Nonlinear equalization for reduction of nonlinear distortion in high-density recording channels

W. Jeon, J. S. Son, Y. Cho, Y. Lim, D. Youn
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引用次数: 5

Abstract

Three different types of structures for nonlinear equalizers are discussed to reduce nonlinear distortion in digital high-density recording channels. The first two equalizers, a nonlinear DFE and a modified version of partial response maximum likelihood (PRML) with a nonlinear equalizer, which are based on the pth-order inverse theorem of Volterra series, can reduce the nonlinear ISI existing in both precursor and postcursor parts. The last one, a nonlinear canceller with an appropriate tentative decision device, can further cancel the cross products between the previous and future symbols without producing higher-order terms (/spl ges/p+1). By comparing their performances via simulation with the existing LE, linear DFE, RAM-DFE, and PRML for digital recording channels with three different densities, the authors confirm that the nonlinear ISI can be reduced effectively by the approaches discussed in the paper especially at higher densities.
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用于减少高密度记录通道中非线性失真的非线性均衡
讨论了三种不同类型的非线性均衡器结构,以减少数字高密度记录通道中的非线性失真。基于Volterra级数p阶逆定理的前两种均衡器,即非线性DFE均衡器和带非线性均衡器的部分响应极大似然(PRML)的改进版本,可以减小前导和后导部分存在的非线性ISI。最后一种是带有适当暂定判定装置的非线性消去器,它可以在不产生高阶项(/spl ges/p+1)的情况下进一步消去前一符号和后一符号之间的叉积。通过与现有的三种不同密度的数字记录信道的LE、线性DFE、RAM-DFE和PRML进行仿真比较,作者证实了本文所讨论的方法可以有效地减少非线性ISI,特别是在更高的密度下。
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