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Balancing throughput and latency for an aerial robot over a wireless secure communication link

R. D. Sparrow, A. A. Adekunle, R. J. Berry, Richard Farnish

Year
2015
Citations
6

Abstract

With the requirement for remote control of unmanned aerial vehicles (UAV) becoming more frequent in scenarios where the environment is inaccessible or hazardous to human beings (e.g. disaster recovery); remote functionality of a UAV is generally implemented over wireless networked control systems (WNCS). The nature of the wireless broadcast allows attackers to exploit security vulnerabilities through passive and active attacks; consequently, cryptography is often selected as a countermeasure to the aforementioned attacks. This paper analyses simulation undertaken and proposes a model to balance the relationship between throughput and latency for a secure multi-hop communication link. Results obtained indicate that throughput is more influential up to two hops from the initial transmitting device; conversely, latency is the determining factor after two hops.

Keywords

Computer scienceExploitLatency (audio)Computer networkWirelessThroughputComputer securityCountermeasureLow latency (capital markets)Cryptography

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