论文标题

节能安全无人机通信系统的联合轨迹和资源分配设计

Joint Trajectory and Resource Allocation Design for Energy-Efficient Secure UAV Communication Systems

论文作者

Cai, Yuanxin, Wei, Zhiqiang, Li, Ruide, Ng, Derrick Wing Kwan, Yuan, Jinhong

论文摘要

在本文中,我们研究了下行链路节能的安全无人驾驶汽车(UAV)通信系统的轨迹和资源分配设计,在该系统中,由Multi-Antenna Jammer辅助的信息无人机为存在多个地面窃听者提供了多个地面用户。资源分配策略和信息无人机的轨迹以及干扰器无人机的干扰策略共同优化,以最大程度地提高系统能效。考虑到窃听者的服务质量(QoS)要求,安全约束以及不完美的通道状态信息(CSI),将联合设计作为非凸优化问题。法式问题通常是棘手的。作为一种妥协方法,该问题分为两个子问题,这些子问题促进了基于交替优化方法的低复杂性次优算法的设计。仿真结果表明,所提出的算法在少数迭代中收敛,并证明了一些有趣的见解:(1)简介无人机的引入促进了信息无人机的高度灵活的轨迹设计,这对于提高系统能源效率至关重要; (2)通过利用Multi-Antenna Jammer带来的空间自由度,我们提出的设计可以将人工噪声集中在窃听器上,从而为系统提供强大的安全含义。

In this paper, we study the trajectory and resource allocation design for downlink energy-efficient secure unmanned aerial vehicle (UAV) communication systems, where an information UAV assisted by a multi-antenna jammer UAV serves multiple ground users in the existence of multiple ground eavesdroppers. The resource allocation strategy and the trajectory of the information UAV, and the jamming policy of the jammer UAV are jointly optimized for maximizing the system energy efficiency. The joint design is formulated as a non-convex optimization problem taking into account the quality of service (QoS) requirement, the security constraint, and the imperfect channel state information (CSI) of the eavesdroppers. The formulated problem is generally intractable. As a compromise approach, the problem is divided into two subproblems which facilitates the design of a low-complexity suboptimal algorithm based on alternating optimization approach. Simulation results illustrate that the proposed algorithm converges within a small number of iterations and demonstrate some interesting insights: (1) the introduction of a jammer UAV facilitates a highly flexible trajectory design of the information UAV which is critical to improving the system energy efficiency; (2) by exploiting the spatial degrees of freedom brought by the multi-antenna jammer UAV, our proposed design can focus the artificial noise on eavesdroppers offering a strong security mean to the system.

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