An Effective Data Recovery Approach for Distributed Storage based on Interference Alignment

Jingyao Zhang
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Abstract

Node breakdown is very common in distributed storage systems, which will result in data loss or damage. Regenerating codes can reduce the network bandwidth cost by broken data recovery. Interference Alignment (IA) code is a type of regenerating code that can minimize the required network bandwidth for data regeneration. The original IA code could only recover a single breakdown node. In this work, we shall propose a solution based on the IA code that can jointly repair multiple breakdown nodes. We will derive the Repair Matrix that can regenerate multiple lost data blocks through simple multiplication. Based on this scheme, a multi-failure recovery algorithm based on IA code will be put forward. Moreover, the network bandwidth required for data recovery under different scenarios will be studied through both theoretical and numerical analysis.
基于干扰对齐的分布式存储数据恢复方法
在分布式存储系统中,节点故障是常见的故障现象,会导致数据丢失或损坏。代码再生可以通过破碎数据恢复来减少网络带宽开销。干扰对齐(IA)码是一种再生码,可以最大限度地减少数据再生所需的网络带宽。原始的IA代码只能恢复单个故障节点。在这项工作中,我们将提出一种基于IA代码的解决方案,可以共同修复多个故障节点。我们将推导出修复矩阵,它可以通过简单的乘法重新生成多个丢失的数据块。在此基础上,提出了一种基于IA码的多故障恢复算法。通过理论分析和数值分析,研究不同场景下数据恢复所需的网络带宽。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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