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Security in networks of unmanned aerial vehicles for surveillance with an agent-based approach inspired by the principles of blockchain

机译:受基于区块链原理启发的基于代理的方法来监控无人机网络的安全性

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Unmanned aerial vehicles (UAVs) can support surveillance even in areas without network infrastructure. However, UAV networks raise security challenges because of its dynamic topology. This paper proposes a technique for maintaining security in UAV networks in the context of surveillance, by corroborating information about events from different sources. In this way, UAV networks can conform peer-to-peer information inspired by the principles of blockchain, and detect compromised UAVs based on trust policies. The proposed technique uses a secure asymmetric encryption with a pre-shared list of official UAVs. Using this technique, the wrong information can be detected when an official UAV is physically hijacked. The novel agent based simulator ABS-SecurityUAV is used to validate the proposed approach. In our experiments, around 90% of UAVs were able to corroborate information about a person walking in a controlled area, while none of the UAVs corroborated fake information coming from a hijacked UAV. (C) 2018 Published by Elsevier B.V.
机译:无人飞行器(UAV)甚至可以在没有网络基础设施的区域中支持监视。但是,无人机网络由于其动态拓扑结构而带来了安全挑战。本文提出了一种通过确认来自不同来源的事件的信息来在监视环境中维护无人机网络安全的技术。通过这种方式,无人机网络可以遵循受区块链原理启发的对等信息,并基于信任策略检测受损的无人机。所提出的技术使用带有预先共享的官方UAV列表的安全非对称加密。使用这种技术,当正式劫持无人机时,可以检测到错误的信息。基于代理的新型模拟器ABS-SecurityUAV用于验证所提出的方法。在我们的实验中,大约90%的无人机能够证实在受控区域中行走的人的信息,而没有一架无人机能够证实来自被劫持的无人机的虚假信息。 (C)2018由Elsevier B.V.发布

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