论文标题

关于RIS辅助MU-MISO MMWAVE Communications的能源效率和公平性最大化

On Energy Efficiency and Fairness Maximization in RIS-Assisted MU-MISO mmWave Communications

论文作者

Magbool, Ahmed, Kumar, Vaibhav, Flanagan, Mark F.

论文摘要

可重新配置的智能表面(RISS)被认为是克服毫米波(MMWave)频段中阻塞问题的有前途解决方案。能源效率是具有大量天线的MMWave系统中的重要性能指标。但是,由于MMWave系统的严重路径损失,资源分配算法倾向于分配大部分资源,以使频道增加的用户受益。在本文中,我们提出了一种基于词典学的方法,以找到最佳的功率分配,RIS相移矩阵和模拟预言,从而最大程度地提高了能源效率和用户公平。我们在两个阶段解决了相应的多目标优化问题。在第一阶段,我们最大程度地提高了能源效率,在第二阶段,我们最大程度地提高了受到最低能效限制的公平性。我们提出了一个交替的优化过程,以解决每个阶段的优化问题。使用Dinkelbach的方法在第一阶段发现了最佳功率分配,并在第二阶段使用凸优化技术,使用梯度上升算法发现RIS相移矩阵,并使用光束对齐确定模拟编码器。数值结果表明,提出的算法可以通过以较小的和可控制的能源效率降低来提高最低加权速率来实现能源效率和公平性之间的良好权衡。

Reconfigurable intelligent surfaces (RISs) are considered to be a promising solution to overcome the blockage issue in the millimeter-wave (mmWave) band. Energy efficiency is an important performance metric in mmWave systems with a large number of antennas. However, due to the severe path loss in mmWave systems, resource allocation algorithms tend to allocate most of the resources for the benefit of the users with higher channel gains. In this paper, we propose a lexicographic-based approach to find the optimal power allocation, RIS phase shift matrix, and analog precoders that maximize both energy efficiency and user fairness. We solve the corresponding multi-objective optimization problem in two stages. In the first stage, we maximize the energy efficiency, and in the second stage we maximize the fairness subject to a minimum energy efficiency constraint. We propose an alternating optimization procedure to solve the optimization problem in each stage. The optimal power allocation is found using Dinkelbach's method in the first stage and using convex optimization techniques in the second stage, the RIS phase shift matrix is found using a gradient ascent algorithm, and the analog precoder is determined using beam alignment. Numerical results show that the proposed algorithm can achieve an excellent trade-off between the energy efficiency and fairness by boosting the minimum weighted rate with a minor and controllable reduction in the energy efficiency.

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