Books and Papers

Nietiedt, S.; Luhmann, T. (2022): Simulation-based accuracy investigation of a photogrammetric setup to measure a dynamic process. Int. Arch. Photogramm. Remote Sens. Spatial Inf. Sci., XLVIII-2/W2-2022, 95–101 , doi: https://doi.org/10.5194/isprs-archives-XLVIII-2-W2-2022-95-2022
Gutow, L.; Gusky, M.; Beermann, J.; Gimenez, L.; Pesch, R.; Bildstein, T.; Heinicke, K.; Ebbe, B. (2022): Spotlight on coarse sediments: Comparative characterization of a poorly investigated seafloor biotope in the German Bight (SE North Sea). Estuarine, Coastal and Shelf Science; Volume 275, 30 September 2022, 107996 , doi: https://doi.org/10.1016/j.ecss.2022.107996
Colson, A.; Hastedt, H.; Luhmann, T.; Hess, M. (2022): The role of conservators in the implementation of surveying techniques - reflection on the Bremen Cog monitoring project. Wet Organic Archaeological Materials 2019 : Proceedings of the 14th ICOM-CC Wet Organic Archaeological Materials Working Group Interim Meeting, Portsmouth 2019 , Weblink
Hülsewede, F.; Albers, S.; Engel, M.; Göring, M.; Luhmann, T. (2022): Untersuchungen zur KI-gestützten Materialklassifikation aus Punktwolken und Bilddaten. Luhmann/Schumacher (eds.): Photogrammetrie, Laserscanning, Optische 3D-Messtechnik – Beiträge der 20. Oldenburger 3D-Tage, Wichmann Verlag, Offenbach/Berlin, pp. 278-287
Schnabel, M.; Gravenhorst, T.; Belkot, T.; Friebe, F.; Erdmann, S.; Koch, S. (2022): Visual Data Discovery im Kontext der geodatenbasierten Wärmeleitplanung. gis.Science 2-2022

Presentations

Luhmann, T. : A software-based concept for teaching photogrammetry. ISPRS GeoSpace, Kiev, Ukraine, Dezember 2017
Luhmann, T. : Introduction to Close-Range Photogrammetry. Kiev National University for Construction and Architecture, Kiew, Dezember 2017
Werner, T. : Management of spatio-temporal data for autonomous maritime systems. GeoIT.GISCO 2017, Berlin, Dezember 2017
Hastedt, H. : A medium format camera for high accuracy photogrammetry. 3D Metrologogy Conference - 3DMC Aachen, Oktober 2017
Chizhova, M. : Planning and execution of the LIDAR scanning project using Faro scanner. Special teach-time in Michigan Tech University, Houghton, USA, Oktober 2017

Projects

funded by: zukunft.niedersachsen
There are hundreds of thousands of artefacts in German museums that were brought to Europe during the colonial era as a result of wars, looting or trade. The history of these objects - where they came from, what they were used for and who once owned ... more
funded by: Bill & Melinda Gates Foundation
The WorldPop project aims to produce grid-based population estimates up to 2030 broken down by sex and age groups. The overall project is led by Prof. Andy Tatem of the University of Southampton. With this framework, IAPG is responsible for the devel... more
funded by: Europäische Union (EU)
Given the EU Biodiversity Strategy 2030, Protect Baltic aims to evaluate and optimise the existing network of marine protected areas in the Baltic Sea and thus makes a positive contribution to biodiversity and the protection of marine ecosystems. Tog... more

Bachelor & Master Theses


Erprobung eines neuen Messverfahrens für das Liegenschaftskataster: Schrägmessung mit dem GNSS-Rover Leica GS18 T (2021/1)
supervisors

Prof. Dr.-Ing. Hero Weber

Dipl-Ing. E. Grela

Einsatz von Image Assisted Total Stations (IATS) bei Liegenschaftsvermessungen (2021/1)
supervisors

Prof. Harry Wirth

Thorsten Roelfs, M.Sc.

Evaluation rechnergestützter Möglichkeiten zur automatisierten Modellierung von 3D-Punktwolken (2021/)
supervisors

Prof. Dr.-Ing. Hero Weber

M. Hilpert, M.Sc.

Konzeption und prototypische Entwicklung eines Verfahrens zur Messungsplanung für Autonomous Surface Vehicles (ASV) mit Single Beam Echosounder (SBES) (2021/)
supervisors

Prof. Harry Wirth

Dr. Patrick Westfeld

Optimierung der automatisierten Glasfaserausbauplanung: Positionierung der Verteilstandorte innerhalb von Glasfasernetzen mit Hilfe des Planungstools „gridlux“ (2020/12)