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Threshold Saturation for Nonbinary SC-LDPC Ensembles on Discrete-Input Memoryless Channels

机译:离散输入无记忆通道上非二进制SC-LDPC集成的阈值饱和

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In this letter, we investigate the threshold saturation effect of nonbinary spatially coupled low-density parity-check (SC-LDPC) ensembles defined over GF( q ) when the transmission takes place over discrete-input memoryless channels. To this end, we extend the duality rule for entropy established in the analysis of binary LDPC ensembles to the nonbinary case. This enables us to derive potential functions associated with log-likelihood ratio vector densities. Finally, we prove the existence of the threshold saturation effect following the approach introduced by Yedla et al. The analysis in this letter generalizes the existing work on nonbinary SC-LDPC ensembles and implies that the proof technique based on potential functions is also applicable to nonbinary sparse graphical codes over nonbinary discrete-input channels under belief propagation decoding.
机译:在这封信中,我们研究了在离散输入无记忆通道上进行传输时,在GF(q)上定义的非二进制空间耦合低密度奇偶校验(SC-LDPC)集合的阈值饱和效应。为此,我们将在二进制LDPC集成分析中建立的熵的对偶规则扩展到非二进制情况。这使我们能够导出与对数似然比向量密度相关的潜在函数。最后,我们证明了由Yedla等人介绍的方法存在阈值饱和效应。这封信中的分析概括了有关非二进制SC-LDPC集成的现有工作,并暗示基于潜在功能的证明技术也适用于信念传播解码下非二进制离散输入通道上的非二进制稀疏图形代码。

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