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Extending the user capacity of MU-MIMO systems with low detection complexity and receive diversity

机译:扩展具有低检测复杂度和接收分集的mU-mImO系统的用户容量

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摘要

Multiple-input multiple-output (MIMO) based technologies are considered as an integral part of the upcoming 5G communications to fulfil the ever-increasing demands of wireless applications with high spectral efficiency requirements. However, in uplink multiuser MIMO (MU-MIMO) channels, the number of allowed users is limited by the number of receive antennas associated with radio frequency (RF) chains at the base-station and the complexity burden of multiuser detection (MUD). In this paper, a novel group layer MU-MIMO scheme with low complexity MUD is proposed to increase the number of served users well beyond the available RF chains. By taking the advantage of power control and inherent path loss in cellular systems, the allowed users are divided into groups based on their received power. Efficient group power allocation and group layer MUD (GL-MUD) are utilized to provide a valuable tradeoff between complexity and achieved performance. Furthermore, when more receive antennas than RF chains is implemented, a generalized norm based antenna selection algorithm is proposed to enhance the error performance. Symbol error probability expressions are derived and the effectiveness of proposed scheme is demonstrated through numerical simulations compared with the conventional MU-MIMO and non-orthogonal multiple-access (NOMA) systems over Rayleigh fading channels. The results show a substantial increase in user capacity up to two-fold for the available number of RF chains. In addition, significant signal-to-noise ratio gain is achieved using GL-MUD compared with different MUD techniques.
机译:基于多输入多输出(MIMO)的技术被视为即将到来的5G通信的组成部分,以满足对无线应用不断增长的高频谱效率要求。但是,在上行链路多用户MIMO(MU-MIMO)信道中,所允许的用户数量受到基站与射频(RF)链相关联的接收天线数量以及多用户检测(MUD)复杂性负担的限制。在本文中,提出了一种具有低复杂度MUD的新颖的组层MU-MIMO方案,以使服务用户的数量大大超出可用的RF链。通过利用蜂窝系统中功率控制和固有路径损耗的优势,被允许的用户可以根据其接收到的功率分为几类。有效的组功率分配和组层MUD(GL-MUD)用于在复杂性和实现的性能之间提供有价值的折衷。此外,当实现比RF链更多的接收天线时,提出了一种基于通用规范的天线选择算法,以提高差错性能。推导了符号错误概率表达式,并通过数值仿真与瑞利衰落信道上的常规MU-MIMO和非正交多址(NOMA)系统进行了比较,证明了该方案的有效性。结果表明,对于可用数量的RF链,用户容量显着增加了两倍。此外,与不同的MUD技术相比,使用GL-MUD可获得显着的信噪比增益。

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