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Improved Multiuser MIMO Unitary Precoding Using Partial Channel State Information and Insights from the Riemannian Manifold

机译:使用部分信道状态信息和黎曼流形的见解改进了多用户MIMO单一预编码

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摘要

Multiple-input multiple-output (MIMO) systems can be leveraged to increase capacity in fading channels. Especially in multiuser downlink communication systems, it has been shown that knowledge of channel state information at the transmitter (CSIT) is critical to leverage the capacity gain available from multiple antennas. When duplexing is performed using time division, CSIT can often be successfully obtained when channel reciprocity is available. CSIT acquisition, however, is much more difficult in frequency division duplexing. Sending feedback on the uplink has been shown to be a powerful technique to improve downlink performance in single user MIMO systems. The basic idea is to restrict the CSIT to a B bit codebook so that the mobiles can easily transmit these bits on the uplink. In this paper, we consider the multiuser downlink model with unitary precoding when there is a codebook consisting of 2B unitary matrices that the precoder is restricted to lie in. This codebook is designed offline and known to both the basestation and all users. Each user sends back signal-to-interference plus noise ratio (SINR) information along with binary feedback about the unitary precoder. Based on the CSIT received on the uplink, the basestation selects one of the unitary matrices in the codebook to maximize the sum-rate. For this set-up, we first analyze the sum-rate performance of the unitary precoding scheme. We then show that the codebook of unitary precoders represents a collection of points in a special kind of manifold and show how the achievable sum-rate performance relates to the minimum distance of the codebook points in this space. Finally, we present a framework for constructing the codebook to maximize this minimum distance. Monte Carlo simulation results are presented to show the sum-rate performance of the proposed codebook design.
机译:可以利用多输入多输出(MIMO)系统来增加衰落信道中的容量。特别是在多用户下行链路通信系统中,已经表明,在发射机(CSIT)上了解信道状态信息对于利用多个天线的容量增益至关重要。当使用时分进行双工时,通常在通道互惠可用时可以成功获得CSIT。但是,CSIT采集在频分双工中要困难得多。在上行链路上发送反馈已被证明是一种改善单用户MIMO系统中下行链路性能的强大技术。基本思想是将CSIT限制为B位码本,以便移动台可以轻松地在上行链路上传输这些位。在本文中,当存在一个由2B ary矩阵组成的码本受限于预编码器的情况下,我们考虑采用unit预编码的多用户下行链路模型。该码本是离线设计的,基站和所有用户都知道。每个用户发送回信号干扰加噪声比(SINR)信息以及有关单一预编码器的二进制反馈。基于在上行链路上接收到的CSIT,基站选择码本中的the矩阵之一以使总速率最大化。对于此设置,我们首先分析单一预编码方案的总速率性能。然后,我们说明unit预编码器的代码簿代表一种特殊流形中的点集合,并说明可达到的总速率性能如何与该空间中代码簿点的最小距离相关。最后,我们提出了一个用于构造码本以最大化此最小距离的框架。给出了蒙特卡罗仿真结果,以显示所提出的码本设计的总速率性能。

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