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Two-Dimensional Iterative Decoding Schemes for Holographic Data Storage Systems

机译:全息数据存储系统的二维迭代解码方案

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摘要

Two iterative decoding (ID) schemes, which are the ID using a single parity bit (ID-SPB) and ID using a modulation code (ID-MC), are proposed for holographic data storage systems. In the ID-SPB, a single two-dimensional parity bit is employed to conduct ID, whereas in the ID-MC, the inherent constraint of the modulation code is utilized to conduct ID. In both schemes, a data page is iteratively decoded by exchanging extrinsic information between the horizontal and vertical data bits in the page. In particular, in the ID-SPB, by adding more parity bits to each row and column of the interleaved page, we can conduct the ID within a page as well as between the original and interleaved pages. Thus, additional performance gain can be achieved in the ID-SPB. On the other hand, the ID-MC has a performance gain without loss of data rate since parity bits are not required for ID. The simulation results show that the proposed ID-SPB and ID-MC have about 2-4 and 1-2 dB performance gains in terms of bit error rate compared with the system without ID, respectively.
机译:对于全息数据存储系统,提出了两种迭代解码(ID)方案,即使用单个奇偶校验位的ID(ID-SPB)和使用调制码的ID(ID-MC)。在ID-SPB中,采用单个二维奇偶校验位来进行ID,而在ID-MC中,利用调制码的固有约束来进行ID。在两种方案中,通过在页面的水平和垂直数据位之间交换外部信息来迭代解码数据页面。特别是,在ID-SPB中,通过向交错页面的每一行和每一列添加更多奇偶校验位,我们可以在页面内以及原始页面和交错页面之间进行ID。因此,可以在ID-SPB中获得额外的性能增益。另一方面,由于ID不需要奇偶校验位,因此ID-MC的性能得到了提高,而不会丢失数据速率。仿真结果表明,与不带ID的系统相比,建议的ID-SPB和ID-MC在误码率方面分别具有约2-4 dB和1-2 dB的性能提升。

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  • 来源
    《Japanese journal of applied physics》 |2012年第8issue3期|p.08JD06.1-08JD06.5|共5页
  • 作者单位

    School of Electrical and Electronic Engineering, Yonsei University, Seoul 120-749, Korea;

    School of Electrical and Electronic Engineering, Yonsei University, Seoul 120-749, Korea;

    School of Electrical and Electronic Engineering, Yonsei University, Seoul 120-749, Korea;

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