An efficient low complexity clustering-based MLSE equalizer for frequency-selective fading channels

Y. Kopsinis, S. Theodoridis, Eleftherios Kofidis
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引用次数: 1

Abstract

Recently, a sequence equalizer, the 1-D CBSE equalizer, which belongs to the family of Cluster-Based Sequence Equalizers and achieves the Maximum Likelihood solution to the equalization problem, was reported. The 1-D CBSE does not require the explicit estimation of the channel impulse response. Instead, it utilizes the estimates of the cluster centers formed by the received observations. In this paper, a novel cluster tracking scheme is presented which allows the application of the 1-D CBSE in time-varying transmission environments. Although the proposed equalizer exhibits similar performance with that of the classic MLSE-LMS equalizer, the overall required computational load is dramatically reduced. This is achieved because the new method provides the means for an efficient exploitation of the symmetries underlying the signaling scheme.
一种有效的低复杂度聚类MLSE均衡器用于频率选择衰落信道
最近,报道了一种序列均衡器——一维CBSE均衡器,它属于基于簇的序列均衡器族,实现了均衡问题的极大似然解。一维CBSE不需要对信道脉冲响应进行显式估计。相反,它利用由接收到的观测形成的星团中心的估计。本文提出了一种新的簇跟踪方案,使一维CBSE能够在时变传输环境中应用。尽管所提出的均衡器表现出与经典MLSE-LMS均衡器相似的性能,但总体所需的计算负载显着降低。这是因为新方法提供了有效利用信令方案下的对称性的手段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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