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Industrial Networks and Intelligent Systems. 7th EAI International Conference, INISCOM 2021, Hanoi, Vietnam, April 22-23, 2021, Proceedings

Research Article

CLAN: A Robust Control Link for Aerial Mesh Networks in Contested Environments

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  • @INPROCEEDINGS{10.1007/978-3-030-77424-0_3,
        author={Firat Rozkan Kilic and Mehmet Ozgen Ozdogan and Gokhan Secinti and Berk Canberk},
        title={CLAN: A Robust Control Link for Aerial Mesh Networks in Contested Environments},
        proceedings={Industrial Networks and Intelligent Systems. 7th EAI International Conference, INISCOM 2021, Hanoi, Vietnam, April 22-23, 2021, Proceedings},
        proceedings_a={INISCOM},
        year={2021},
        month={5},
        keywords={Wireless mesh networks B.A.T.M.A.N. Proactive routing Traffic control messages Connectivity Dynamic tree topology Jamming MAVLink},
        doi={10.1007/978-3-030-77424-0_3}
    }
    
  • Firat Rozkan Kilic
    Mehmet Ozgen Ozdogan
    Gokhan Secinti
    Berk Canberk
    Year: 2021
    CLAN: A Robust Control Link for Aerial Mesh Networks in Contested Environments
    INISCOM
    Springer
    DOI: 10.1007/978-3-030-77424-0_3
Firat Rozkan Kilic1,*, Mehmet Ozgen Ozdogan1, Gokhan Secinti1, Berk Canberk1
  • 1: Department of Computer Engineering
*Contact email: kilicf18@itu.edu.tr

Abstract

Huge increase in the availability of commercial off-the-shelf unmanned aerial vehicles drastically shifts the way these devices operate and interact, enabling easy and affordable deployment of multiple drones to form a mesh network to perform aerial multi-robot missions such as 3D mapping, surveillance. This trend led to the development of unique applications and services relying on aerial mesh networks in contested environment, but also enables adversaries to improve their ability to counteract using simple techniques such as jamming. In this paper, we propose a robust Control Link for Aerial mesh Networks, namely CLAN, jointly disseminating mesh and UAV control traffic, to ensure reliable control communication for aerial mesh networks, via multi-path, multi-hop control links in contested environment. CLAN forms a dynamic tree topology, where control traffic is forwarded through multiple hops and utilizes multiple access technologies enabling multi-path end-to-end links in order to mitigate the effects of decreased signal power in longer ranges and the possibility of jamming attacks. Computer simulations of the contested environment show that the proposed CLAN algorithm that uses modified B.A.T.M.A.N. algorithm to selectively rebroadcast traffic control messages in order to significantly reduce the traffic control message number by 90% while improving the connectivity of the nodes compared to single hop MAVLink communication up to 72% in simulation results.

Keywords
Wireless mesh networks B.A.T.M.A.N. Proactive routing Traffic control messages Connectivity Dynamic tree topology Jamming MAVLink
Published
2021-05-28
Appears in
SpringerLink
http://dx.doi.org/10.1007/978-3-030-77424-0_3
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