Precoding for MU-MIMO system in low scattering channel environments

Y. Chai, Qinghe Du, Pinyi Ren
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Abstract

In Multi-user Multi-input Multi-output (MU-MIMO) systems, the most popular method to eliminate the multi-user interferences is projecting every user's precoding matrix into the null space of the rests' channels, so that data streams intended for different users would be transmitted in orthogonal spaces. However, while users having mutual correlated channels caused by the increased density of smart phones nowadays, this method would make correlated subspaces unused by data transmission for any user, and cause the reduction of overall throughput. To address the corresponding issue, we in this paper study the efficient precoding scheme that can eliminate the multi-user interferences as well as maximize the system capacity for MU-MIMO system in the spatially low scattering channel environments. Unlike the existing methods, our approach allows high-QoS-requirement users' precoding matrices to lie in the correlated subspaces between the channels of these primary users and the rests, so that more data streams can be transmitted to the primary ones simultaneously. In the mean time, in order to avoid the multi-user interferences, we require that every correlated channel can only be occupied by one user's precoding matrix. Following the aforementioned principles, we propose a Correlated Channels Utilized Precoding (CCUP) scheme for MU-MIMO system. Under this scheme, we also propose a different utilizing criterion of correlated subspaces to satisfy the networks with same-QoS-requirement services, in which every user's precoding space can be broadened by adopting partial correlated subspaces, termed Fair CCUP (F-CCUP) scheme. Simulation results show that while keeping no multi-user interferences, our proposed CCUP scheme can greatly increase the number of allowed independent data streams, and improve the overall capacity of MU-MIMO system in spatially correlated propagation environments compared to the existing approach.
低散射信道环境下MU-MIMO系统的预编码
在多用户多输入多输出(MU-MIMO)系统中,消除多用户干扰最常用的方法是将每个用户的预编码矩阵投影到剩余信道的零空间中,使不同用户的数据流在正交空间中传输。然而,由于现在智能手机密度的增加,用户之间存在相互关联的信道,这种方法会使任何用户的相关子空间都没有被数据传输使用,从而导致整体吞吐量的降低。为了解决这一问题,本文研究了在空间低散射信道环境下MU-MIMO系统在消除多用户干扰的同时最大限度地提高系统容量的有效预编码方案。与现有的方法不同,我们的方法允许高qos要求的用户的预编码矩阵位于这些主用户通道和其他通道之间的相关子空间中,从而可以同时向主用户传输更多的数据流。同时,为了避免多用户干扰,我们要求每个相关信道只能被一个用户的预编码矩阵占用。根据上述原则,我们提出了一种用于MU-MIMO系统的相关信道预编码(CCUP)方案。在此方案下,我们还提出了一种不同的相关子空间利用准则,以满足具有相同qos要求的业务的网络,其中每个用户的预编码空间可以通过采用部分相关子空间来扩展,称为公平CCUP (F-CCUP)方案。仿真结果表明,该方案在不受多用户干扰的情况下,大大增加了独立数据流的数量,提高了MU-MIMO系统在空间相关传播环境下的整体容量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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