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Distributed Precoding Design via Over-the-Air Signaling for Cell-Free Massive MIMO

机译:通过空中光信号分布式预编码设计,用于无细胞大规模MIMO

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摘要

Most works on cell-free massive multiple-input multiple-output (MIMO) consider non-cooperative precoding strategies at the base stations (BSs) to avoid extensive channel state information (CSI) exchange via backhaul signaling. However, considerable performance gains can be accomplished by allowing coordination among the BSs. This paper proposes the first distributed framework for cooperative precoding design in cell-free massive MIMO (and, more generally, in joint transmission coordinated multi-point) systems that entirely eliminates the need for backhaul signaling for CSI exchange. A novel over-the-air (OTA) signaling mechanism is introduced such that each BS can obtain the same cross-term information that is traditionally exchanged among the BSs via backhaul signaling. The proposed distributed precoding design enjoys desirable flexibility and scalability properties, as the amount of OTA signaling does not scale with the number of BSs or user equipments. Numerical results show fast convergence and remarkable performance gains as compared with non-cooperative precoding design. The proposed scheme can also outperform the centralized precoding design under realistic CSI acquisition.
机译:大多数都适用于无单元的大规模多输入多输出(MIMO)考虑基站(BSS)的非协作预编码策略,以避免通过回程信令进行广泛的信道状态信息(CSI)交换。但是,可以通过允许BSS之间的协调来实现相当大的性能提升。本文提出了用于无细胞大规模MIMO(以及更一般的,在联合传输协调的多点)系统中的第一个分布式预编码设计框架,完全消除了对CSI交换的回程信令的需要。引入了一种新的过空中(OTA)信令机构,使得每个BS可以通过回程信令在BSS中传统地在BS之间获得相同的串联信息。所提出的分布式预编码设计享有理想的灵活性和可伸缩性属性,因为OTA信令的量不带有BSS或用户设备的数量。与非合作的预编码设计相比,数值结果显示出快速收敛和显着性能增益。所提出的方案还可以在现实的CSI采集下优于集中式预编码设计。

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