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A secure group communication architecture for autonomous unmanned aerial vehicles

机译:自主无人机的安全群通信架构

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摘要

This paper investigates the application of a secure group communication architecture to a swarm of autonomous unmanned aerial vehicles (UAVs). A multicast secure group communication architecture for the low earth orbit (LEO) satellite environment is evaluated to determine if it can be effectively adapted to a swarm of UAVs and provide secure, scalable, and efficient communications. The performance of the proposed security architecture is evaluated with two other commonly used architectures using a discrete event computer simulation developed using MATLAB. Performance is evaluated in terms of the scalability and efficiency of the group key distribution and management scheme when the swarm size, swarm mobility, multicast group join and departure rates are varied. The metrics include the total keys distributed over the simulation period, the average number of times an individual UAV must rekey, the average bandwidth used to rekey the swarm, and the average percentage of battery consumed by a UAV to rekey over the simulation period. The proposed security architecture can successfully be applied to a swarm of autonomous UAVs using current technology. The proposed architecture is more efficient and scalable than the other tested and commonly used architectures. Over all the tested configurations, the proposed architecture distributes 55.2–94.8% fewer keys, rekeys 59.0–94.9% less often per UAV, uses 55.2–87.9% less bandwidth to rekey, and reduces the battery consumption by 16.9–85.4%. Published in 2008 by John Wiley & Sons, Ltd.
机译:本文研究了安全群通信体系结构在大量自动无人驾驶飞机(UAV)上的应用。对低地球轨道(LEO)卫星环境的多播安全组通信体系结构进行了评估,以确定它是否可以有效地适应成群的无人机并提供安全,可扩展和有效的通信。通过使用MATLAB开发的离散事件计算机仿真,可以使用其他两种常用的体系结构来评估提出的安全体系结构的性能。当群大小,群移动性,多播组加入和离开率发生变化时,将根据组密钥分发和管理方案的可伸缩性和效率来评估性能。度量标准包括在整个仿真期间分配的密钥总数,单个UAV必须重新设置密钥的平均次数,用于对群重新设置密钥的平均带宽,以及在整个仿真期间由UAV进行重新设置密钥所消耗的电池平均百分比。所提出的安全架构可以使用当前技术成功地应用于大量的自主无人机。与其他经过测试和常用的体系结构相比,所提出的体系结构更加有效和可扩展。在所有经过测试的配置中,拟议的体系结构分配的密钥减少了55.2–94.8%,每个UAV减少了59.0–94.9%的密钥更新,减少了55.2–87.9%的带宽用于密钥更新,并减少了电池消耗16.9–85.4%。 John Wiley&Sons,Ltd.于2008年出版。

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