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首页> 外文期刊>IEEE Transactions on Communications >Adaptive minimum bit-error rate equalization for binary signaling
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Adaptive minimum bit-error rate equalization for binary signaling

机译:二进制信令的自适应最小误码率均衡

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摘要

We consider the design and adaptation of a linear equalizer with a finite number of coefficients in the context of a classical linear intersymbol-interference channel with Gaussian noise and a memoryless decision device. If the number of equalizer coefficients is sufficient, the popular minimum mean-squared-error (MMSE) linear equalizer closely approximates the optimal linear equalizer that directly minimizes bit-error rate (BER). However, when the number of equalizer coefficients is insufficient to approximate the channel inverse, the minimum-BER equalizer can outperform the MMSE equalizer by as much as 16 dB in certain cases. We propose a simple stochastic adaptive algorithm for realizing the minimum-BER equalizer. Compared to the least-mean-square algorithm, the proposed algorithm can provide a substantial reduction in BER with no increase in complexity.
机译:我们在具有高斯噪声和无记忆决策装置的经典线性符号间干扰信道的背景下,考虑了系数有限的线性均衡器的设计和自适应。如果均衡器系数的数量足够,那么流行的最小均方误差(MMSE)线性均衡器将近似逼近直接使误码率(BER)最小化的最佳线性均衡器。但是,当均衡器系数的数量不足以逼近信道逆时,在某些情况下,最小BER均衡器的性能可能比MMSE均衡器高16 dB。我们提出一种简单的随机自适应算法来实现最小BER均衡器。与最小均方算法相比,该算法可以在不增加复杂度的情况下大幅降低BER。

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