Books and Papers
all
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2024
Albers, S.; Rofallski, R.; Hagen, P.-F.; Luhmann, T. (2024):
Procedure for the Orientation of Laser Triangulation Sensors to a Stereo Camera System for the Inline Measurement of Rubber Extrudate. ISPRS Int. Arch. Photogramm. Remote Sens. Spatial Inf. Sci., XLVIII-2-2024
, doi: https://doi.org/10.5194/isprs-archives-XLVIII-2-2024-1-2024
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
Neiß-Theuerkauff, T.; Schierbaum, A.; Luhmann, T.; Sieberth, T.; Wallhoff, F. (2024):
Semantic bone structure segmentation in 2D image data: Towards total knee arthroplasty. Artificial Intelligence XLI - 44rd SGAI International Conference on Artificial Intelligence, AI 2024, Cambridge, UK, December 17-19, 2024, Proceedings. Lecture Notes in Computer Science (LNCS), Springer
, doi: https://doi.org/10.1007/978-3-031-77915-2_29
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
Chizhova, M. :
Probabilistic reconstruction of destroyed and incomplete objects from point clouds using Bayesian networks and cellular automata.
Michigan Tech University, Houghton, USA,
September 2017
Neiß-Theuerkauff, T.
:
3D-Visualisierung von Über- und Unterwasserfahrzeugen zur Evaluation von Steuerungsalgorithmen mithilfe einer Game-Engine.
Konferenz Go-3D 2017 "Mit 3D Richtung Maritim 4.0", Rostock,
September 2017
Luhmann, T.
:
Messgenauigkeit in der 3D-Bildverarbeitung und Photogrammetrie.
Testo, Titisee,
September 2017
Luhmann, T.
:
Dense pointclouds from combined nadir and oblique imagery by object-based semi-global multi-image matching.
56th Photogrammetric Week '17, Stuttgart,
September 2017
Knies, J. :
Räumliche Integration industrieller Abwärme in zukünftige Wärmeversorgungsoptionen.
AGIT 2017 – Symposium und Fachmesse Angewandte Geoinformatik, Salzburg, Österreich,
Juli 2017
doi: 10.13140/RG.2.2.14026.98240
Projects
funded by: European Fonds for Regional Development (EFRE)
The project objective is the investigation of imaging techniques and the development of special methods based on intraoperative and preoperative data. The field of application is primarily in orthopedics, however, in principle the problem can be tran... more
people
Prof. Dr.-Ing. habil. Dr. h.c. Thomas Luhmann (head) Niklas Conen, M.Sc. Oliver Kahmen, M.Sc.
Prof. Dr.-Ing. habil. Dr. h.c. Thomas Luhmann (head) Niklas Conen, M.Sc. Oliver Kahmen, M.Sc.
Geometric monitoring of the Bremen Cog
Beginn: 2017
funded by: German Maritime Museum, Leibniz Institute for Maritime History
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... more
funded by: Niedersächsisches Vorab
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... more
people
Prof. Dr.-Ing. habil. Dr. h.c. Thomas Luhmann (head) Prof. Dr. Thomas Brinkhoff (head) Robin Rofallski, M.Sc. (01.2017-12.2020) Tobias Werner, M.Sc. (02.2017-06.2020)
Prof. Dr.-Ing. habil. Dr. h.c. Thomas Luhmann (head) Prof. Dr. Thomas Brinkhoff (head) Robin Rofallski, M.Sc. (01.2017-12.2020) Tobias Werner, M.Sc. (02.2017-06.2020)
Bachelor & Master Theses
Evaluierung cloud-optimierter Datenformate zur Speicherung und Analyse großer raumzeitlicher Rasterdaten (2024/12)
Untersuchungen zur laserscanner-basierten Schwingungsmessung am Beispiel eines Rotorblattes einer Windenergieanlage im Stillstand (2024/12)
Untersuchungen zur Optimierung der Kamerakonfiguration bei einer TubeInspect Messzelle für die Messung von Rechteckprofilen (2024/12)
cooperation
Prozedurale Generierung urbaner Umgebungen – Entwicklung eines Prototyps mittels Unreal Engine (2024/11)
Entwicklung einer Cloud-nativen Architektur zur Verwaltung und Verarbeitung rasterbasierter Bodenbewegungsdaten (2024/11)