Books and Papers
all
1999
2000
2001
2002
2003
2004
2005
2006
2007
2008
2009
2010
2011
2012
2013
2014
2015
2016
2017
2018
2019
2020
2021
2022
2023
2024
Weisensee, M. (2000):
Combined Adjustment of Laser Scanning Data and Digital Photogrammetric Images. International Archives of Photogrammetry and Remote Sensing, Vol.33, Amsterdam, 2000
Brinkhoff, T. (2000):
Generating Network-Based Moving Objects. 12th International Conference on Scientific and Statistical Database Management, Berlin, July 2000, IEEE Computer Society Press, 253-55
, Weblink
Tecklenburg, W.; Luhmann, T. (2000):
Kameramodellierung mit bildvarianten Parametern und finiten Elementen. Publikationen der DGPF, Band 9
, Weblink
Luhmann, T. (2000):
Nahbereichsphotogrammetrie. Lehrbuch, 570p., Wichmann Verlag, Heidelberg
, Weblink
Luhmann, T. (2000):
Optische 3D-Messtechnik - Meßsysteme und Standardisierung. VDV-Seminar Anwendungen digitaler photogrammetrischer Systeme, Essen
Presentations
Lenzi, J.
; Leiz, M.
; Ahvo, A. ; Bergström, U. ; Sacre, E. ; Juva, K. ; Virtanen, E. ; Takkolander, A. ; Kotta, J. ; Kaasik, A. ; Fetissov, M. ; Berkström, C. ; Ract, C. ; Pesch, R.
:
Predicting Marine Species Shifts and Identifying Biodiversity Hotspots under Climate Scenarios.
Informal Consultation Session HELCOM Working Group on Biodiversity, Protection and Restoration (WG BioDiv),
Oktober 2024
Sieberth, T.
:
Forensik digital – 3D Tatort-Rekonstruktion.
Fachtagung BDVI Landesgruppe Thürigen,
September 2024
Luhmann, T.
:
Fundamentals of camera calibration and image orientation.
UAV-Conference, Intergeo 2024, Stuttgart,
September 2024
Ghavimi, A.
:
Digital Mapping the Social Memory for a Sustainable Transformation of Settlements: A Participatory GIS Approach.
City Transitions: Society and the Spatial and Temporal Dimensions of Change,
September 2024
Projects
funded by: German Research Foundation
Classical methods of photogrammetric deformation analysis are essentially a two-step process of spatio-temporal image matching (STM) followed by the calculation of deformation parameters. In many close-range applications, further kinematic in... more
funded by: Niedersächsisches Vorab
Transformation and structural change in rural areas mean changes in space and time. Such spatiotemporal data is to be managed and processed by our “Geo-Toolbox”. It uses digital technologies such as databases and geographic information systems ... more
people
Prof. Dr. Thomas Brinkhoff (head) Prof. Dr. rer. nat. habil. Roland Pesch (head) Prof. Dr. rer. nat. Frank Schüssler (head) Tobias Werner, M.Sc. (10.2022-) Jonas Schoo, M.Sc. (06.2022-) Maren Leiz, M.Sc. (08.2022-) Dr. Amirmohammad Ghavimi (08.2022-)
Prof. Dr. Thomas Brinkhoff (head) Prof. Dr. rer. nat. habil. Roland Pesch (head) Prof. Dr. rer. nat. Frank Schüssler (head) Tobias Werner, M.Sc. (10.2022-) Jonas Schoo, M.Sc. (06.2022-) Maren Leiz, M.Sc. (08.2022-) Dr. Amirmohammad Ghavimi (08.2022-)
funded by: Bundesministerium für Bildung und Forschung
The Project – „CoSAIR – Collaborative Spatial Artificial Intelligence in Realtime“ is funded by the Federal Ministry of Education and Research within the program „Research at Universities of Applied Sciences“ in order to create, consolida... more
people
Prof. Dr. Sascha Koch (head) Tobias Neiß-Theuerkauff, M.Sc. (-03.2024) Oliver Kahmen, M.Sc. (04.2022-07.2022) Prof. Dr.-Ing. habil. Dr. h.c. Thomas Luhmann Mareike Fincken, M.Sc. (09.2023-)
Prof. Dr. Sascha Koch (head) Tobias Neiß-Theuerkauff, M.Sc. (-03.2024) Oliver Kahmen, M.Sc. (04.2022-07.2022) Prof. Dr.-Ing. habil. Dr. h.c. Thomas Luhmann Mareike Fincken, M.Sc. (09.2023-)
Bachelor & Master Theses
Entwicklung eines Workflows zur Erstellung von Grundrissplänen auf der Basis von 3D Punktwolken eines Schulgebäudes (2023/2)
cooperation
Potentialanalyse von UAV-Photogrammetrie zur Aufnahme und Dokumentation denkmalge-schützter Bauwerke (2023/2)
Untersuchung zum terrestrischen Laserscanning bei der Abnahmevermessung von Ingenieurbauwerken am Beispiel eines Brückenneubaus (2023/2)
cooperation
Mixed Reality in der Stadtplanung – Untersuchung zur Visualisierung von 3D-Modellen mit der Microsoft Hololens 2 (2023/2)
Untersuchungen zur Lagebestimmung von Bäumen mit UAV-Laserscanning, UAV-Photogrammetrie und terrestrischen Messungen (2023/1)