论文标题

可见光通信的光率分拆多重访问

Optical Rate-Splitting Multiple Access for Visible Light Communications

论文作者

Naser, Shimaa, Bariah, Lina, Jaafar, Wael, Muhaidat, Sami, Sofotasios, Paschalis C., Al-Qutayri, Mahmoud, Dobre, Octavia A.

论文摘要

连接设备的扩散和每种设备的出现是宽带无线网络的主要挑战。这需要范式朝着开发下一代无线系统的创新技术的发展。主要的挑战之一是由于近年来前所未有的宽带渗透率,频谱的稀缺性。一个有前途的解决方案是可见光通信(VLC)的建议,它探索了不受管制的可见光光谱以实现高速通信,除了有效的照明外。该解决方案提供了更宽的带宽,可以适应室内用户无处不在的宽带连接,并从蜂窝网络中卸载数据流量。尽管VLC是安全的,并且能够克服RF系统的缺点,但它具有几个限制,例如有限的调制带宽。在这方面,最近提出了解决方案以克服这一限制。特别是,在VLC的背景下,已经考虑了最初针对RF系统提出的最常见的正交和非正交多访问技术,例如,空间划分多重访问(SDMA)和NOMA。尽管他们有希望获得的收益,但这些技术的性能还是有限的。因此,在本文中,首次在VLC网络中首次介绍和研究了一种新的和广义的多重访问技术,称为速率分类多重访问(RSMA)。我们首先提供了VLC系统中使用的关键多访问技术的概述。然后,我们提出了将RSMA与VLC系统集成的第一种全面方法。在我们提出的框架中,SINR表达式被得出并用于评估两用户方案的加权总和(WSR)。我们的结果说明了RSMA在概括Noma和SDMA方面的灵活性,以及​​在VLC环境中其WSR优势。

The proliferation of connected devices and emergence of internet-of-everything represent a major challenge for broadband wireless networks. This requires a paradigm shift towards the development of innovative technologies for next generation wireless systems. One of the key challenges is the scarcity of spectrum, owing to the unprecedented broadband penetration rate in recent years. A promising solution is the proposal of visible light communications (VLC), which explores the unregulated visible light spectrum to enable high-speed communications, in addition to efficient lighting. This solution offers a wider bandwidth that can accommodate ubiquitous broadband connectivity to indoor users and offload data traffic from cellular networks. Although VLC is secure and able to overcome the shortcomings of RF systems, it suffers from several limitations, e.g., limited modulation bandwidth. In this respect, solutions have been proposed recently to overcome this limitation. In particular, most common orthogonal and non-orthogonal multiple access techniques initially proposed for RF systems, e.g., space-division multiple access (SDMA) and NOMA, have been considered in the context of VLC. In spite of their promising gains, the performance of these techniques is somewhat limited. Consequently, in this article a new and generalized multiple access technique, called rate-splitting multiple access (RSMA), is introduced and investigated for the first time in VLC networks. We first provide an overview of the key multiple access technologies used in VLC systems. Then, we propose the first comprehensive approach to the integration of RSMA with VLC systems. In our proposed framework, SINR expressions are derived and used to evaluate the weighted sum rate (WSR) of a two-user scenario. Our results illustrate the flexibility of RSMA in generalizing NOMA and SDMA, and its WSR superiority in the VLC context.

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