Spectral Efficiency of MU-Massive MIMO System for Perfect and Imperfect CSI Condition

Ika Rohmatul Aini, P. Handayani
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引用次数: 2

Abstract

Multi User Massive MIMO (MU-Massive MIMO) is a form of multi-user large-scale antennas technology, in which hundreds number of antennas serve a significantly smaller number of users. This system is assumed operates over a frequency-selective and uses Orthogonal Frequency Division Multiplexing (OFDM). The system performance is observed in two conditions, the first condition is that the BS is assumed to know the channel information perfectly (perfect CSI condition), the second condition is that the BS performs the channel estimation process at a certain coherence interval (imperfect CSI condition). The BS estimates channel information from the pilot sent by user using Minimum Mean Square Error (MMSE) estimator. Several precoding techniques are used to overcome Multiuser Interference (MUI) at the receiver, namely Maximum Ratio (MRT), Zero Forcing (ZF) and MMSE. The observed parameter are Bit Error Rate (BER) and Spectral Efficiency (SE). From the simulation results, it can be seen that the use of a large number of array antennas can significantly increase the spectral efficiency. ZF and MMSE precoding work better than MRT precoding in minimizing MUI. Spectral efficiency is also affected by the channel model, where the spectral efficiency on the UR-LOS channel is higher than Rayleigh channel. In the imperfect CSI condition, the channel estimation error is getting bigger, so that the spectral efficiency will decrease and become lower than the perfect CSI condition.
完美和非完美CSI条件下MU-Massive MIMO系统的频谱效率
多用户大规模MIMO (MU-Massive MIMO)是一种多用户大规模天线技术,以数百个天线服务于数量明显较少的用户。该系统假定在频率选择上运行,并使用正交频分复用(OFDM)。在两种条件下观察系统性能,第一种条件是假设BS完全知道信道信息(完美CSI条件),第二种条件是BS在一定的相干间隔(不完美CSI条件)下执行信道估计过程。BS利用最小均方误差(MMSE)估计器估计用户发送的导频信息。为了克服接收端多用户干扰(MUI),采用了几种预编码技术,即最大比(MRT)、零强迫(ZF)和MMSE。观测参数为误码率(BER)和频谱效率(SE)。从仿真结果可以看出,使用大量阵列天线可以显著提高频谱效率。ZF和MMSE预编码在最小化MUI方面优于MRT预编码。频谱效率也受信道模式的影响,其中UR-LOS信道的频谱效率高于瑞利信道。在不完美CSI条件下,信道估计误差越来越大,导致频谱效率下降,低于完美CSI条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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