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The structure and design of realizable decision feedback equalizers for IIR channels with colored noise

机译:具有色噪声的IIR信道可实现的判决反馈均衡器的结构和设计

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摘要

A simple algorithm for optimizing decision feedback equalizers (DFEs) by minimizing the mean-square error (MSE) is presented. A complex baseband channel and correct past decisions are assumed. The dispersive channel may have infinite impulse response, and the noise may be colored. Consideration is given to optimal realizable (stable and finite-lag smoothing) forward and feedback filters in discrete time. They are parameterized as recursive filters. In the special case of transmission channels with finite impulse response and autoregressive noise, the minimum MSE can be attained with transversal feedback and forward filters. In general, the forward part should include a noise-whitening filter (the inverse noise model). The finite realizations of the filters are calculated using a polynomial equation approach to the linear quadratic optimization problem. The equalizer is optimized essentially by solving a system of linear equations Ax=B, where A contains transfer function coefficients from the channel and noise model. No calculation of correlations is required with this method. A simple expression for the minimal MSE is presented. The DFE is compared to MSE-optimal linear recursive equalizers. Expressions for the equalizer in the limiting case of infinite smoothing lags are also discussed.
机译:提出了一种通过最小化均方误差(MSE)来优化决策反馈均衡器(DFE)的简单算法。假定复杂的基带信道和正确的过去决定。色散通道可能具有无限的脉冲响应,并且噪声可能是有色的。考虑在离散时间内实现最佳的可实现(稳定和有限滞后平滑)正向和反馈滤波器。它们被参数化为递归过滤器。在具有有限脉冲响应和自回归噪声的传输通道的特殊情况下,可以通过横向反馈和前向滤波器获得最小的MSE。通常,前部应包括一个噪声白化滤波器(反向噪声模型)。滤波器的有限实现是使用多项式方程方法来解决线性二次优化问题的。基本上通过求解线性方程组Ax = B来优化均衡器,其中A包含来自信道和噪声模型的传递函数系数。该方法不需要计算相关性。给出了最小MSE的简单表达式。将DFE与MSE最佳线性递归均衡器进行比较。还讨论了在无限平滑滞后的极限情况下均衡器的表达式。

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