论文标题

天空中的反射:具有可重构智能表面的安全无人机网络的联合轨迹和被动横梁形成设计

Reflections in the Sky: Joint Trajectory and Passive Beamforming Design for Secure UAV Networks with Reconfigurable Intelligent Surface

论文作者

Long, Hui, Chen, Ming, Yang, Zhaohui, Wang, Bao, Li, Zhiyang, Yun, Xu, Shikh-Bahaei, Mohammad

论文摘要

本文研究了可重新配置的智能表面(RIS)辅助上行无线通信系统的安全能效率的问题,那里配备了RIS的无人驾驶汽车(UAV)作为基地站(BS)和一组用户之间的移动继电器。我们专注于通过共同优化无人机的轨迹,RIS的相移,用户协会和传输功率来最大化系统的安全效率。为了解决这个问题,我们将原始问题分为三个子问题,并提出有效的迭代算法。特别是,使用连续的凸近似方法(SCA)来求解非convex UAV轨迹,RIS的相移和传输功率优化子问题。我们进一步提供了两个方案,以简化相位和轨迹子问题的解决方案。仿真结果表明,与没有任何RI的传统方案相比,所提出的算法会迅速收敛,并且所提出的设计可以提高安全能效率高达38%。

This paper investigates the problem of secure energy efficiency maximization for a reconfigurable intelligent surface (RIS) assisted uplink wireless communication system, where an unmanned aerial vehicle (UAV) equipped with an RIS works as a mobile relay between the base station (BS) and a group of users. We focus on maximizing the secure energy efficiency of the system via jointly optimizing the UAV's trajectory, the RIS's phase shift, users' association and transmit power. To tackle this problem, we divide the original problem into three sub-problems, and propose an efficient iterative algorithm. In particular, the successive convex approximation method (SCA) is applied to solve the nonconvex UAV trajectory, the RIS's phase shift, and transmit power optimization sub-problems. We further provide two schemes to simplify the solution of phase and trajectory sub-problem. Simulation results demonstrate that the proposed algorithm converges fast, and the proposed design can enhance the secure energy efficiency by up to 38\% gains, as compared to the traditional schemes without any RIS.

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