrial laser scanning data: incident angle and surface reflectance effects. In Luhmann/Schumacher (eds.): Photogrammetrie, Laserscanning, Optische 3D-Messtechnik – Beiträge der 16. Oldenburger 3D-Tage, Wichmann Verlag, Offenbach/Berlin, pp. 40-49
Wu, L.; Brinkhoff, T.; Hahn, A. (2017):
Modeling Spatio-Temporal Variations for the Language-Driven Development of Simulated Environment Generators. Proceedings of Workshops and Posters at the 13th International Conference on Spatial Information Theory (COSIT), L’Aquila, Italy, Lecture Notes in Geoinformation and Cartography, Springer, pp. 143-148
, doi: 10.1007/978-3-319-63946-8_28
Conen, N.; Luhmann, T. (2017):
Overview of Photogrammetric Measurement Techniques in Minimally Invasive Surgery using Endoscopes. ISPRS International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol. XLII-2/W4, pp. 33-40
, Weblink
Presentations
Brinkhoff, T.
:
Dem Mörder auf der Spur - Wie mit Methoden der Geoinformatik der Leichnam des Opfers aufgespürt wurde.
KonGeoS, Oldenburg,
Oktober 2023
Lanz, P. :
Automatic Refugee Inflatable Vessel Detection with Polarimetric SAR..
TerraSAR-X / TanDEM-X Science Team Meeting, Oberpfaffenhofen, 2023.,
Oktober 2023
Luhmann, T.
:
VRscan3D - A simulator for terrestrial laser scanning.
GEOSPACE 2023, Kiew, online,
Oktober 2023
Koch, S.
:
Geo Data Science für die Energiewende am Beispiel der Standortbewertung für Kleinwindenergieanlagen.
INTERGEO 2023, Session "Einsatz von KI für nachhaltige Anwendungen", Berlin,
Oktober 2023
Schüssler, F.
:
Planetare Grenzen.
Deutsche Aktionstage Nachhaltigkeit, Jade Hochschule, Oldenburg,
Oktober 2023
Projects
The aspect of space in future energy system
2015-2019
This university project has the aim to investigate data and design algorithms for supporting web map applications.
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The aim of the PhD project is to develop an innovative approach for detection of the dynamic states of rotor blades during operation without contact and targeting
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Bachelor & Master Theses