论文标题

可重新配置的智能表面:原理和机遇

Reconfigurable Intelligent Surfaces: Principles and Opportunities

论文作者

Liu, Yuanwei, Liu, Xiao, Mu, Xidong, Hou, Tianwei, Xu, Jiaqi, Di Renzo, Marco, Al-Dhahir, Naofal

论文摘要

可重新配置的智能表面(RISS),也称为智能反射表面(IRSS)或大型智能表面(LISS),通过智能地重新配置无线传播环境来增强无线网络的能力和覆盖能力,从而受到了极大的关注。因此,RIS被认为是通信网络第六代(6G)的有前途的技术。在这种情况下,我们将全面概述RISS的最新概述,重点关注其运营原则,绩效评估,波束成形设计和资源管理,机器学习对RIS增强无线网络的应用,以及RISS与其他新兴技术的集成。我们从物理和通信的角度描述了RIS的基本原理,基于我们介绍对多Antenna辅助RIS系统的绩效评估。此外,我们系统地调查了RIS增强的无线网络的现有设计,其中包括性能分析,信息理论和性能优化的观点。此外,我们调查了现有的研究贡献,这些研究贡献将机器学习应用于动态场景中的挑战,例如无线渠道的随机波动和RIS增强无线网络中的用户移动性。最后但并非最不重要的一点是,我们确定了与RIS和其他新兴技术相关的主要问题和研究机会,以应用于下一代网络。

Reconfigurable intelligent surfaces (RISs), also known as intelligent reflecting surfaces (IRSs), or large intelligent surfaces (LISs), have received significant attention for their potential to enhance the capacity and coverage of wireless networks by smartly reconfiguring the wireless propagation environment. Therefore, RISs are considered a promising technology for the sixth-generation (6G) of communication networks. In this context, we provide a comprehensive overview of the state-of-the-art on RISs, with focus on their operating principles, performance evaluation, beamforming design and resource management, applications of machine learning to RIS-enhanced wireless networks, as well as the integration of RISs with other emerging technologies. We describe the basic principles of RISs both from physics and communications perspectives, based on which we present performance evaluation of multi-antenna assisted RIS systems. In addition, we systematically survey existing designs for RIS-enhanced wireless networks encompassing performance analysis, information theory, and performance optimization perspectives. Furthermore, we survey existing research contributions that apply machine learning for tackling challenges in dynamic scenarios, such as random fluctuations of wireless channels and user mobility in RIS-enhanced wireless networks. Last but not least, we identify major issues and research opportunities associated with the integration of RISs and other emerging technologies for applications to next-generation networks.

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