论文标题
RIS辅助可见光通信系统:教程
RIS-Assisted Visible Light Communication Systems: A Tutorial
论文作者
论文摘要
蜂窝网络第五代(5G)的最新发展导致了全球部署。作为实施的一部分,必须解决的挑战之一是跳过区问题,当物体阻碍信号的传输时,就会发生这种挑战。信号障碍物可以显着降低射频(RF)和室内可见光通信(VLC)系统的信噪比,而障碍物可以完全破坏自由空间光学(FSO)系统的数据传输。因此,必须解决跳过的困境,以确保5G和网络之外的有效运行。近年来,比继电器更有效的可重构智能表面(RISS)已被广泛接受为减轻跳过区域并提供可重新配置的无线电环境的方法。但是,关于光学无线通信(OWC)系统RIS的研究有限。本文旨在为利用RISS技术提供有关室内VLC系统的全面教程。本文讨论了VLC和RISS的基础知识,并重新引入了OWC系统的RISS,重点是RIS辅助室内VLC系统。我们还提供了有关光学riss的全面概述,并检查了光学RISS,RF-RISS和光电继电器之间的差异。此外,我们详细讨论了如何使用RISS来克服VLC系统中的视线障碍物和设备方向问题,同时揭示了关键挑战,例如RIS元素方向设计,RIS元素,用于访问点/用户分配设计以及RIS数组定位设计问题,需要研究。此外,我们讨论并提出了一些有关将光学RIS与其他新兴技术集成的研究问题,并突出了RIS辅助VLC系统的其他重要研究方向。
Recent development of the fifth-generation (5G) of cellular networks has led to their deployment worldwide. As part of the implementation, one of the challenges that must be addressed is the skip-zone problem, which occurs when objects obstruct the transmission of signals. A signal obstruction can significantly reduce the signal-to-noise ratio in radio frequency (RF) and indoor visible light communications (VLC) systems, whereas the obstruction can completely disrupt data transmission in free-space optical (FSO) systems. Therefore, the skip-zone dilemma must be resolved to ensure the efficient operation of 5G and beyond networks. In recent years, reconfigurable intelligent surfaces (RISs) that are more efficient than relays have become widely accepted as a method of mitigating skip-zones and providing reconfigurable radio environments. However, there have been limited studies on RISs for optical wireless communication (OWC) systems. This paper aims to provide a comprehensive tutorial on indoor VLC systems utilizing RISs technology. The article discusses the basics of VLC and RISs and reintroduces RISs for OWC systems, focusing on RIS-assisted indoor VLC systems. We also provide a comprehensive overview of optical RISs and examine the differences between optical RISs, RF-RISs, and optical relays. Furthermore, we discuss in detail how RISs can be used to overcome line-of-sight blockages and device orientation issue in VLC systems while revealing key challenges such as RIS element orientation design, RIS elements to access point/user assignment design, and RIS array positioning design problems that need to be studied. Moreover, we discuss and propose several research problems on integrating optical RISs with other emerging technologies and highlight other important research directions for RIS-assisted VLC systems.