auTonomous Robotic aId For increasing FIrst responDers efficiency
TRIFFID targets the development of an integrated approach for maximizing the efficiency of First Responders (FR) field operations, by advancing remote and smart robotic reconnaissance in disaster sites, while integrating it into E...
ver más
30/09/2027
Líder desconocido
4M€
Presupuesto del proyecto: 4M€
Líder del proyecto
Líder desconocido
Fecha límite participación
Sin fecha límite de participación.
¿Tienes un proyecto y buscas un partner? Gracias a nuestro motor inteligente podemos recomendarte los mejores socios y ponerte en contacto con ellos. Te lo explicamos en este video
Información proyecto TRIFFID
Duración del proyecto: 38 meses
Fecha Inicio: 2024-07-16
Fecha Fin: 2027-09-30
Líder del proyecto
Líder desconocido
Presupuesto del proyecto
4M€
Fecha límite de participación
Sin fecha límite de participación.
Descripción del proyecto
TRIFFID targets the development of an integrated approach for maximizing the efficiency of First Responders (FR) field operations, by advancing remote and smart robotic reconnaissance in disaster sites, while integrating it into European Civil Protection (CP) procedures. The project will deliver the following advancements: a) Hybrid, mobile legged UGV+UAV robotic platform for autonomous real-time reconnaissance in dynamic environments. The TRIFFID robots will receive orders in the field by a human FR crew. Yet, the platform will feature an impressive level of low-level cognitive autonomy, thanks to advanced AI, thus minimizing human supervision and freeing FRs from routine tasks. b) Central Ground-Station with an advanced Augmented Reality (AR) interface, managed by a human Operator. The TRIFFID Ground-Station will merge and display all collected information in near-real-time, providing the Operator with an accurate, interactive semantic map of the disaster site. c) Analysis of technological, operational, organizational and policy aspects in the context of the overall FR ecosystem. The design of the TRIFFID system and the specification of its exact capabilities will proceed by considering the current technological landscape, as well as the entire operational environment and organizational structure of FRs, so that effective disaster robotics solutions are gracefully integrated into CP infrastructure. d) FR training activities: The project will exploit complementary means for implementing and boosting the adoption of the TRIFFID system by FR personnel in their everyday activities, including the development of detailed training curricula, the organization of training exercises, knowledge transfer and skill acquisition activities, etc. e) SSH, robot acceptance and industrial engagement: The design and evaluation of TRIFFID will consider in-depth all relevant legal, ethical, societal and usability issues, targeting maximal adoption by FRs in their daily operations.