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Decision-directed fractionally spaced equalizer control using time-domain interpolation

机译:使用时域插值的决策控制分数间隔均衡器控制

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The authors describe a time-domain Nyquist-rate algorithm that broadens the scope of fractional equalizers to include either least-mean-square control or polarity-dependent adaptation analogous to zero-forcing in synchronous equalizers. The study includes the analytic basis for interpolative control, a functional circuit description (with extension to symbol-error-polarity control), and a computer simulation that illustrates operation on a digital subscriber loop. The time-domain interpolative algorithm permits unique user-defined specification of the end-to-end Nyquist channel. Though the end-to-end channel may not be optimal, a priori specification affords a new dimension for creativity, possibly embracing novel baseband carrier and timing recovery schemes. The spectral uniqueness attained by satisfying the Nyquist-sampling condition seemingly reduces or eliminates the coefficient drift phenomenon.
机译:作者描述了一种时域奈奎斯特速率算法,该算法扩大了分数均衡器的范围,使其包括最小均方控制或与极性相关的自适应,类似于同步均衡器中的迫零。该研究包括内插控制的分析基础,功能电路描述(扩展到符号错误极性控制)和计算机仿真,该仿真说明了在数字用户环路上的操作。时域插值算法允许端到端Nyquist通道的唯一用户定义规范。尽管端到端通道可能不是最佳的,但先验规范为创造力提供了新的维度,可能包括新颖的基带载波和定时恢复方案。通过满足奈奎斯特采样条件而获得的频谱唯一性似乎减少或消除了系数漂移现象。

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