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Unsupervised Receiver Processing Techniques for Linear Space-Time Equalization of Wideband Multiple Input / Multiple Output Channels

机译:宽带多输入/多输出通道的线性时空均衡的无监督接收机处理技术

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In this paper, we address the problem of unsupervised (blind) space-time equalization of frequency-selective multiple-input multiple-output (MIMO) channels. The motivation behind this work is that in order to provide the high transmission rates that data-demanding applications require, wireless multiple antenna (MIMO) systems will have to operate in wide bandwidths. In such scenarios, frequency selectivity may induce important intersymbol interference (ISI), in addition to the interuser interference (IUI) that each antenna's transmitted stream of data suffers from the other antennas. Under these conditions, channel estimation of the frequency-selective MIMO channel may become a daunting task that ultimately reduces the effective transmission rate. We present a family of globally convergent blind space-time equalization techniques, developed from multiuser kurtosis output-based criteria, which allow the recovery of the MIMO channel inputs without the training overhead that channel estimation typically requires, thus improving the MIMO channel's spectral efficiency.
机译:在本文中,我们解决了频率选择性多输入多输出(MIMO)通道的无监督(盲)时空均衡问题。这项工作的动机在于,为了提供数据需求应用程序所需的高传输速率,无线多天线(MIMO)系统将必须在较宽的带宽内运行。在这种情况下,频率选择性可能会导致重要的符号间干扰(ISI),以及每个天线的数据传输流遭受其他天线的用户间干扰(IUI)。在这些条件下,频率选择性MIMO信道的信道估计可能成为艰巨的任务,最终降低有效传输速率。我们提出了一系列基于基于多用户峰度输出的标准而开发的全局收敛的盲空时均衡技术,该技术可以恢复MIMO信道输入,而无需进行信道估计通常需要的训练开销,从而提高了MIMO信道的频谱效率。

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