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首页> 外文期刊>EURASIP journal on advances in signal processing >Efficient Channel Shortening Equalizer Design
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Efficient Channel Shortening Equalizer Design

机译:高效的通道缩短均衡器设计

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Time-domain equalization is crucial in reducing channel state dimension in maximum likelihood sequence estimation and intercarrier and intersymbol interference in multicarrier systems. A time-domain equalizer (TEQ) placed in cascade with the channel produces an effective impulse response that is shorter than the channel impulse response. This paper analyzes two TEQ design methods amenable to cost-effective real-time implementation: minimum mean square error (MMSE) and maximum shortening SNR (MSSNR) methods. We reduce the complexity of computing the matrices in the MSSNR and MMSE designs by a factor of 140 and a factor of 16 (respectively) relative to existing approaches, without degrading performance. We prove that an infinite-length MSSNR TEQ with unit norm TEQ constraint is symmetric. A symmetric TEQ halves FIR implementation complexity, enables parallel training of the frequency-domain equalizer and TEQ, reduces TEQ training complexity by a factor of 4, and doubles the length of the TEQ that can be designed using fixed-point arithmetic, with only a small loss in bit rate. Simulations are presented for designs with a symmetric TEQ or target impulse response.
机译:在最大似然序列估计以及多载波系统中的载波间和符号间干扰中,时域均衡对于减小信道状态维至关重要。与通道级联放置的时域均衡器(TEQ)产生的有效脉冲响应比通道脉冲响应短。本文分析了适用于经济高效的实时实施的两种TEQ设计方法:最小均方误差(MMSE)和最大缩短SNR(MSSNR)方法。与现有方法相比,我们将MSSNR和MMSE设计中矩阵的计算复杂度分别降低了140倍和16倍,而不会降低性能。我们证明了具有单位范数TEQ约束的无限长MSSNR TEQ是对称的。对称的TEQ将FIR的实现复杂度降低了一半,可以并行训练频域均衡器和TEQ,将TEQ的训练复杂度降低了4倍,并且可以使用定点算法设计的TEQ长度加倍,而比特率损失很小。针对具有对称TEQ或目标冲激响应的设计提供了仿真。

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