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Equalization and Semi-Blind Channel Estimation for Space-Time Block Coded Signals Over a Frequency-Selective Fading Channel

机译:频率选择性衰落信道上的空时分组编码信号的均衡和半盲信道估计

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摘要

In this paper, we investigate the equalization and channel identification for space-time block coded signals over a frequency-selective multiple-input multiple-output (MIMO) channel. The equalization has been considered by taking into account the cyclostationarity of space-time block coded signals. The minimum mean square error (MMSE) solutions have been derived for the linear and decision feedback (DF) equalizers. The channel estimation is required for the equalization. With known symbols (as pilot symbols), MIMO channels can be estimated. In addition, due to the redundancy induced by space-time block code, it is possible to identify MIMO channels blindly using the subspace method. We consider both blind and semi-blind channel estimation for MIMO channels. It is shown that the semi-blind channel estimate has fewer estimation errors, and it results in less (bit error rate) performance degradation of the MMSE linear and DF equalizers.
机译:在本文中,我们研究了频率选择多输入多输出(MIMO)信道上的空时分组编码信号的均衡和信道识别。通过考虑空时分组编码信号的循环平稳性来考虑均衡。已经为线性和判决反馈(DF)均衡器导出了最小均方误差(MMSE)解决方案。均衡需要信道估计。利用已知符号(作为导频符号),可以估计MIMO信道。另外,由于空时分组码引起的冗余,可以使用子空间方法盲目地识别MIMO信道。我们考虑了MIMO信道的盲和半盲信道估计。结果表明,半盲信道估计的估计误差较小,并且导致MMSE线性和DF均衡器的性能下降(误码率)降低。

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