Books and Papers

Nietiedt, S.; Wester, T.; Langidis, A.; Kröger, L.; Rofallski, R.; Göring, M.; Kühn, M.; Gülker, G.; Luhmann, T. (2022): A Wind Tunnel Setup for Fluid-Structure Interaction Measurements Using Optical Methods. Sensors 2022, 22(13), 5014 , doi: https://doi.org/10.3390/s22135014
Kalinowski, P.; Hindmarch, J.; Luhmann, T. (2022): Accuracy investigations of hand-held scanning system using different dumbbell artefacts. Int. Arch. Photogramm. Remote Sens. Spatial Inf. Sci., XLIII-B2-2022, 401–407 , doi: 10.5194/isprs-archives-XLIII-B2-2022-401-2022 , Weblink
Rofallski, R.; Menna, F.; Nocerino, E.; Luhmann, T. (2022): An efficient solution to ray tracing problems for hemispherical refractive interfaces. ISPRS Ann. Photogramm. Remote Sens. Spatial Inf. Sci., V-2-2022, 333–342 , doi: 10.5194/isprs-annals-V-2-2022-333-2022 , Weblink
Rofallski, R.; Luhmann, T. (2022): An Efficient Solution to Ray Tracing Problems in Multimedia Photogrammetry for Flat Refractive Interfaces. PFG – Journal of Photogrammetry, Remote Sensing and Geoinformation Science, Vol. 90, Issue 1, pp. 37-54 , doi: 10.1007/s41064-022-00192-1
McQuatters-Gollop, A.; Guérin, L.; Arroyo, N.; Aubert, A.; Artigas, L.; Bedford, J.; Corcoran, E.; Dierschke, V.; Elliott, S.; Geelhoed, S.; Gilles, A.; González-Irusta, J.; Haelters, J.; Johansen, M.; LeLoc’h, F.; Lynam, C.; Niquil, N.; Meakins, B.; Mitchell, I.; Padegimas, B.; Pesch, R.; Preciado, I.; Rombouts, I.; Safi, G.; Schmitt, P.; Schückel, U.; Serrano, A.; Stebbing, P.; Dela Torriente, A.; Vina-Herbon, C. (2022): Assessing the state of marine biodiversity in the Northeast Atlantic. Ecological Indicators 141 (2022) 109148 , doi: https://doi.org/10.1016/j.ecolind.2022.109148

Presentations

Luhmann, T. : Beitrag der optischen 3D-Messtechnik zu Industrie 4.0. Fraunhofer Vision Technologietag, Jena, Oktober 2018
Hastedt, H. : Aktuelle Methoden der laser- und bildbasierten 3D-Erfassung: Möglichkeiten und Grenzen. Digital Technologies Meetup Oldenburg, September 2018
Luhmann, T. : Research in photogrammetry at IAPG. Georgian Technical University, Tbilisi, September 2018
Knies, J. : Einzelentscheidungen im Kontext einer kommunalen Wärmeplanung – ein Modellansatz. AGIT 2018, Salzburg, Juli 2018 doi: 10.13140/RG.2.2.10643.53284 Weblink
Rofallski, R. : Fusion von Sensoren mit optischer 3D-Messtechnik zur Positionierung von Unterwasserfahrzeugen. 170. DVW-Seminar und 32. Hydrographentag, Juni 2018

Projects

funded by: Bundesministerium für Bildung und Forschung
Over 70% of German households are supplied with heat through fossil fuels (natural gas, oil). Therefore, some federal states have legally regulated Municipal Heat Planning (MHP). Additionally, a federal law on heat planning came into ... more
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

Bachelor & Master Theses


Untersuchungen zur geometrischen und radiometrischen Kalibrierung von Thermografiekameras und zur verbesserten automatischen Punktmessung in Thermalbildern (2010/8)
Untersuchungen zur Genauigkeit und Auflösung von flächenhaften Bildzuordnungsverfahren (2010/8)
Untersuchungen zur Konvertierung von 3D-Stadtmodellen mit Hilfe von FME (2010/6)
supervisors

Prof. Dr. Ingrid Jaquemotte

Markus Guretzki

cooperation

Phoenics GmbH

Entwicklung eines generischen Web-Clients für den Sensor Observation Service (2010/3)
supervisors

Prof. Dr. Stefan Schöf

Dr. Christian Kiehle

cooperation

lat/lon GmbH

Erstellung eines Benutzerwerkzeugs für die Darstellung und Ausgabe von individuell definierbaren Längsschnitten aus dem Kanalnetzmodell (2010/3)
supervisors

Prof. Dr. Stefan Schöf

Dipl.-Ing. Engels