Books and Papers
all
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2024
Lanz, P.; Marino, A.; Simpson, M.D.; Brinkhoff, T.; Köster, F.; Möller, M. (2023):
The InflateSAR Campaign: Developing Refugee Vessel Detection Capabilities with Polarimetric SAR. Remote Sensing. 2023; 15(8):2008
, doi: 10.3390/rs15082008
Breyer, G.; Bartholomä, A.; Pesch, R.; (2023):
The Suitability of Machine-Learning Algorithms for the Automatic Acoustic Seafloor Classification of Hard Substrate Habitats in the German Bight. Remote Sens. 2023, 15(16)
, doi: https://doi.org/10.3390/rs15164113 , Weblink
Albers, S.; Engel, M.; Hülsewede, F.; Göring, M.; Luhmann, T. (2023):
Untersuchungen zur KI-gestützten Materialklassifikation aus Punktwolken und Bilddaten. Allgemeine Vermessungs-Nachrichten, 1-2, 2023; S. 11-19.
Bethmann, F.; Luhmann, T. (2023):
Verfahren zur rechnergestützten dreidimensionalen Rekonstruktion einer Oberfläche eines Objekts aus digitalen Bilddaten. Deutsche Patentschirft DE 10 2014 211 709
Seckiner, Dilan; Ebert, L.; Mallett, Xanthé; Berry, Rachel; Green, Hayley; Franckenberg, Sabine; Thali, Michael; Sieberth, T. (2022):
A technical protocol for 3D observation and documentation of human decomposition. Australian Journal of Forensic Sciences
, doi: https://doi.org/10.1080/00450618.2022.2146189
Presentations
Willmann, A. ; Kaiser, L. ; Pesch, R.
; Hollermann, S. :
Inselkita Spiekeroog. Energy Efficient Design of an Environmental Kindergarden for Early Childhood Education on the Island Spiekeroog - A Collaborative-Transdisciplinary Higher Education Teaching Project..
International Transdisciplinary Conference ITD21, Zurich, Switzerland. Sept 13-17, 2021,
September 2021
Kalinowski, P. :
Data fusion of historical photographs with modern 3D data for an archaeological excavation – concept and first results.
ISPRS-Kongress Online,
Juli 2021
Hastedt, H.
:
Evaluation of interior orientation modelling for cameras with aspheric lenses and image pre-processing with special emphasis to SFM reconstruction.
ISPRS-Kongress Online,
Juli 2021
Rofallski, R.
:
Optische Unterwasser-3D-Messtechnik.
Abschlussveranstaltung des Projekts Entwicklung innovativer Technologien für autonome maritime Systeme (EITAMS),
Juni 2021
Brinkhoff, T.
:
Datenmanagement.
Abschlussveranstaltung des Projekts Entwicklung innovativer Technologien für autonome maritime Systeme (EITAMS),
Juni 2021
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
Evaluierung cloud-optimierter Datenformate zur Speicherung und Analyse großer raumzeitlicher Rasterdaten (2024/12)
Untersuchungen zur laserscanner-basierten Schwingungsmessung am Beispiel eines Rotorblattes einer Windenergieanlage im Stillstand (2024/12)
Untersuchungen zur Optimierung der Kamerakonfiguration bei einer TubeInspect Messzelle für die Messung von Rechteckprofilen (2024/12)
cooperation
Prozedurale Generierung urbaner Umgebungen – Entwicklung eines Prototyps mittels Unreal Engine (2024/11)
Entwicklung einer Cloud-nativen Architektur zur Verwaltung und Verarbeitung rasterbasierter Bodenbewegungsdaten (2024/11)