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Nonbinary LDPC Codes for 4-kB Sectors

机译:适用于4-kB扇区的非二进制LDPC码

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摘要

The performance of nonbinary LDPC codes on perpendicular magnetic recording channels (PMRCs) with 4-kB sectors is investigated. Each sector is encoded by either 4- or 0.5-kB-long codes. Both quasi-cyclic (QC) and nonquasi-cyclic (non-QC) nonbinary low-density parity-check (LDPC) codes are designed, and a set of simulations in a mixture of 10% additive white Gaussian noise (AWGN) and 90% position jitter noise power, with and without turbo equalization and with a rereading technique, is presented. The results show that sector-long codes perform better than 0.5-kB codes for all decoding schemes considered. In addition, the erasure correction capabilities of these nonbinary LDPC codes are calculated under both maximum-likelihood decoding and iterative decoding, and, as expected, longer codes can correct longer erasures. QC and non-QC nonbinary LDPC codes exhibit similar performance and have almost the same erasure correction capability under iterative decoding. Because of their efficient encoding, QC nonbinary LDPC codes are a good choice for perpendicular recording channels with 4-kB sectors, and offer a tradeoff between performance and code length.
机译:研究了具有4 kB扇区的垂直磁记录通道(PMRC)上非二进制LDPC码的性能。每个扇区由4或0.5 kB长的代码编码。设计了准循环(QC)和非准循环(non-QC)非二进制低密度奇偶校验(LDPC)码,并在10%加性高斯白噪声(AWGN)和90%混合的情况下进行了一组模拟给出了具有和不具有turbo均衡以及具有重读技术的位置抖动噪声功率的%。结果表明,对于所有考虑的解码方案,扇区长码的性能均优于0.5 kB的码。此外,这些非二进制LDPC码的纠删能力是在最大似然解码和迭代解码下计算的,并且,正如预期的那样,较长的代码可以纠正较长的纠删。 QC和非QC非二进制LDPC码表现出相似的性能,并且在迭代解码下具有几乎相同的纠删能力。由于QC非二进制LDPC码具有高效的编码功能,因此它是具有4 kB扇区的垂直记录通道的不错选择,并且可以在性能和代码长度之间进行权衡。

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