This paper investigates an average secrecy rate (ASR) maximization problem for an unmanned aerial vehicle (UAV) enabled wireless communication system, wherein a UAV is employed to deliver confidential information to a ground destination in the presence of a terrestrial passive eavesdropper. By employing an artificial noise (AN) injection based secure two-phase transmission protocol, we aim at jointly optimizing the UAV's trajectory, network transmission power, and AN power allocation over a given time horizon to enhance the ASR performance. Specifically, we divide the original non-convex problem into four subproblems, and propose a successive convex approximation based efficient iterative algorithm to solve it suboptimally with guaranteed convergence. Simulation results demonstrate significant security advantages of our designed scheme over other known benchmarks, particularly for stringent flight durations.
翻译:本文件调查无人驾驶飞行器无线通信系统(无人驾驶飞行器)无线通信系统的平均保密率(ASR)最大化问题,无人驾驶飞行器在地面被动窃听器面前用来向地面目的地提供机密信息。通过使用基于人造噪音(AN)注射的两阶段安全传输协议,我们的目标是共同优化无人驾驶飞行器轨道、网络传输动力和AN在特定时间范围内的权力分配,以提高无人驾驶飞行器的性能。具体地说,我们将原非阴道问题分为四个子问题,并提议连续采用基于电流近似的有效迭接算法,以与保证的趋同相匹配的方式解决机密信息。模拟结果表明,我们设计的计划比其他已知基准,特别是严格的飞行期限,在安全方面有很大的优势。