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On the Performance of Cell-Free Massive MIMO with Short-Term Power Constraints

机译:具有短期功率约束的无小区大规模MIMO的性能

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摘要

In this paper we consider a time-division duplex cell-free massive multiple-input multiple-output (MIMO) system where many distributed access points (APs) simultaneously serve many users. A normalized conjugate beamforming scheme, which satisfies short-term average power constraints at the APs, is proposed and analyzed taking into account the effect of imperfect channel information. We derive an approximate closed-form expression for the per-user achievable downlink rate of this scheme. We also provide, analytically and numerically, a performance comparison between the normalized conjugate beamforming and the conventional conjugate beamforming scheme in [1] (which satisfies long-term average power constraints). Normalized conjugate beamforming scheme reduces the beamforming uncertainty gain, which comes from the users' lack of the channel state information knowledge, and hence, it improves the achievable downlink rate compared to the conventional conjugate beam-forming scheme.
机译:在本文中,我们考虑了时分双工无小区大规模多输入多输出(MIMO)系统,其中许多分布式接入点(AP)同时为许多用户提供服务。考虑到信道信息不完善的影响,提出并分析了一种满足AP短期平均功率约束的归一化共轭波束形成方案。我们为该方案的每个用户可实现的下行链路速率得出近似的封闭形式表达式。我们还通过分析和数字方法在[1](满足长期平均功率约束)中提供了归一化共轭波束成形与常规共轭波束成形方案之间的性能比较。归一化共轭波束成形方案减少了由于用户缺乏信道状态信息知识而导致的波束成形不确定性增益,因此与传统的共轭波束成形方案相比,它提高了可实现的下行链路速率。

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