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首页> 外文期刊>Parallel and Distributed Systems, IEEE Transactions on >Novel Repair-by-Transfer Codes and Systematic Exact-MBR Codes with Lower Complexities and Smaller Field Sizes
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Novel Repair-by-Transfer Codes and Systematic Exact-MBR Codes with Lower Complexities and Smaller Field Sizes

机译:具有较低复杂性和较小字段大小的新型按转移修复代码和系统精确MBR代码

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摘要

The regenerating code is a class of erasure codes with the capability to recover a lost code fragment from other existing code fragments. In this paper, we focus on the design of exact regenerating codes at minimum bandwidth regenerating (MBR) points. For , a class of exact-MBR codes, termed as repair-by-transfer codes, have been developed in prior work to avoid arithmetic operations in node repairing process. The first result of this paper presents a new class of repair-by-transfer codes via congruent transformations. As compared with prior works, the advantages of proposed codes include: i) the minimum of field size is significantly reduced from to ; ii) the encoding complexity is decreased from to . - ur simulation results show that the proposed code achieves faster operations than the prior approach does under large . The second result of this paper presents a new form of coding matrix for product-matrix exact-MBR codes. The proposed coding matrix includes the following advantages: i) the minimum of finite field size is reduced from to ; ii) the fast Reed-Solomon erasure coding algorithms can be applied on the proposed exact-MBR codes to reduce the time complexities.
机译:再生代码是一类擦除代码,具有从其他现有代码片段中恢复丢失的代码片段的能力。在本文中,我们专注于在最小带宽重新生成(MBR)点上精确生成代码的设计。为此,在先前的工作中已经开发出一类精确的MBR代码,称为按转移修复代码,以避免节点修复过程中的算术运算。本文的第一个结果是通过等价变换提出了一类新的按转移修复代码。与现有技术相比,所建议的代码的优点包括:i)最小字段大小从显着减小到; ii)编码复杂度从降低到。 -ur仿真结果表明,所提出的代码在较大的情况下比以前的方法可实现更快的操作。本文的第二个结果提出了一种新形式的乘积矩阵精确MBR码编码矩阵。所提出的编码矩阵具有以下优点:i)有限域大小的最小值从减小到; ii)快速的Reed-Solomon纠删码算法可以应用于提出的精确MBR码,以减少时间复杂度。

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