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Secrecy Energy Efficiency Maximization for UAV-Enabled Mobile Relaying

机译:支持无人机的移动式中继的保密能效最大化

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This paper investigates the secrecy energy efficiency (SEE) maximization problem for unmanned aerial vehicle (UAV) enabled mobile relaying system, where a high-mobility UAV is exploited to assist transmitting confidential information from a ground source to a legitimate ground destination, in the presence of a potential eavesdropper. We aim to maximize the SEE of the UAV by jointly optimizing the communication scheduling, power allocation, and UAV trajectory over a given time horizon. The formulated problem is non-convex that is challenging to be optimally solved. To make the problem more tractable, we decompose the problem into three subproblems, and propose an efficient iterative algorithm that alternately optimizes each block of the variables with the others fixed. Moreover, the practical scenario with uncertain eavesdropper location is investigated to evaluate the performance of the proposed solution. Double circular flight and running track shape flight cases are considered to drawn more insights. Simulation results show that the proposed design significantly improves the SEE of the UAV, as compared to the benchmark schemes.
机译:本文调查了无人驾驶空中车辆(UAV)的移动中继系统的保密能效(参见)最大化问题,其中利用高迁移率UAV来帮助在存在中从地面源传输到合法地面目的地的机密信息潜在的窃听者。我们的目标是通过在给定时间范围内联合优化通信调度,功率分配和UAV轨迹来最大限度地看到无人机。配制的问题是不凸起的,这是挑战的最佳解决。为了使问题更加易于,我们将问题分解为三个子问题,并提出了一种有效的迭代算法,其交替地优化了其他固定的变量的块。此外,研究了具有不确定窃听器位置的实际情况,以评估所提出的解决方案的性能。双圆形航班和运行轨道形状的飞行案例被认为是更多的洞察力。仿真结果表明,与基准方案相比,建议的设计显着改善了无人机的视野。

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