Decoding of Generalized Three-Layer Integrated Interleaved Codes

Xinmiao Zhang
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引用次数: 3

Abstract

Generalized integrated interleaved (GII) codes nest sub-codewords, also called interleaves, to generate parities shared by the interleaves. They achieve better tradeoffs compared to other locally recoverable erasure codes and are good candidates for hyper-speed data storage and communications. By nesting the interleaves in a hierarchical manner, the recent three-layer GII codes further improve the decoding locality. However, due to the fundamentally different structure and larger size of the nesting matrix, three-layer GII decoding faces many issues that do not exist previously. In this paper, constraints on the relative correction capabilities of the nested codes are defined to achieve the target correction goal. The bottleneck on syndrome conversion matrix inversion is eliminated by transforming the conversion matrices and syndrome vectors. The overall decoding process is optimized to increase correction capability and reduce complexity.
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广义三层集成交错码的译码
广义集成交错(GII)码嵌套子码字,也称为交错,以产生交错共享的奇偶。与其他本地可恢复的擦除码相比,它们实现了更好的折衷,是超高速数据存储和通信的良好候选。通过分层嵌套交错,最新的三层GII码进一步提高了解码局部性。然而,由于三层GII解码结构的根本不同和嵌套矩阵的更大尺寸,面临着许多以前不存在的问题。本文定义了对嵌套代码相对校正能力的约束,以实现目标校正目标。通过变换变换矩阵和证向量,消除了证变换矩阵反演的瓶颈。优化了整个解码过程,提高了纠错能力,降低了复杂度。
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