The aerial capabilities and flexibility in movement of Unmanned Aerial Vehicles (UAVs) has enabled them to adaptively provide both traditional and more contemporary services. In this article, we introduce a solution that integrates the capabilities of both UAVs and Unmanned Ground Vehicles (UGVs) to provide both intelligent connectivity and services to both aerial and ground connected devices. A cooperative solution is adopted that considers nodes' power and movement constraints. The UAV and UGV cooperative process ensures continuous power availability to UAVs to support seamless and continuous service availability to end-devices. A Federated Learning (FL) approach is adopted at the edge to ensure accurate and up-to-date service provisionin...
International audienceConnectivity in a smart vehicular network is quite sensitive and highly affect...
Several types of networks that comprise unmanned aerial vehicles (UAV or drone) are being utilized i...
Due to globalization and advances in network technology, the Internet of Vehicles (IoV) with edge co...
Use of Unmanned Aerial Vehicles (UAVs) is rapidly increasing in various domains such as disaster man...
The future mobile communication system is expected to provide ubiquitous connectivity and unpreceden...
Today, intelligent drone technology is rapidly expanding, particularly in the defense industry. A sw...
Central management of fire stations and traditional optimization strategies are vulnerable to respon...
International audienceDue to their promising applications and intriguing characteristics, Unmanned A...
Collaboration between multiple Unmanned Aerial Vehicles (UAVs) to set up a Flying Ad Hoc Network (FA...
Unmanned aerial vehicles (UAVs) are capable of serving as flying base stations (BSs) for supporting ...
The arrival of big data and the Internet of Things (IoT) era greatly promotes innovative in-network ...
This is a proof-of-concept implementation of a blockchain use case for UAV network
International audienceThis study describes a blockchain-based multi-unmanned aerial vehicle (multi-U...
Decentralized learning empowers wireless network devices to collaboratively train a machine learning...
International audienceDue to the dynamic nature of connectivity in terrestrial vehicular networks, i...
International audienceConnectivity in a smart vehicular network is quite sensitive and highly affect...
Several types of networks that comprise unmanned aerial vehicles (UAV or drone) are being utilized i...
Due to globalization and advances in network technology, the Internet of Vehicles (IoV) with edge co...
Use of Unmanned Aerial Vehicles (UAVs) is rapidly increasing in various domains such as disaster man...
The future mobile communication system is expected to provide ubiquitous connectivity and unpreceden...
Today, intelligent drone technology is rapidly expanding, particularly in the defense industry. A sw...
Central management of fire stations and traditional optimization strategies are vulnerable to respon...
International audienceDue to their promising applications and intriguing characteristics, Unmanned A...
Collaboration between multiple Unmanned Aerial Vehicles (UAVs) to set up a Flying Ad Hoc Network (FA...
Unmanned aerial vehicles (UAVs) are capable of serving as flying base stations (BSs) for supporting ...
The arrival of big data and the Internet of Things (IoT) era greatly promotes innovative in-network ...
This is a proof-of-concept implementation of a blockchain use case for UAV network
International audienceThis study describes a blockchain-based multi-unmanned aerial vehicle (multi-U...
Decentralized learning empowers wireless network devices to collaboratively train a machine learning...
International audienceDue to the dynamic nature of connectivity in terrestrial vehicular networks, i...
International audienceConnectivity in a smart vehicular network is quite sensitive and highly affect...
Several types of networks that comprise unmanned aerial vehicles (UAV or drone) are being utilized i...
Due to globalization and advances in network technology, the Internet of Vehicles (IoV) with edge co...