Books and Papers
Schierbaum, A.; Neiß-Theuerkauff, T.; Wallhoff, F.; Sieberth, T.; Luhmann, T. (2024):
Untersuchungen zu einem KI-basierten SLAM-Verfahren für ein trinokulares Kamerasystem zur 3D-Erfassung der Knieoberfläche. Luhmann/Sieberth (Hrsg.): Photogrammetrie-Laserscanning-Optische 3D-Messtechnik, Wichmann Verlag, Berlin/Offenbach, S. 252-261.
Werner, T.; Ahlers, J.; Brinkhoff, T. (2023):
About privacy on smart tachographs: Reconstructing car-driven routes based on speed measurements. In: Proceedings of the 1st ACM SIGSPATIAL International Workshop on Geo-Privacy and Data Utility for Smart Societies (GeoPrivacy '23). Association for Computing Machinery, New York, NY, USA, 14–19.
, doi: 10.1145/3615889.3628511 , Weblink
Lesnyak, Ekaterina; Belkot, T.; Hurka, Johannes; Hörding, Jan Philipp; Kuhlmann, Lea; Paulau, P.; Schnabel, M.; Schönfeldt, Patrik; Middelberg, Jan (2023):
Applied Digital Twin Concepts Contributing to Heat Transition in Building, Campus, Neighborhood, and Urban Scale. Big Data and Cognitive Computing
, doi: https://doi.org/10.3390/bdcc7030145
Presentations
Luhmann, T.
:
Calibration techniques and accuracy considerations for single and multi-camera systems.
Tutorial, ISPRS Symposium Commisson 2, Riva del Garda,
Juni 2018
Conen, N. :
Improving Image Matching by Reducing Surface Reflections using Polarising Filter Techniques.
ISPRS Technical Commission II Symposium, Riva del Garda, Italy, June 2018,
Juni 2018
Knies, J. :
Strategic heat planning: A spatial approach for urban areas.
ICREN 2018 INTERNATIONAL CONFERENCE ON RENEWABLE ENERGY,
April 2018
doi: 10.13140/RG.2.2.34712.85763
Hastedt, H.
:
Monitoring concept for deformation estimation of the Bremen Cog.
Computer Application in Archeology (CAA) 2018,
März 2018
Projects
The project focusses on the conception and implementation of the geometric monitoring of the Bremen Cog (appr. 25m x 8m x 8m). The Bremen Cog is the best preserved medieval merchant ship in the world. A large-volume optical 3D-measurement con...
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This interdisciplinary project aims to develop autonomous underwater and surface vehicles. One subproject focusses on the development of calibration procedures and algorithms for the special challenges of underwater photogrammetry. Another subproject...
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Dieses Forschungsvorhaben befasst sich mit der Entwicklung eines kompakten Prototyps zur hochgenauen berührungslosen 3D-Oberflächenvermessung unter Wasser durch den Einsatz optischer 3D-Messverfahren.
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