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Blind equalization of nonminimum phase channels: higher order cumulant based algorithm

机译:非最小相位通道的盲均衡:基于高阶累积量的算法

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摘要

Higher order cumulant analysis is applied to the blind equalization of linear time-invariant (LTI) nonminimum-phase channels. The channel model is moving-average based. To identify the moving average parameters of channels, a higher-order cumulant fitting approach is adopted in which a novel relay algorithm is proposed to obtain the global solution. In addition, the technique incorporates model order determination. The transmitted data are considered as independently identically distributed random variables over some discrete finite set (e.g., set (+or-1, +or-3)). A transformation scheme is suggested so that third-order cumulant analysis can be applied to this type of data. Simulation examples verify the feasibility and potential of the algorithm. Performance is compared with that of the noncumulant-based Sato scheme in terms of the steady state MSE and convergence rate.
机译:高阶累积量分析应用于线性时不变(LTI)非最小相位通道的盲均衡。通道模型基于移动平均。为了识别信道的移动平均参数,采用了一种高阶累积量拟合方法,提出了一种新颖的中继算法来获得全局解。另外,该技术结合了模型顺序确定。所传输的数据被认为是在某个离散有限集(例如,集合(+或-1,+或-3))上独立地均匀分布的随机变量。建议使用一种转换方案,以便将三阶累积量分析应用于此类数据。仿真实例验证了该算法的可行性和潜力。在稳态MSE和收敛速度方面,将性能与基于非累积量的Sato方案进行了比较。

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