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Theoretical Performance Limits of Massive MIMO With Uncorrelated Rician Fading Channels

机译:具有不相关的RICian衰落渠道的大规模MIMO的理论性能限制

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摘要

This paper considers a Massive MIMO network with L cells, each comprising a base stations (BS) with M antennas and K single-antenna user equipments. Within this setting, we are interested in deriving approximations of the achievable rates in the uplink and downlink under the assumption that single-cell linear processing is used at each BS and that each intracell link forms an uncorrelated MIMO Rician fading channel matrix; that is, with a deterministic line-of-sight (LoS) path and a stochastic non-LoS component describing a spatial uncorrelated multipath environment. The analysis is conducted assuming that N and K grow large with a given ratio N/K under the assumption that the data transmission in each cell is affected by channel estimation errors, pilot contamination, an arbitrary large scale attenuation and LoS components. Numerical results are used to prove that the approximations are asymptotically tight, but accurate for systems with finite dimensions. The asymptotic results are also used to evaluate the impact of LoS components. In particular, we exemplify how the number of antennas for achieving a target rate can be substantially reduced with LoS links of only a few dBs of strength.
机译:本文考虑了具有L细胞的大规模MIMO网络,每个MIMO网络包括具有M天线和K单天线用户设备的基站(BS)。在此设置中,我们有兴趣在每个BS在每个BS使用单电池线性处理的假设下,从上行链路和下行链路中获得可实现的速率的近似值,并且每个intracell链路形成不相关的MIMO瑞典衰落信道矩阵;也就是说,具有确定性的视线(LOS)路径和描述空间不相关的多径环境的随机非LOS组件。假设在假设每个小区中的数据传输受通道估计误差,导频污染,任意大规模衰减和LOS组件的假设下,假设n和k随着给定比率N / K而增大的n和k变大。数值结果用于证明近似值是渐近的,但是具有有限尺寸的系统准确。渐近结果也用于评估LOS组分的影响。特别地,我们示出了用于实现目标速率的天线数量如何大大减少,LOS链路仅具有几个DB的强度。

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