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Secrecy and Covert Communications Against UAV Surveillance via Multi-Hop Networks

机译:通过多跳网络对免受UAV监控的保密和隐蔽通信

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The deployment of unmanned aerial vehicle (UAV) for surveillance and monitoring gives rise to the confidential information leakage challenge in both civilian and military environments. The security and covert communication problems for a pair of terrestrial nodes against UAV surveillance are considered in this paper. To overcome the information leakage and increase the transmission reliability, a multi-hop relaying strategy is deployed. We aim to optimize the throughput by carefully designing the parameters of the multi-hop network, including the coding rates, transmit power, and required number of hops. In the secure transmission scenario, the expressions of the connection probability and secrecy outage probability of an end-to-end path are derived and the closed-form expressions of the optimal transmit power, transmission and secrecy rates under a fixed number of hops are obtained. In the covert communication problem, under the constraints of the detection error rate and aggregate power, the sub-problem of transmit power allocation is a convex problem and can be solved numerically. Simulation shows the impact of network settings on the transmission performance. The trade-off between secrecy/covertness and efficiency of the multi-hop transmission is discussed which leads to the existence of the optimal number of hops.
机译:无人驾驶车辆(UAV)的监测和监测部署导致民用和军事环境中的机密信息泄漏挑战。本文考虑了对UAV监控的一对地面节点的安全性和隐蔽通信问题。为了克服信息泄漏并提高传输可靠性,部署了多跳中继策略。我们的目标是通过仔细设计多跳网络的参数来优化吞吐量,包括编码率,发射功率和跳数。在安全传输场景中,导出端到端路径的连接概率和保密性中断概率的表达,并且获得了在固定数量的跳跃下的最佳发射功率,传输和保密率的闭合形式表达式。在封面通信问题中,在检测误差率和聚合功率的约束下,发射功率分配的子问题是凸面问题,可以在数字上解决。仿真显示网络设置对传输性能的影响。讨论了秘密/隐蔽性和效率之间的权衡,这将导致存在最佳跃点的跃点。

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