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Joint Spatial Division and Multiplexing: Opportunistic Beamforming, User Grouping and Simplified Downlink Scheduling

机译:联合空间划分和复用:机会波束成形,用户分组和简化的下行链路调度

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Joint Spatial Division and Multiplexing (JSDM) is a downlink multiuser MIMO scheme recently proposed by the authors in order to enable “massive MIMO” gains and simplified system operations for Frequency Division Duplexing (FDD) systems. The key idea lies in partitioning the users into groups with approximately similar channel covariance eigenvectors and serving these groups by using two-stage downlink precoding scheme obtained as the concatenation of a pre-beamforming matrix, that depends only on the channel second-order statistics, with a multiuser MIMO linear precoding matrix, which is a function of the effective channels including pre-beamforming. The role of pre-beamforming is to reduce the dimensionality of the effective channel by exploiting the near-orthogonality of the eigenspaces of the channel covariances of the different user groups. This paper is an extension of our initial work on JSDM, and addresses some important practical issues. First, we focus on the regime of finite number of antennas and large number of users and show that JSDM with simple opportunistic user selection is able to achieve the same scaling law of the system capacity with full channel state information. Next, we consider the large-system regime (both antennas and users growing large) and propose a simple scheme for user grouping in a realistic setting where users have different angles of arrival and angular spreads. Finally, we propose a low-overhead probabilistic scheduling algorithm that selects the users at random with probabilities derived from large-system random matrix analysis. Since only the pre-selected users are required to feedback their channel state information, the proposed scheme realizes important savings in the CSIT feedback.
机译:联合空间分割与复用(JSDM)是作者最近提出的一种下行链路多用户MIMO方案,目的是实现频分双工(FDD)系统的“大规模MIMO”增益和简化的系统操作。关键思想在于,将用户划分为具有近似相似的信道协方差特征向量的组,并通过使用两级下行链路预编码方案(作为仅与信道二阶统计量相关的级联而获得)来为这些组提供服务,多用户MIMO线性预编码矩阵,它是包括预波束形成在内的有效信道的函数。预波束成形的作用是通过利用不同用户组的信道协方差本征空间的近正交性来减少有效信道的维数。本文是对JSDM最初工作的扩展,并解决了一些重要的实际问题。首先,我们关注有限数量的天线和大量用户的情况,并表明具有简单机会用户选择的JSDM能够在具有完整信道状态信息的情况下达到系统容量的相同缩放定律。接下来,我们考虑大型系统的情况(天线和用户都在变大),并提出了一种在实际环境中对用户进行分组的简单方案,其中用户具有不同的到达角度和角度扩展。最后,我们提出了一种低开销的概率调度算法,该算法可以根据大系统随机矩阵分析得出的概率随机选择用户。由于仅需要预先选择的用户来反馈其信道状态信息,因此该方案实现了CSIT反馈方面的重要节省。

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