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A least square channel estimator with pilot deficit for multiuser massive MIMO downlink

机译:用于多用户大规模MIMO下行链路的具有导频赤字的最小二乘信道估计器

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The problem of channel estimation in multiuser massive multiple-input multiple-output (MIMO) downlink is considered. In multiuser MIMO systems, channel state information (CSI) is required for user scheduling and precoder design, and its erroneous estimation is detrimental to the system performance. As prior works have shown, in order to maintain system performance at a specific level, the number of pilots must increase proportional to the number of transmit antennas, which in massive MIMO systems is very difficult if not impossible to achieve. In this work, a situation where there are not enough pilots for channel estimation is considered. Computational shortcuts method for least square estimator is used, and using simulation results it is shown how extra antennas of massive MIMO can compensate the shortcut in number of pilots. As an example, it is shown that increasing number of base station (BS) antennas from 100 to 190 can compensate for pilot sequence length reduction of 50 to 25. The aforementioned trade-off shows how massive MIMO can be advantageous over fast fading channels, for which pilot sequence length must be kept short.
机译:考虑了多用户大规模多输入多输出(MIMO)下行链路中的信道估计问题。在多用户MIMO系统中,用户调度和预编码器设计需要信道状态信息(CSI),并且其错误估计会损害系统性能。如现有技术所示,为了将系统性能维持在特定水平,导频的数量必须与发射天线的数量成比例地增加,这在大规模MIMO系统中即使不是不可能实现,也非常困难。在这项工作中,考虑了导频不足以进行信道估计的情况。使用了最小二乘估计器的计算捷径方法,并通过仿真结果显示了大规模MIMO的额外天线如何补偿导频数目的捷径。例如,已显示基站(BS)天线的数量从100增加到190可以补偿导频序列长度减少50到25。上述折衷表明,大规模MIMO在快速衰落信道方面可能具有优势,为此,导频序列的长度必须保持较短。

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