College of Information Science and Technology, Donghua University, Shanghai 201620, China.
Engineering Research Center of Digitized Textile and Apparel Technology, Ministry of Education, Shanghai 201620, China.
Sensors (Basel). 2019 Mar 5;19(5):1126. doi: 10.3390/s19051126.
Traditional wireless security focuses on preventing unmanned aerial vehicle (UAV) communications from suspicious eavesdropping and/or jamming attacks. However, there is a growing need for governments to keep malicious UAV communications under legitimate surveillance. This paper first investigates a new surveillance paradigm for monitoring suspicious UAV communications via jamming suspicious UAVs. Due to the power consumption limitation, the choice of eavesdropping and jamming will reflect the performance of the UAVs communication. Therefore, the paper analyses the UAV's eavesdropping and jamming models in different cases, and then proposes the model to optimize the data package in the constraints of lower power consumption, which can be solved by the proposed selection policy. The simulation results validate our proposed selection policy in terms of power consumption and eavesdropped packets. In different fading models, power consumption increases with time, regardless of distances, and our proposed policy performs better in Weibull fading channels in terms of eavesdropped packets.
传统的无线安全侧重于防止无人机 (UAV) 通信受到可疑的窃听和/或干扰攻击。然而,政府越来越需要对恶意无人机通信进行合法监控。本文首先研究了一种新的监控范式,通过干扰可疑的无人机来监控可疑的无人机通信。由于功耗限制,窃听和干扰的选择将反映无人机通信的性能。因此,本文分析了在不同情况下无人机的窃听和干扰模型,然后提出了在低功耗约束下优化数据包的模型,该模型可以通过所提出的选择策略来解决。仿真结果验证了我们提出的选择策略在功耗和窃听数据包方面的有效性。在不同的衰落模型中,无论距离如何,功耗都会随着时间的推移而增加,并且在 Weibull 衰落信道中,我们提出的策略在窃听数据包方面表现更好。