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Publications (4)
Evaluation of the performance of Human-Machine Teaming brings two substantial values to military effectiveness: (1) enhancing the design quality of cognitive aircraft systems, (2) synchronizing the behavior of the virtual assistant with the cockpit needs during fights. This paper presents "MOHICAN", a system-of-systems approach for monitoring the p...
L’Ocean Living Lab (OLL) est le premier Living lab européen dédié à l’océan, la glisse, au nautisme et aux sports aquatiques. L’objectif de OLL est de réaliser des tests fiables sur de nouveaux matériels et d’analyser les besoins des utilisateurs. Dans cette optique, une expérimentation centrée utilisateur a été menée avec des outils classiquement...
Dans un monde où la continuité de service est impérative, la qualité et la rapidité des interventions en maintenance deviennent des éléments clés. Pour conserver leur compétitivité, les industriels recherchent activement des solutions pour améliorer l’efficacité et la productivité des opérations de maintenance tout en préservant un très haut niveau...
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Project (1)
HyperCOG project “HYPERCONNECTED ARCHITECTURE FOR HIGH COGNITIVE PRODUCTION PLANTS” addresses the full digital transformation of the process industry and cognitive process production plants through an innovative Industrial Cyber-Physical System (ICPS). It is based on commercially available advanced technologies, that will enable the development of a hyper-connected network of digital nodes. The nodes can catch outstanding streams of data in real-time, which together with the high computing capabilities available nowadays, provide sensing, knowledge and cognitive reasoning to the industrial business.
Furthermore, HyperCOG is deeply grounded in the last advances in Artificial Intelligence such as modelling for twin factories, decision-support systems for human-machine interaction and augmented reality for industrial processes visualization. It pursues self-learning from the process in order to deal with the typical dynamic fluctuations of the industrial processes and global optimization.
The objective is to increase the production performance while reducing the environmental impact by reducing the energy consumption and the CO2 emissions thereof. Society will get profit of this project not only throughout the environmental impact, but through the lifelong learning of workers and vocational training for digitisation, and the available training modules for youth at schools such as ESTIA technological institute or U-PEC University.
The breaking-edge system proposed in HyperCOG project will be validated on the productivity and environmental impacts, replicability and usability aspects on three use cases belonging to the SPIRE scope such us SIDENOR (steel making), CIMSA (cement), and SOLVAY (chemical) use cases.