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Improved min-sum decoding for 2-D intersymbol interference channels

机译:改进的二维码间干扰信道的最小和解码

摘要

In this paper, 2-D normalized min-sum (NMS) algorithm and offset min-sum (OMS) algorithm are proposed for efficient decoding of low-density parity-check (LDPC) codes in 2-D intersymbol interference (ISI) ultra-high density magnetic recording channels, such as bit-patterned magnetic recording and 2-D magnetic recording, where a reduced-complexity 2-D detector based on the iterative row-column soft detection feedback with Gaussian approximation detector is employed instead of the full 2-D Bahl-Cocke-Jelinek-Raviv (BCJR) detector. The normalization and offset factors of the 2-D NMS and 2-D-OMS, are optimized based on the extended density evolution for LDPC coded 2-D ISI channel, respectively. Simulation results show the performance loss caused by the reduced-complexity LDPC decoder can be almost fully recovered by the proposed approaches, while retaining the benefit of low complexity in decoder compared with the belief propagation (BP) decoding. Furthermore, both the NMS and OMS exhibit a lower error floor than that of BP decoding in high signal-to-noise ratio region.
机译:本文提出了二维归一化最小和(NMS)算法和偏移最小和(OMS)算法,以有效解码二维码间干扰(ISI)超低密度奇偶校验(LDPC)码。 -高密度磁记录通道,例如位模式磁记录和2-D磁记录,其中使用基于带高斯近似检测器的迭代行列软检测反馈的降低复杂度的2-D检测器代替完整的二维Bahl-Cocke-Jelinek-Raviv(BCJR)检测器。分别基于LDPC编码的2-D ISI信道的扩展密度演化,优化了2-D NMS和2-D-OMS的归一化和偏移因子。仿真结果表明,所提出的方法几乎可以完全弥补由复杂度降低的LDPC解码器引起的性能损失,同时与置信传播(BP)解码相比,保留了解码器的低复杂性优势。此外,在高信噪比区域中,NMS和OMS都显示出比BP解码更低的错误基底。

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