Books and Papers
Luhmann, T.; Sieberth, T. (2024):
Photogrammetrie - Laserscanning - Optische 3D-Messtechnik. Beiträge der Oldenburger 3D-Tage und des BIMtages 2024. Wichmann Verlag, Berlin/Offenbach, 414 S.
Moritz Elbeshausen; Karl-Kiên Cao; Jan Buschmann; Marvin Schnabel; Vogt, T.; Steinberger-Wilckens, R.; Sascha Koch (2024):
Regional Strategic Energy Planning (ReStEP). GeoDPA24 - International Conference on Geoinformation, Data, Processing and Applications
Luhmann, T.; Chizhova, M.; Popovas, D.; Gorkovchuk, D. (2024):
Simulation von mobilem und dynamischem Scanning im virtuellen Simulator VRscan3D. Luhmann/Sieberth (Hrsg.): Photogrammetrie-Laserscanning-Optische 3D-Messtechnik, Wichmann Verlag, Berlin/Offenbach, S. 304-313.
Pan, J.; Chizhova, M.; Luhmann, T.; Karami, A.; Menna, F.; Remondino, F.; Hess, M.; Eißing, T.; (2024):
Towards automatic defect analysis for 3D structural monitoring of historic timber. Int. Arch. Photogramm. Remote Sens. Spatial Inf. Sci., XLVIII-2/W4-2024, S. 103-110
, doi: https://doi.org/10.5194/isprs-archives-XLVIII-2-W4-2024-103-2024
Presentations
Luhmann, T.
:
Learning Photogrammetry with PhoX.
LowCost3D, Berlin,
Dezember 2015
Luhmann, T.
:
Measuring Accuracy in Photogrammetry - Critical factors, Optimization and Verification.
University of Geodesy and Cartography, Moscow,
Dezember 2015
Gollenstede, A.
:
Dynamic Cartographic Visualization Methods for Limited Viewports.
GISCO the Geo-Information Science Colloquium, Gesellschaft für Geoinformatik (GfGI), Bamberg,
November 2015
Lorkowski, P. :
Monitoring of Continuous Environmental Phenomena.
GISCO the Geo-Information Science Colloquium, Gesellschaft für Geoinformatik (GfGI), Bamberg,
November 2015
Luhmann, T.
:
Einführung in die 3D-Bildmesstechnik – Grundlagen der Photogrammetrie und Kalibrierung, Genauigkeit und photogrammetrische Bildverarbeitung.
Leica Geosystems, Heerbrugg,
November 2015
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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