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Noncoherent multi-user MIMO communications using covariance CSIT

机译:使用协方差CSIT的非相干多用户MIMO通信

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The Multi-User downlink, particularly in a Multi-Cell Massive MIMO setting, requires enormous amounts of instantaneous CSIT (Channel State Information at the Trans-mitter(s)), iCSIT. Here we focus on exploiting channel covariance CSIT (coCSIT) only. In particular multipath induced structured low rank covariances are considered that arise in Massive MIMO and mmWave settings, which we call pathwise CSIT (pwC-SIT). The resulting non-Kronecker MIMO channel covariance structures lead to a split between the roles of transmitters and receivers in MIMO systems. For the beamforming optimization, we consider a minorization approach applied to the Massive MIMO limit of the Expected Weighted Sum Rate. Simulations indicate that the pwCSIT based designs may lead to limited spectral efficiency loss compared to iCSIT based designs, while trading fast fading CSIT for slow fading CSIT. We also point out that the pathwise approach may lead to distributed designs with only local pwCSIT, and analyze the sum rates for iCSIT and pwCSIT in the low and high SNR limits.
机译:多用户下行链路,特别是在多小区大规模MIMO设置中,需要大量的瞬时CSIT(发送方的信道状态信息)iCSIT。在这里,我们仅专注于利用信道协方差CSIT(coCSIT)。特别是,考虑了在大规模MIMO和mmWave设置中出现的多路径引起的结构化低秩协方差,我们将其称为路径CSIT(pwC-SIT)。所产生的非克罗内克(Kronecker)MIMO信道协方差结构导致MIMO系统中的发射器和接收器的角色之间出现分歧。对于波束成形优化,我们考虑了一种应用于期望加权和速率的Massive MIMO限制的缩小方法。仿真表明,与基于iCSIT的设计相比,基于pwCSIT的设计可能会导致有限的频谱效率损失,同时将快衰落的CSIT换为慢衰落的CSIT。我们还指出,路径方法可能导致仅使用本地pwCSIT进行分布式设计,并分析了在低和高SNR限制下iCSIT和pwCSIT的总速率。

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