一种代数译码与迭代处理相结合的新方法

Xiangyu Tang, R. Koetter
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引用次数: 39

摘要

提出了一种新的纠错编码方案,即广义集成交错码和稀疏集成交错码。在块交错码字的情况下,广义集成交错允许在所有交错中共享非均匀冗余。这允许对冗余进行动态调整,以更好地适应通道或存储设备的错误统计。稀疏集成将分布式存储系统中的数据节点相互交错地分组成子组。一个数据节点可以属于几个子组。小错误在每个子组内进行局部修正。采用局部代数迭代译码算法跨子群译码,以纠正子群内无法纠正的大误差。为了实现快速纠错和降低通信开销,牺牲了很少的纠错能力。该方案提高了所有数据节点的数据访问能力,并且易于扩展分布式存储网络
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Method for Combining Algebraic Decoding and Iterative Processing
We propose novel error correction coding schemes called generalized integrated interleaving and sparsely integrated interleaving codes. In the context of block interleaved codewords, generalized integrated interleaving allows nonuniform redundancy to be shared among all the interleaves. This allows the redundancy to be adjusted on-the-fly to better suit the error statistics of the channel or storage device. Sparsely integrated interleaving groups data nodes in a distributed storage system into subgroups. A data node can belong to several subgroups. Small errors are corrected locally within each subgroup. A localized algebraic iterative decoding algorithm is used to decode across subgroups to correct large errors that cannot be corrected within subgroups. Very little correction capability is sacrificed to achieve fast error correction and lower communication overhead. This scheme improves data access for all the data nodes and allows easy scaling of the distributed storage network
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