Books and Papers

Luhmann, T.; Rofallski, R.; Kahmen, O. (2022): Möglichkeiten und Grenzen der hochgenauen photogrammetrischen Objekterfassung unter Wasser. DVW/DHyG Fachtagung "Hydrographie - Messen mit allen Sinnen", Schriftenreihe des DVW, Band 102, pp. 109-116
Hauer, D.; Colson, A.; Hastedt, H.; Gamstedt, K. (2022): Monitoring structural change of large, complex archaeological wooden objects - Application of fixed target photogrammetry. Wet Organic Archaeological Materials 2019. Proceedings of the 14th ICOM-CC Wet Organic Archaeological Materials Working Group Interim Meeting, Portsmouth 2019 , Weblink
Kahmen, O.; Luhmann, T. (2022): Monocular Photogrammetric System for 3D Reconstruction of Welds in Turbid Water. PFG – Journal of Photogrammetry, Remote Sensing and Geoinformation Science, Vol. 90, Issue 1, pp. 19-35 , doi: 10.1007/s41064-022-00191-2
Kalinowski, P.; Both, F.; Luhmann, T.; Warnke, U. (2022): Neue Untersuchungen der Weser-Runenknochen mittels Makrophotogrammetrie. Luhmann, Thomas; Schumacher, Christina (Hrsg.): Photogrammetrie, Laserscanning, Optische 3D-Messtechnik, Beiträge der Oldenburger 3D-Tage 2022, Wichmann, Berlin.
Luhmann, T.; Schumacher, C. (2022): Photogrammetrie, Laserscanning, Optische 3D-Messtechnik – Beiträge der 20. Oldenburger 3D-Tage. Wichmann Verlag, Offenbach/Berlin, 421 p

Presentations

Luhmann, T. : Development of a simulator for terrestrial laser scanning as a powerful tool for distance learning. Polytecnico di Milano, Campus Lecco, November 2022
Luhmann, T. : Photogrammetric research and development in photogrammetry at IAPG. Polytecnico di Milano, November 2022
Luhmann, T. : Photogrammetric research and development at IAPG. Bruno Kessler Foundation (FBK), Trento, November 2022
Koch, S. : Geodatenanalyse für die Energie- und Wärmewende. Kolloquium Geoinformation, Jade Hochschule, Oktober 2022
Schüssler, F. ; Brinkhoff, T. ; Pesch, R. : Raumzeitliche Konzepte zur Datenanalyse und Visualisierung in der Geo-Toolbox. Kickoff-Meeting 4N - Nordwest-Niedersachsen Nachhaltig Neu; Universität Vechta, Oktober 2022

Projects

funded by: Federal Ministry for Economic Affairs and Climate Action
Subproject Optical 3D Measurement Technology: For making of reliable wind turbine runtime extension assessments, a new method is being developed that takes into account the geometry and modal properties of the respective rotor blade. These are deter... more
funded by: zukunft.niedersachsen
The research network DiViAS brings together previously rarely interlinked methods and practices in the digitization, research and representation of collections from colonial contexts. The project will systematically combine expertise from museum stud... more