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Power Control and Trajectory Design for UAV-Assisted Communications

机译:无人机辅助通信的功率控制和弹道设计

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In this paper, we consider a multiuser downlink communication system, where ground users are served by a UAV base station flying on an aerial plane. For the sake of computational complexity and energy economy, we propose a polygonal-line trajectory for the UAV base station and each ground user is served one by one while the UAV base station is travelling along one of the line segments on the trajectory. With the polygonal- line trajectory, joint optimization for power control and trajectory design for the UAV base station is investigated to maximize total capacity of all the ground users. Such a problem is decomposed into three subproblems for single-user downlink power profile, transmission energy allocation and waypoints location selection, respectively, and solved via alternate optimization, with which one of the three subproblems is solved given solutions to the other two. Simulation results show that the proposed scheme with optimized power profile and trajectory for the UAV base station outperforms two baselines. We also show that trajectory design significantly impact the system performance and is indispensable in UAV-assisted communications.
机译:在本文中,我们考虑了一种多用户下行链路通信系统,其中地面用户由在飞机上飞行的UAV基站提供服务。为了计算复杂度和能源经济性,我们为UAV基站提出了一条折线轨迹,并且当UAV基站沿着轨迹上的线段之一行进时,每个地面用户都得到了服务。利用折线轨迹,研究了无人机基站功率控制和轨迹设计的联合优化,以最大化所有地面用户的总容量。将该问题分别分解为三个子问题,分别用于单用户下行链路功率配置文件,传输能量分配和航路点位置选择,并通过交替优化解决,用这三个子问题中的一个解决了其他两个问题。仿真结果表明,所提出的无人机基站功率曲线和轨迹优化方案优于两个基线。我们还表明,轨迹设计会显着影响系统性能,并且在无人机辅助通信中必不可少。

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