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On-line blind multichannel equalization based on mutually referenced filters

机译:基于相互引用的滤波器的在线盲多通道均衡

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摘要

This paper presents a novel approach to the blind linear equalization of possibly nonminimum phase and time-varying communication channels. In the context of channel diversity, we introduce the concept of mutually referenced equalizers (MREs) in which several filters are considered, the outputs of which act as training signals for each other. A corresponding (constrained) multidimensional mean-square error (MSE) cost function is derived, the minimization of which is shown to be a necessary and sufficient condition for equalization. The links with a standard linear prediction problem are demonstrated. The proposed technique exhibits properties of important practical concern: 1) the proposed algorithm is globally convergent. 2) Simple closed-form solutions exist for the MREs, but the MREs also lend themselves readily to adaptive implementation. In particular, the recursive least-squares (RLS) algorithm can be used to offer optimal convergence rate. 3) The MRE method provides a solution for all equalization delays, which results in robustness properties with respect to SNR and ill-defined channel lengths.
机译:本文提出了一种新颖的方法来实现可能非最小相位和时变通信通道的盲线性均衡。在信道分集的背景下,我们介绍了相互参考的均衡器(MRE)的概念,其中考虑了几个滤波器,它们的输出相互充当训练信号。得出相应的(受约束的)多维均方误差(MSE)成本函数,将其最小化显示为均衡的必要和充分条件。演示了具有标准线性预测​​问题的链接。所提出的技术表现出重要的实际问题:1)所提出的算法是全局收敛的。 2)MRE存在简单的封闭式解决方案,但是MRE也很容易实现自适应实施。特别是,递归最小二乘(RLS)算法可用于提供最佳收敛速度。 3)MRE方法为所有均衡延迟提供了一种解决方案,从而获得了有关SNR和定义不良的信道长度的鲁棒性。

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