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Energy and Spectral Efficiency of Very Large Multiuser MIMO Systems

机译:大型多用户MIMO系统的能量和频谱效率

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摘要

A multiplicity of autonomous terminals simultaneously transmits data streams to a compact array of antennas. The array uses imperfect channel-state information derived from transmitted pilots to extract the individual data streams. The power radiated by the terminals can be made inversely proportional to the square-root of the number of base station antennas with no reduction in performance. In contrast if perfect channel-state information were available the power could be made inversely proportional to the number of antennas. Lower capacity bounds for maximum-ratio combining (MRC), zero-forcing (ZF) and minimum mean-square error (MMSE) detection are derived. An MRC receiver normally performs worse than ZF and MMSE. However as power levels are reduced, the cross-talk introduced by the inferior maximum-ratio receiver eventually falls below the noise level and this simple receiver becomes a viable option. The tradeoff between the energy efficiency (as measured in bits/J) and spectral efficiency (as measured in bits/channel use/terminal) is quantified for a channel model that includes small-scale fading but not large-scale fading. It is shown that the use of moderately large antenna arrays can improve the spectral and energy efficiency with orders of magnitude compared to a single-antenna system.
机译:多个自治终端同时将数据流传输到紧凑的天线阵列。该阵列使用从传输的导频中导出的不完美的信道状态信息来提取各个数据流。可以使终端辐射的功率与基站天线数量的平方根成反比,而不会降低性能。相反,如果可获得完美的信道状态信息,则功率可以与天线数量成反比。得出了最大比率组合(MRC),迫零(ZF)和最小均方误差(MMSE)检测的下限。 MRC接收器的性能通常比ZF和MMSE差。但是,随着功率水平的降低,劣质最大比率接收机引入的串扰最终会降到噪声水平以下,这种简单的接收机成为可行的选择。对于包括小规模衰落但不大规模衰落的信道模型,量化了能量效率(以比特/ J为单位)和频谱效率(以比特/信道使用/终端为单位)之间的权衡。结果表明,与单天线系统相比,使用中等大小的天线阵列可以将频谱和能量效率提高几个数量级。

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