Rate-splitting multiple access (RSMA), relying on linearly precoded rate-splitting (RS) at the transmitter and successive interference cancellation (SIC) at the receivers has emerged as a powerful and flexible multiple access strategy for downlink multi-user multi-antenna systems. Through message splitting and the transmission of both common and private messages, RSMA has been demonstrated to be a robust interference management strategy which enables partially decoding interference and partially treating interference as noise. In this work, we consider the application of RSMA in a multigroup multicast scenario, where each message is intended to a group of users. By leveraging the recent results on the max-min fair (MMF) optimization problem of RSMA-based multigroup multicast beamforming with imperfect channel state information at the transmitter (CSIT), we investigate the design of the physical (PHY) layer including finite length polar coding, finite alphabet modulation, adaptive modulation and coding (AMC) algorithm, and SIC receivers, etc. Link-level simulation (LLS) results verify the superiority of RSMA-based multigroup multicast transmission compared with space-division multiple access (SDMA)-based strategy in both cellular systems and multibeam satellite systems.
翻译:通过信息分解和传输普通和私人信息,RSMA已证明是一种强有力的干扰管理战略,可以部分解码干扰,部分将干扰处理为噪音。在这项工作中,我们考虑在多组多播情景中应用RSMA,每种信息都针对一组用户。通过利用基于RSMA的多组最大集市(MMF)最新结果的优化问题与发射机(CSIT)不完善的频道状态信息形成,我们调查物理(PHY)层的设计,包括有限极地对流、固定字母调制、适应调制和调制(AMC)算法和SIC接收器等。