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Downlink Spectral Efficiency Analysis in Distributed Massive MIMO with Phase Noise

机译:具有相位噪声的分布式大规模MIMO中的下行链路频谱效率分析

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To achieve the advantages provided by massive multiple-input multiple-output (MIMO), a large number of antennas need to be deployed at the base station. However, for the reason of cost, inexpensive hardwares are employed in the realistic scenario, which makes the system distorted by hardware impairments. Hence, in this paper, we analyze the downlink spectral efficiency in distributed massive MIMO with phase noise and amplified thermal noise. We provide an effective channel model considering large-scale fading, small-scale fast fading and phase noise. Based on the model, the estimated channel state information (CSI) is obtained during the pilot phase. Under the imperfect CSI, the closed-form expressions of downlink achievable rates with maximum ratio transmission (MRT) and zero-forcing (ZF) precoders in distributed massive MIMO are derived. Furthermore, we also give the user ultimate achievable rates when the number of antennas tends to infinity with both precoders. Based on these expressions, we analyze the impacts of phase noise on the spectral efficiency. It can be concluded that the same limit rate is achieved with both precoders when phase noise is present, and phase noise limits the spectral efficiency. Numerical results show that ZF outdoes MRT precoder in spectral efficiency and ZF precoder is more affected by phase noise.
机译:为了实现大规模多输入多输出(MIMO)提供的优势,需要在基站处部署大量天线。然而,出于成本的原因,在实际情况下使用廉价的硬件,这使得系统因硬件缺陷而失真。因此,在本文中,我们分析了具有相位噪声和放大的热噪声的分布式大规模MIMO中的下行链路频谱效率。考虑到大规模衰落,小规模快速衰落和相位噪声,我们提供了一种有效的信道模型。基于该模型,在导频阶段获得估计的信道状态信息(CSI)。在不完善的CSI下,推导了分布式大规模MIMO中具有最大比率传输(MRT)和迫零(ZF)预编码器的下行链路可达到速率的闭合形式。此外,当两种预编码器的天线数量趋于无穷大时,我们还为用户提供最终可达到的速率。基于这些表达式,我们分析了相位噪声对频谱效率的影响。可以得出结论,当存在相位噪声时,两个预编码器都可以达到相同的极限速率,并且相位噪声会限制频谱效率。数值结果表明,ZF在频谱效率上优于MRT预编码器,而ZF预编码器受相位噪声的影响更大。

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