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Unité de recherche
INNOSUISSE
Numéro de projet
9027.1;8 PFIW-IW
Titre du projet
3D-vision based environment monitoring and hazard warning system: feasibility study and prototype development DAMON
Titre du projet anglais
3D-vision based environment monitoring and hazard warning system: feasibility study and prototype development DAMON

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Textes saisis


CatégorieTexte
Description succincte
(Allemand)
3D-vision based environment monitoring and hazard warning system: feasibility study and prototype development DAMON
Description succincte
(Anglais)
3D-vision based environment monitoring and hazard warning system: feasibility study and prototype development DAMON
Résumé des résultats (Abstract)
(Allemand)
The main goal of the project is the feasibility study of landslide monitoring system based on 3D-vision. The system is to be used in an environmental monitoring and hazard warning system, e.g. a landslide and dam monitoring system. 3D vision will be achieved through time-of-flight (TOF) measurements to allow 3D reconstruction of objects. The principle is very interesting since it is non-invasive, cheap, reliable, of ease installation, and eye-safe. Suitability of this technology to environmental monitoring will be verified against the application requirements and economics of such system. The technological goal of the project is twofold. First, a light source capable of producing 8 kW of light for a 3 ns long pulse will be developed. Secondly, based on this light source, a telemetric measure of a single target (distance range 1-80m) will then be performed. The experiment will allow the characterisation and validation of the technology for the use in a complete 3D vision system that will be developed in a follow-on project.
Résumé des résultats (Abstract)
(Anglais)
The main goal of the project is the feasibility study of landslide monitoring system based on 3D-vision. The system is to be used in an environmental monitoring and hazard warning system, e.g. a landslide and dam monitoring system. 3D vision will be achieved through time-of-flight (TOF) measurements to allow 3D reconstruction of objects. The principle is very interesting since it is non-invasive, cheap, reliable, of ease installation, and eye-safe. Suitability of this technology to environmental monitoring will be verified against the application requirements and economics of such system. The technological goal of the project is twofold. First, a light source capable of producing 8 kW of light for a 3 ns long pulse will be developed. Secondly, based on this light source, a telemetric measure of a single target (distance range 1-80m) will then be performed. The experiment will allow the characterisation and validation of the technology for the use in a complete 3D vision system that will be developed in a follow-on project.