Sadat Hesham, Abaza Mohamed, Mansour Ali, Alfalou Ayman
LABSTICC UMR CNRS 6285, ENSTA-Bretagne, 29806 Brest, France.
L@bISEN, Equipe LSL, Yncrea Ouest, 20 Rue Cuirasse Bretagne, 29200 Brest, France.
Sensors (Basel). 2022 Feb 11;22(4):1395. doi: 10.3390/s22041395.
Visible light communication (VLC) has become a promising technology for high data rate communications and an attractive complementary to conventional radio frequency (RF) communication. VLC is a secure, energy efficient and cost-effective technology that exploits the existing infrastructure, particularly in indoor environments, for wireless data transmission. Nevertheless, the main limitation of developing high data rate VLC links is the narrow modulation bandwidth of light-emitting diodes (LEDs), which is in the megahertz range. The power domain nonorthogonal multiple access (PD-NOMA) scheme is envisioned to address several challenges in VLC systems. In this paper, we present a detailed overview of PD-NOMA based VLC systems. Moreover, we introduce insights on some PD-NOMA VLC system constraints and challenges such as power allocation, clipping effect, MIMO and security. Finally, we provide open research problems as well as possible directions for future research to pave the way for the implementation of PD-NOMA VLC systems.
可见光通信(VLC)已成为一种用于高数据速率通信的有前景的技术,并且是对传统射频(RF)通信具有吸引力的补充技术。VLC是一种安全、节能且经济高效的技术,它利用现有的基础设施,特别是在室内环境中,进行无线数据传输。然而,开发高数据速率VLC链路的主要限制是发光二极管(LED)的调制带宽较窄,处于兆赫兹范围内。功率域非正交多址接入(PD-NOMA)方案旨在解决VLC系统中的若干挑战。在本文中,我们详细概述了基于PD-NOMA的VLC系统。此外,我们介绍了一些关于PD-NOMA VLC系统约束和挑战的见解,如功率分配、削波效应、多输入多输出(MIMO)和安全性。最后,我们提供了开放的研究问题以及未来研究的可能方向,为PD-NOMA VLC系统的实施铺平道路。