$M gg 1$ antennas at the base station (BS). However, to achieve th'/> Phase Only RF Precoding for Massive MIMO Systems With Limited RF Chains
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Phase Only RF Precoding for Massive MIMO Systems With Limited RF Chains

机译:具有受限RF链的大规模MIMO系统的仅相位RF预编码

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Massive MIMO systems promise high spectrum efficiency by deploying $M gg 1$ antennas at the base station (BS). However, to achieve the full gain provided by massive MIMO, the BS requires $M$ radio frequency (RF) chains, which are expensive. This motivates us to consider RF-chain limited massive MIMO systems with $M$ antennas but only $S ll M$ RF chains. We propose a two-stage precoding scheme to efficiently exploit the large spatial degree of freedom (DoF) gain in massive MIMO systems with limited RF chains and reduced channel state information (CSI) signaling overhead. In this scheme, the MIMO precoder is partitioned into a high-dimensional phase only RF precoder followed by a low-dimensional baseband precoder. The RF precoder is adaptive to the spatial correlation matrices for inter-cluster interference mitigation. The baseband precoder is adaptive to the reduced dimensional “effective” CSI for intra-cluster spatial multiplexing. We formulate the two stage precoding problem such that the minimum (weighted) average data rate of users is maximized under the phase only constraint on the RF precoder and the limited RF chain constraint. This is a combinatorial optimization problem which is in general NP-hard. We propose a low complexity solution based on a novel bi-convex approximation approach. Simulations show that the proposed design has significant gain over various baselines.
机译:大规模MIMO系统通过在基站(BS)上部署 $ M gg 1 $ 天线来保证高频谱效率。但是,为了获得大规模MIMO提供的全部增益,BS需要 $ M $ 射频(RF)链,很贵这促使我们考虑使用 $ M $ 天线但仅 $ Sll M $ RF链。我们提出了一种两阶段预编码方案,以有效利用射频链有限且信道状态信息(CSI)信令开销减少的大规模MIMO系统中的大空间自由度(DoF)增益。在该方案中,将MIMO预编码器划分为仅具有高维相位的RF预编码器,然后再划分为低维基带预编码器。 RF预编码器适用于空间相关矩阵,以减少集群间干扰。基带预编码器适合于降维“有效” CSI,以实现集群内空间复用。我们制定了两阶段预编码问题,使得在RF预编码器的仅相位约束和有限RF链约束下,用户的最小(加权)平均数据速率最大。这是一个组合优化问题,通常是NP难的。我们提出了一种基于新颖的双凸近似方法的低复杂度解决方案。仿真结果表明,所提出的设计在各种基准上都有明显的提高。

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