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Hybrid Precoding for Massive MIMO With Low Rank Channels: A Two-Stage User Scheduling Approach

机译:具有低秩通道的大规模MIMO的混合预制:两级用户调度方法

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To fully reap the benefits of massive multiple-input multiple-output hybrid analog and digital precoding in frequency division duplexing single-cell systems, a two-stage precoder is developed utilizing the signal-to-leakage-plus-noise ratio metric. The main idea of this technique is to jointly design the analog precoder based only on the long-term channel statistics information at the transmitter, i.e., the channel mean and reconstructed reduced rank covariance statistics, while the digital precoder is designed based on the instantaneous channel state information of the reduced dimensionality effective reconstructed channel. Consequently, we can significantly reduce the downlink training and uplink feedback overhead analogously to the rank of the resultant effective channel. The two extremes of full channel state information at the transmitter (CSIT) and statistical CSIT are also investigated. The performance gap between the full and statistical CSIT corroborates the importance of the proposed two-stage CSIT approach. These precoders are then extended to multi-cell systems. It is shown that the digital baseband precoder design problem reduces to the generalized Rayleigh quotient problem, while the analog precoder design problem reduces to the quotient trace problem, also known as the ratio trace problem. These dimensionality reduction problems are solved via the generalized eigenvalue decomposition method. Finally, in the presence of multiuser diversity where only a subset of the users are scheduled, to considerably alleviate the channel estimation and feedback overhead burden, a low-complexity one-stage and two-stage CSIT joint user scheduler and precoder algorithms are developed.
机译:为了完全获取频分双工单电池系统中大量多输入多输出混合模拟和数字预编码的优势,利用信号 - 泄漏加噪声比度量开发了两级预编码器。该技术的主要思想是仅基于发射机的长期信道统计信息共同设计模拟预编码器,即频道均值和重建的等级协方差统计,而数字预编码基于瞬时频道设计状态信息减少的维度有效重建渠道。因此,我们可以显着减少对下行链路训练和上行链路反馈开销,类似于所得到的有效通道的等级。还研究了发送器(CSIT)和统计CSIT的完整信道状态信息的两个极端情况。完整和统计CSIT之间的性能差距证实了提出的两级CSIT方法的重要性。然后将这些预编码器扩展到多电池系统。结果表明,数字基带预编码器设计问题减少到广义瑞利商问题,而模拟预编码器设计问题缩短到“商迹线问题”,也称为比率跟踪问题。通过广义特征值分解方法解决了这些维度还原问题。最后,在仅调度用户的子集的多用户分集的存在中,为了显着减轻信道估计和反馈开销负担,开发了低复杂度的单级和两级CSIT联合用户调度器和预编码算法。

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