Books and Papers

Lesnyak, Ekaterina; Belkot, T.; Hurka, Johannes; Hörding, Jan Philipp; Kuhlmann, Lea; Paulau, P.; Schnabel, M.; Schönfeldt, Patrik; Middelberg, Jan (2023): Applied Digital Twin Concepts Contributing to Heat Transition in Building, Campus, Neighborhood, and Urban Scale. Big Data and Cognitive Computing , doi: https://doi.org/10.3390/bdcc7030145
Lenzi, J.; Barnas, A.; ElSaid, A.; Desell, T.; Rockwell, R. F.; Ellis-Felege, S. (2023): Artificial intelligence for automated detection of large mammals creates path to upscale drone surveys. Scientific Reports , doi: https://doi.org/10.1038/s41598-023-28240-9 , Weblink
Golomingi, Raffael; Dobay, Akos; Franckenberg, Sabine; Ebert, L.; Sieberth, T. (2023): Augmented Reality in Forensics and Forensic Medicine - Current Status and Future Prospects. Science & Justice , doi: https://doi.org/10.1016/j.scijus.2023.04.009
Zimmermann, Norio; Sieberth, T.; Dobay, Akos (2023): Automated wound segmentation and classification of seven common injuries in forensic medicine. Forensic Science, Medicine and Pathology , doi: https://doi.org/10.1007/s12024-023-00668-5
Hurka, J.; Paulau, P.; Middelberg, J.; Koch, S. (2023): Bidirectional integration of a KNX equipped energy efficiency test bench building with the OGC SensorThings standard. KNX Scientific Conference 2023, Barcelona , Weblink

Presentations


Projects

funded by: Federal Ministry for Economic Affairs and Climate Action
Subproject Optical 3D Measurement Technology: For making of reliable wind turbine runtime extension assessments, a new method is being developed that takes into account the geometry and modal properties of the respective rotor blade. These are deter... more
funded by: zukunft.niedersachsen
The research network DiViAS brings together previously rarely interlinked methods and practices in the digitization, research and representation of collections from colonial contexts. The project will systematically combine expertise from museum stud... more

Bachelor & Master Theses


Analyse und Vergleich der geometrischen Eigenschaften von Referenzdaten und KI-Ergebnissen für die automatische Gebäudeerkennung in Luftbildern (2024/2)
Maschinelles Lernen für die Identifikation von baulichen Erweiterungen an Gebäuden anhand geometrischer Merkmale von ALKIS- und durch KI bestimmten Hausumringen (2024/2)
Integration und Verteilung von ALKIS-Grunddaten und Fortführungsdaten in Echtzeit mittels Open-Source-Technologien (2024/2)
Design und prototypische Implementierung einer Georeferenzierung im Web-Browser mittels Javascript und dem Open-Source-Geoportal „Masterportal“ (2024/2)
Möglichkeiten der Herstellung synthetischer Trainingsdaten für KI-Modelle in einer Game-Engine aus Geodaten (2024/2)