Books and Papers

Lorkowski, P.; Brinkhoff, T. (2015): Towards Real-Time Processing of Massive Spatio-Temporally Distributed Sensor Data: A Sequential Strategy Based on Kriging. In: Bação, Santos, Painho (eds.): AGILE 2015 – Geographic Information Science as an Enabler of Smarter Cities and Communities, Lecture Notes in Geoinformation and Cartography, Springer, 145-163 , doi: 10.1007/978-3-319-16787-9_9
Resch, Bernd; Wichmann, Andreas; Goell, Nicolas (2015): Usability in 4D AR: Visualising Multi-Temporal Real-Time Geo-Data in Augmented Reality Environments. International Journal of Interactive Mobile Technologies , doi: https://doi.org/10.3991/ijim.v9i4.4626 , Weblink
Wichmann, Andreas; Kada, Martin (2014): 3D Building Adjustment Using Planar Half-Space Regularities. ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences , doi: https://doi.org/10.5194/isprsannals-II-3-189-2014 , Weblink
Jansen, S.; Höting, D.; Runge, J.; Brinkhoff, T.; Nicklas, D.; Sauer, J. (2014): 9 Million Bicycles? Extending Induction Loops with Bluetooth Sensing. Proceeding 15th IEEE International Conference on Mobile Data Management (MDM 2014), Brisbane, Australia, 2014, 113-116 , doi: 10.1109/MDM.2014.20
Lückehe, D.; Kramer, O.; Weisensee, M. (2014): An Evolutionary Approach to Geo-Planning of Renewable Energies. Proceedings 28th International Conference on Informatics for Environmental Protection (EnviroInfo), Oldenburg, 2014

Presentations

Popovas, D. : Virtual terrestrial laser scanner simulator in digital twin environment. 9th ARQUEOLÓGICA 2.0 & 3rd GEORES, Valencia, Spain, April 2021
Hastedt, H. : Geometrische Qualitätsmerkmale beim Einsatz handelsüblicher Kameras in der optischen 3D-Messtechnik. Online-Treffen der AG Bildverarbeitung von Optence e.V. und der Automatisierungsregion Rhein Main Neckar, April 2021
Luhmann, T. : Grundlagen, Systeme und Anwendungen der optischen 3D-Messtechnik in Industrie, Medizin und Kulturwissenschaften. InnosysDialog „3D-Messtechnik und Digitale Bildverarbeitung – Systeme und Methoden von Low-Cost bis High-Tech“, Technologiezentrum Nordenham, März 2021
Luhmann, T. ; Chizhova, M. : VirScan3D – Ein Simulator für terrestrisches Laserscanning. Jahrestagung der DGPF, Dresden, online, März 2021
Luhmann, T. : Optische 3D-Messtechnik im Kontext von Industrie 4.0. Technische Universität Dresden, Februar 2021

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


Prüfung der Ebenheit von Rohfußböden mit dem Terrestrischen Laserscanner Leica RTC 360 (2022/)
supervisors

Prof. Harry Wirth

Dipl.-Ing. Uwe Ehrhorn

Vergleich verschiedener Unmanned Aircraft Systems mit Sensoren zur Luftbildaufnahme und Airborne Laserscanning (2022/)
supervisors

Prof. Harry Wirth

Dipl-Ing. Birgitt Petermann-Schnau

Untersuchung der Genauigkeit und Wirtschaftlichkeit der „Visuellen Positionierungstechnologie“ des GNSS Rovers Leica GS 18 I bei der Gebäudeeinmessung in der Kastasterverwaltung (2022/)
supervisors

Prof. Harry Wirth

Janfred zu Jeddeloh

Auswirkung von Gebäudeabbruchkosten auf Immobilienkaufpreise (2022/)
supervisors

Prof. Dr.-Ing. Hero Weber

Dipl-Ing. Markus Bohling

Implementation of a potential area analysis for floating offshore wind turbines in Scotland using a Geographical Information System (GIS) and the Analytical Hierarchy Process (AHP) (2021/10)
supervisors

Prof. Dr. rer. nat. habil. Roland Pesch

William Gibbs, M.Sc.

cooperation

Vattenfall