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Projects

Projects

Overview
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ADANET

ADANET

Autonomous Drones Assisted Internet of Things Networks
This project aims to design a reliable and secure drones-assisted IoT network, where a swarm of autonomous drones are employed to hover over the area of interest to collect sensory data from the IoT nodes. ADANET will integrate deep reinforcement learning, federated learning, wireless communication security, and optimization techniques for the joint cruise control and data collection.
IBEX

IBEX

Quantitative methods for cyber-physical programming
Advancements in computational power and miniaturization integrate software into industrial infrastructures. This emerging cyber-physical paradigm emphasizes close interactions with physical processes. Mathematical foundations are crucial, but challenges such as sensor noise and behavioral comparison complexity need addressing. This project aims to establish quantitative foundations without focusing on specific languages for cyber-physical systems.
FLOYD

FLOYD

5G/SDN Intelligent Systems For LOw latencY V2X communications in cross-Domain mobility applications
AAC nº 04/SI/2019 - Grant nr 045912
FLOYD aims at building a technological stack offering high-performance services providing seamless connectivity and computing services to vehicles.
RETINA

RETINA

REal-Time support Infrastructure and Energy management for Intelligent carbon-Neutral smArt cities
NORTE-01-0145-FEDER-000062
The concept of Smart Cities encompasses a collection of applications and services meant to improve the overall efficiency of the city's processes, and ultimately the well-being of the citizens. The RETINA project will address complementary aspects of Support Infrastructure for Smart City (SISC) applications, both at the level of enabling technologies as well as on selected smart city applications.
MIRAI

MIRAI

Machine intelligence techniques for smart and sustainable planning and operation IoT and Edge computing applications
MIRAI Framework Building Blocks (MFBB) based on AI techniques will enable the smart and sustainable planning and operation of IoT and edge computing applications. This will supplement the traditional vertical scaling approach to the cloud with the horizontal scaling of IoT and edge computing applications amongst edge devices.
FLY-PT

FLY-PT

Mobilizar a indústria aeronáutica nacional para a disrupção no transporte aéreo urbano do futuro
Aviso 14/SI/2019, Mobilizador nr. 46079
The FLY.PT project aims to develop products and services in an integrated way and with a unique global vision, based on a demonstrator of an urban and electric multimodal transport system. This new transport system combines an autonomous electric vehicle with an autonomous aerial vehicle by coupling / uncoupling a passenger cabin, allowing for horizontal and vertical mobility with minimal passenger intervention.
InSecTT

InSecTT

Intelligent Secure Trustable Things
H2020-ECSEL-2019-1-IA, Grant nr 876038
InSecTT will foster cooperation between big industrial players from various domains, a number of highly innovative SMEs distributed all over Europa and cutting-edge research organisations and university. The project features a big variety of industry-driven use cases embedded into various application domains, i.e. smart infrastructure, building, manufacturing, automotive, aeronautics, railway, urban public transport, maritime as well as health
VALU3S

VALU3S

Verification and Validation of Automated Systems’ Safety and Security
In VALU3S, 13 use cases with specific safety, security and privacy requirements will be studied in detail. Several state-of-the-art V&V methods will be investigated and further enhanced in addition to implementing new methods aiming for reducing the time and cost needed to conduct V&V of automated systems. The V&V methods investigated are then used to design improved process workflows for V&V of automated systems.
ADACORSA

ADACORSA

Airborne data collection on resilient system architectures
H2020-ECSEL-2019-2-RIA, Grant Nr 876019
ADACORSA targets to strengthen the European drone industry and increase public and regulatory acceptance of BVLOS (beyond visual line-of-sight) drones, by demonstrating technologies for safe, reliable and secure drone operation in all situations and flight phases.