Swarms of Unmanned Aerial Vehicles (UAVs) are a key technology to support communication in many harsh environments where fixed infrastructures (e.g., 5G) are disrupted or not available. However, the fast mobility and highly dynamic network topology pose unique challenges and require the development of novel multi-hop routing protocols. Previous work in this direction extends geographical protocols, or adapts approaches designed for Mobile Ad-hoc NETworks (MANETs), rarely taking full advantage of UAV capabilities. In this paper we introduce a novel data offloading approach, namely Stop & Route, that exploits the device controllable mobility to facilitate network routing. The swarm of UAVs performs data offloading synchronously and recurrently. At fixed intervals of time, the swarm interrupts the sensing mission (stop) and moves, as less as possible, to build a connected formation to the base station and offload the data (route). We provide both centralized solutions-assuming a long-range control channel - and a distributed solution - working in the absence of a control channel. By means of extensive simulations we show that our proposals outperform state-of-the-art solutions, decreasing the time taken to build a connected formation of about 25% and increasing the time spent on sensing of 14%.

Stop & Route: Periodic Data Offloading in UAV Networks / Bartolini, Novella; Coletta, Andrea; Giorgi, Flavio; Maselli, Gaia; Prata, Matteo; Silvestri, Domenicomichele. - (2023), pp. 92-99. ( 18th Wireless On-Demand Network Systems and Services Conference (WONS) Madonna di Campiglio ) [10.23919/wons57325.2023.10062043].

Stop & Route: Periodic Data Offloading in UAV Networks

Bartolini, Novella;Coletta, Andrea;Giorgi, Flavio;Maselli, Gaia;Prata, Matteo;Silvestri, Domenicomichele
2023

Abstract

Swarms of Unmanned Aerial Vehicles (UAVs) are a key technology to support communication in many harsh environments where fixed infrastructures (e.g., 5G) are disrupted or not available. However, the fast mobility and highly dynamic network topology pose unique challenges and require the development of novel multi-hop routing protocols. Previous work in this direction extends geographical protocols, or adapts approaches designed for Mobile Ad-hoc NETworks (MANETs), rarely taking full advantage of UAV capabilities. In this paper we introduce a novel data offloading approach, namely Stop & Route, that exploits the device controllable mobility to facilitate network routing. The swarm of UAVs performs data offloading synchronously and recurrently. At fixed intervals of time, the swarm interrupts the sensing mission (stop) and moves, as less as possible, to build a connected formation to the base station and offload the data (route). We provide both centralized solutions-assuming a long-range control channel - and a distributed solution - working in the absence of a control channel. By means of extensive simulations we show that our proposals outperform state-of-the-art solutions, decreasing the time taken to build a connected formation of about 25% and increasing the time spent on sensing of 14%.
2023
18th Wireless On-Demand Network Systems and Services Conference (WONS)
UAVs; Drones; routing; data offloading; FANETs
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
Stop & Route: Periodic Data Offloading in UAV Networks / Bartolini, Novella; Coletta, Andrea; Giorgi, Flavio; Maselli, Gaia; Prata, Matteo; Silvestri, Domenicomichele. - (2023), pp. 92-99. ( 18th Wireless On-Demand Network Systems and Services Conference (WONS) Madonna di Campiglio ) [10.23919/wons57325.2023.10062043].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1722386
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