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Protograph-Based Quasi-Cyclic LDPC Coding for Ultrahigh Density Magnetic Recording Channels

机译:基于原型的超高密度磁记录通道的准循环LDPC编码

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摘要

In this paper, protograph-based quasi-cyclic (QC) low-density parity-check (LDPC) codes are proposed for the efficient structure coding of LDPC codes in 2-D intersymbol interference (ISI) ultrahigh 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 is employed instead of the full 2-D Bahl–Cocke–Jelinek–Raviv detector. The proposed protograph-based codes, whose base matrices are constructed according to the degree sequences for 2-D-ISI channels, have a low-complexity QC encoder structure with a readily parallelizable protograph decoder structure. Simulation results show that the proposed protograph-based QC-LDPC codes outperform the random LDPC codes optimized for additive white Gaussian noise channels. Furthermore, the performance of the QC codes is similar to that exhibited by ISI-optimized random LDPC codes designed for 2-D-ISI channels, while retaining the implementational benefits.
机译:本文针对二维码间干扰(ISI)超高密度磁记录通道中的LDPC码的有效结构编码,提出了基于原型的准循环(QC)低密度奇偶校验(LDPC)码。位模式磁记录和二维磁记录,其中使用基于高斯近似的行-列迭代软检测反馈的复杂度较低的二维检测器,而不是完整的二维Bahl-Cocke-Jelinek-Raviv探测器。所提出的基于原型的代码,其基本矩阵是根据2-D-ISI通道的度序列构造的,具有低复杂度的QC编码器结构以及易于并行化的原型解码器结构。仿真结果表明,所提出的基于原型的QC-LDPC码优于针对加性高斯白噪声信道优化的随机LDPC码。此外,QC码的性能类似于为2D-ISI信道设计的ISI优化随机LDPC码所展示的性能,同时保留了实现上的优势。

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