Energy-Efficient Communication Networks via Multiple Aerial Reconfigurable Intelligent Surfaces: DRL and Optimization Approach

电信线路 基站 软件部署 计算机科学 最优化问题 无线 吞吐量 凸优化 分布式计算 高效能源利用 通信系统 发射机功率输出 实时计算 数学优化 计算机网络 正多边形 工程类 算法 电气工程 数学 电信 频道(广播) 发射机 操作系统 几何学
作者
Pyae Sone Aung,Yu Min Park,Yan Kyaw Tun,Zhu Han,Choong Seon Hong
出处
期刊:IEEE Transactions on Vehicular Technology [Institute of Electrical and Electronics Engineers]
卷期号:73 (3): 4277-4292 被引量:19
标识
DOI:10.1109/tvt.2023.3328636
摘要

In the realm of wireless communications in 5G, 6G and beyond, deploying unmanned aerial vehicle (UAV) has been an innovative approach to extend the coverage area due to its easy deployment. Moreover, reconfigurable intelligent surface (RIS) has also emerged as a new paradigm with the goals of enhancing the average sum-rate as well as energy efficiency. By combining these attractive features, an energy-efficient RIS-mounted multiple UAVs (aerial RISs: ARISs) assisted downlink communication system is studied. Due to the obstruction, user equipments (UEs) can have a poor line of sight to communicate with the base station (BS). To solve this, multiple ARISs are implemented to assist the communication between the BS and UEs. Then, the joint optimization problem of deployment of ARIS, ARIS reflecting elements on/off states, phase shift, and power control of the multiple ARISs-assisted communication system is formulated. The problem is challenging to solve since it is mixed-integer, non-convex, and NP-hard. To overcome this, it is decomposed into three sub-problems. Afterward, successive convex approximation (SCA), actor-critic proximal policy optimization (AC-PPO), and whale optimization algorithm (WOA) are employed to solve these sub-problems alternatingly. Finally, extensive simulation results have been generated to illustrate the efficacy of our proposed algorithms.
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