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An Efficient Low-Complexity Technique for MLSE Equalizers for Linear and Nonlinear Channels

机译:线性和非线性通道MLSE均衡器的高效低复杂度技术

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摘要

In this paper, a novel sequence equalizer, which belongs to the family of cluster-based sequence equalizers, is presented. The proposed algorithm achieves the maximum likelihood solution to the equalization problem in a fraction of computational load, compared with the classic maximum likelihood sequence estimation (MLSE) equalizers. The new method does not require the estimation of the channel impulse response. Instead, it utilizes the estimates of the cluster centers formed by the received observations. Furthermore, a new cluster center estimation scheme, which exploits the intrinsic dependencies among the cluster centers, is proposed. The new center estimation method exhibits enhanced performance with respect to convergence speed, compared with an LMS-based channel estimator. Moreover, this gain in performance is obtained at substantially lower computational load. The method is also extended in order to cope with nonlinear channels. The performance of the new equalizer is tested with several simulation examples, using both the quadrature phase shift keying (QPSK) and the 16-quadrature amplitude modulated (QAM) signaling schemes for linear and nonlinear communication channels.
机译:本文提出了一种新颖的序列均衡器,它属于基于簇的序列均衡器家族。与经典的最大似然序列估计(MLSE)均衡器相比,该算法在计算量很小的情况下即可实现均衡问题的最大似然解。新方法不需要估计信道冲激响应。取而代之的是,它利用接收到的观测结果形成的聚类中心的估计值。此外,提出了一种新的聚类中心估计方案,该方案利用了聚类中心之间的固有依赖性。与基于LMS的信道估计器相比,新的中心估计方法在收敛速度方面表现出增强的性能。而且,这种性能增益是在实质上较低的计算负荷下获得的。为了应对非线性通道,还扩展了该方法。使用正交相移键控(QPSK)和线性和非线性通信信道的16正交幅度调制(QAM)信令方案,通过几个仿真示例测试了新均衡器的性能。

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