English

Rate-Splitting Multiple Access for 6G Networks: Ten Promising Scenarios and Applications

Information Theory 2023-06-23 v1 Signal Processing math.IT

Abstract

In the upcoming 6G era, multiple access (MA) will play an essential role in achieving high throughput performances required in a wide range of wireless applications. Since MA and interference management are closely related issues, the conventional MA techniques are limited in that they cannot provide near-optimal performance in universal interference regimes. Recently, rate-splitting multiple access (RSMA) has been gaining much attention. RSMA splits an individual message into two parts: a common part, decodable by every user, and a private part, decodable only by the intended user. Each user first decodes the common message and then decodes its private message by applying successive interference cancellation (SIC). By doing so, RSMA not only embraces the existing MA techniques as special cases but also provides significant performance gains by efficiently mitigating inter-user interference in a broad range of interference regimes. In this article, we first present the theoretical foundation of RSMA. Subsequently, we put forth four key benefits of RSMA: spectral efficiency, robustness, scalability, and flexibility. Upon this, we describe how RSMA can enable ten promising scenarios and applications along with future research directions to pave the way for 6G.

Keywords

Cite

@article{arxiv.2306.12978,
  title  = {Rate-Splitting Multiple Access for 6G Networks: Ten Promising Scenarios and Applications},
  author = {Jeonghun Park and Byungju Lee and Jinseok Choi and Hoon Lee and Namyoon Lee and Seok-Hwan Park and Kyoung-Jae Lee and Junil Choi and Sung Ho Chae and Sang-Woon Jeon and Kyung Sup Kwak and Bruno Clerckx and Wonjae Shin},
  journal= {arXiv preprint arXiv:2306.12978},
  year   = {2023}
}

Comments

17 pages, 6 figures, submitted to IEEE Network Magazine