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首页> 外文期刊>EURASIP journal on advances in signal processing >Low Complexity MLSE Equalization in Highly Dispersive Rayleigh Fading Channels
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Low Complexity MLSE Equalization in Highly Dispersive Rayleigh Fading Channels

机译:高色散瑞利衰落信道中的低复杂度MLSE均衡

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A soft output low complexity maximum likelihood sequence estimation (MLSE) equalizer is proposed to equalize M-QAM signals in systems with extremely long memory. The computational complexity of the proposed equalizer is quadratic in the data block length and approximately independent of the channel memory length, due to high parallelism of its underlying Hopfield neural network structure. The superior complexity of the proposed equalizer allows it to equalize signals with hundreds of memory elements at a fraction of the computational cost of conventional optimal equalizer, which has complexity linear in the data block length but exponential in die channel memory length. The proposed equalizer is evaluated in extremely long sparse and dense Rayleigh fading channels for uncoded BPSK and 16-QAM-modulated systems and remarkable performance gains are achieved.
机译:提出了一种软输出低复杂度最大似然序列估计(MLSE)均衡器,以均衡内存极长的系统中的M-QAM信号。所提出的均衡器的计算复杂度在数据块长度上是平方的,并且几乎独立于通道存储器的长度,这是由于其底层Hopfield神经网络结构的高度并行性。所提出的均衡器的优越的复杂度允许它以数百倍于传统最佳均衡器的计算成本来均衡具有数百个存储元件的信号,该均衡器的复杂度在数据块长度上是线性的,而在通道存储器长度上是指数级的。对于未经编码的BPSK和16-QAM调制系统,在极长的稀疏和密集瑞利衰落信道中评估了所提出的均衡器,并获得了显着的性能提升。

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