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Spectral efficiency analysis of multi-cell multi-user massive MIMO over channel aging

机译:多电池多用户大量MIMO在通道老化的光谱效率分析

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摘要

To achieve the expected attractive potential of massive multiple-input multiple-output (MIMO), accurate match between the receiver and the actual channel is necessary. Due to the channel aging, this kind of mismatch appears in the vast majority of practical propagations. Consequently, the impact of channel aging for massive MIMO is investigated in this study. The authors first propose an equivalent estimated channel model by considering the inevitable time-varying nature of channels in realistic mobile communications. Then, they obtain the achievable uplink rate based on the proposed equivalent channel models. In particular, the closed-form expression of the asymptotic uplink rate is derived. Different from the existing works, this study considers the joint multi-cell minimum-mean-squared-error (MMSE) channel estimator and MMSE receiver for massive MIMO systems over aging channels. Through the simulation, it demonstrates that adopting massive MIMO can compensate for the performance loss caused by channel aging. In addition, this pstudy gives some insights into the system design: to achieve the best performance, system with higher-mobility terminals should be operated with more pilot resources, and it can support more users, moreover, the optimal number of users supported in a cell is less than half of the coherence time interval.
机译:为了实现大规模多输入多输出(MIMO)的预期有吸引力潜力,需要在接收器和实际通道之间准确匹配。由于渠道老化,这种不匹配出现在绝大多数实际繁殖中。因此,在本研究中研究了沟道衰老对大规模MIMO的影响。作者首先通过考虑现实移动通信中的渠道的不可避免的时变性来提出等效的估计渠道模型。然后,基于所提出的等效信道模型获得可实现的上行率。特别地,导出渐近上行链路率的闭合表达。本研究与现有作品不同,考虑了在老化通道上的大规模MIMO系统的联合多单元最小均值误差(MMSE)信道估计器和MMSE接收器。通过模拟,它表明采用大规模的MIMO可以补偿通道老化引起的性能损失。此外,这种Pstudy对系统设计提供了一些见解:为实现最佳性能,系统具有更高移动终端的系统应使用更多的试点资源进行操作,并且它可以支持更多用户,而且,支持更多用户电池小于相干时间间隔的一半。

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