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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Blind time-domain equalizer for doubly-selective channel with reduced time averaging and computational complexity
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Blind time-domain equalizer for doubly-selective channel with reduced time averaging and computational complexity

机译:盲时域均衡器,用于双重选择频道,减少时间平均和计算复杂性

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摘要

This study presents a blind time-domain equalizer for a CP-free multiuser/MIMO-OFDM system over a doubly selective fast-fading channel, which enables a pertinent trade-off in error performance and complexity. A high velocity outdoor system is considered, such as a vehicular user in which the channel varies too rapidly to be tracked. The proposed method applies the computationally efficient modified recursive Cholesky (RChol) algorithm incorporating a linear predictor and the LMMSE criteria, which scales down the correlation matrix time averaging and hence results in a significantly computationally efficient algorithm for the multiuser/MIMO-OFDM time-domain equalizer. The method reduces the effect of any perturbation introduced by the linear prediction, noise, and multipath. The performance of the proposed method is analyzed and compared with those of the existing pilot-based, semi-blind, and blind methods. The results show that the proposed RChol algorithm is computationally efficient compared with the existing subspace-based and linear prediction based methods.
机译:本研究介绍了在双重选择性快衰落通道上的无CP多用户/ MIMO-OFDM系统的盲时域均衡器,其在误差性能和复杂性中实现了相关的权衡。考虑高速室外系统,例如车辆用户,其中通道变化太快被跟踪。所提出的方法应用于线性预测器和LMMSE标准的计算上有效的修改递归钩托(RCHOL)算法,其缩小了相关矩阵时间平均,因此导致多用户/ MIMO-OFDM时域的显着计算有效的算法均衡器。该方法减少了线性预测,噪声和多径引入的任何扰动的效果。分析了该方法的性能,并与现有的基于试点,半盲和盲方法进行了比较。结果表明,与现有的基于子空间和线性预测的方法相比,该提出的RCHOL算法是计算有效的。

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