RIS辅助多用户空对地通信网络中的无人机轨迹和能效优化

IF 4.4 2区 地球科学 Q1 REMOTE SENSING
Drones Pub Date : 2023-04-15 DOI:10.3390/drones7040272
Yuanyuan Yao, Ke-wei Lv, Sai Huang, Xuehua Li, Wei Xiang
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引用次数: 4

摘要

提出了一种由可重构智能地面(RIS)和无人机(UAV)组成的空对地下行链路通信网络。结合资源分配策略,提高了系统的能源效率。具体而言,配备RIS的无人机从初始位置开始,部署节能无人机部署(EEUD)算法,共同优化无人机轨迹、RIS相移和BS发射功率,从而获得准最优部署位置,从而提高能源效率。首先,使用块坐标下降(BCD)算法对RIS相移进行优化,以处理非凸不等式约束,然后将其与Dinkelbach算法相结合,以解决BS发射功率的资源分配问题。最后,为了求解无人机飞行轨迹优化问题,将复杂目标函数转化为凸函数,得到了无人机的最优飞行轨迹。我们的仿真结果表明,EEUD算法获得的准最优部署位置在能效方面优于其他部署策略。此外,无人机在搜索部署位置的轨迹上的瞬时能量效率优于其他比较轨迹。此外,RIS辅助的多用户空对地通信网络可以比传统的放大和前向(AF)中继在能效上提高145%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
UAV Trajectory and Energy Efficiency Optimization in RIS-Assisted Multi-User Air-to-Ground Communications Networks
An air-to-ground downlink communication network consisting of a reconfigurable intelligent surface (RIS) and unmanned aerial vehicle (UAV) is proposed. In conjunction with a resource allocation strategy, the system’s energy efficiency is improved. Specifically, the UAV equipped with a RIS starts from an initial location, and an energy-efficient unmanned aerial vehicle deployment (EEUD) algorithm is deployed to jointly optimize the UAV trajectory, RIS phase shifts, and BS transmit power, so as to obtain a quasi-optimal deployment location and hence improve the energy efficiency. First, the RIS phase shifts are optimized by using the block coordinate descent (BCD) algorithm to deal with the nonconvex inequality constraint, and then integrated with the Dinkelbach algorithm to address the resource allocation problem of the BS transmit power. Finally, for solving the UAV trajectory optimization problem, the complex objective function is transformed into a convex function, and the optimal UAV flight trajectory is obtained. Our simulation results show that the quasi-optimal deployment location obtained by the EEUD algorithm is superior to other deployment strategies in energy efficiency. Moreover, the instantaneous energy efficiency of the UAVs along the trajectory of searching the deployment location is better than other comparison trajectories. Furthermore, the RIS-assisted multi-user air-to-ground communication network can offer up to 145% improvement in energy efficiency over the traditional amplify-and-forward (AF) relay.
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来源期刊
Drones
Drones Engineering-Aerospace Engineering
CiteScore
5.60
自引率
18.80%
发文量
331
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