不完全CSIT下FDD大规模MIMO的分层速率分割策略

Mingbo Dai, B. Clerckx, D. Gesbert, G. Caire
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引用次数: 8

摘要

在多用户MIMO广播信道中,当发送端信道状态信息不完备时,多用户干扰会影响信道的速率性能。为了解决干扰问题,最近提出了一种速率分割(Rate-Splitting, RS)方法,该方法将一个用户的消息分成公共部分和私有部分,并将公共消息叠加在私有消息之上。公共消息从公共代码本中提取,并应由所有用户解码。在本文中,我们提出了一种新的通用框架,称为分层速率分割(HRS),它特别适合于FDD大规模MIMO系统。HRS同时传输针对每个用户的私有消息和两种通用消息,这两种消息分别可由所有用户和一部分用户解码。我们分析了不完全CSIT条件下HRS的渐近和速率。导出了一种封闭形式的功率分配,从而深入了解系统参数的影响。最后,仿真结果验证了HRS在各种基线上的显著求和速率增益1。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A hierarchical rate splitting strategy for FDD massive MIMO under imperfect CSIT
In a multiuser MIMO broadcast channel, the rate performance is affected by the multiuser interference when the Channel State Information at the Transmitter (CSIT) is imperfect. To tackle the interference problem, a Rate-Splitting (RS) approach has been proposed recently, which splits one user's message into a common and a private part, and superimposes the common message on top of the private messages. The common message is drawn from a public codebook and should be decoded by all users. In this paper, we propose a novel and general framework, denoted as Hierarchical Rate Splitting (HRS), that is particularly suited to FDD massive MIMO systems. HRS simultaneously transmits private messages intended to each user and two kinds of common messages that can be decoded by all users and by a subset of users, respectively. We analyse the asymptotic sum rate of HRS under imperfect CSIT. A closed-form power allocation is derived which provides insights into the effects of system parameters. Finally, simulation results validate the significant sum rate gain of HRS over various baselines1.
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