From MU massive MISO to pathwise MU massive MIMO

Yohan Lejosne, M. Bashar, D. Slock, Y. Yuan-Wu
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引用次数: 7

Abstract

The Interfering Broadcast Channel (IBC) applies to the downlink of cellular and heterogenous networks, which are limited by multi-user (MU) interference. The interference alignment (IA) concept has shown that interference does not need to be inevitable. In particular spatial IA in MIMO IBC allows for low latency. However, IA requires perfect and typically global Channel State Information at the Transmitter(s) (CSIT), whose acquisition does not scale with network size. Hence, designs that are optimal in terms of Degrees of Freedom (DoF) may not be so in terms of more relevant net DoF, accounting for CSI acquistion or at finite SNR. Also, the design of transmitters (Txs) and receivers (Rxs) is coupled and hence needs to be centralized or duplicated. Here we propose to take advantage of Massive MIMO simplifications, esp. for mmWave, by considering (multi-)path CSIT for crosslinks, which can be obtained without feedback. We consider a hierarchical cross/direct link beamformer design, maximizing Weighted Sum Rate (WSR) with partial CSIT at finite SNR, requiring on local CSIT. We also point out the use of receive antennas in genuine MU Massive MIMO.
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从MU大规模MIMO到路径MU大规模MIMO
干扰广播信道(IBC)适用于蜂窝网络和异构网络的下行链路,通常受到多用户(MU)干扰的限制。干涉对准(IA)的概念表明,干涉不一定是不可避免的。特别是MIMO IBC中的空间IA允许低延迟。然而,IA需要在发射机(CSIT)上获得完美的、通常是全局的信道状态信息,而这些信息的获取不随网络规模的变化而变化。因此,考虑到CSI采集或有限信噪比,在自由度(DoF)方面最优的设计可能在更相关的净自由度(net DoF)方面并非如此。此外,发射器(Txs)和接收器(Rxs)的设计是耦合的,因此需要集中或复制。在这里,我们建议利用大规模MIMO的简化,特别是对于毫米波,通过考虑交联的(多)路径CSIT,可以在没有反馈的情况下获得。我们考虑了一种分层交叉/直接链接波束形成器设计,在有限信噪比下使用部分CSIT最大化加权和速率(WSR),需要局部CSIT。我们还指出了在真正的MU大规模MIMO中接收天线的使用。
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