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Unequal Failure Protection Coding Technique for Distributed Cloud Storage Systems

机译:分布式云存储系统的不等失效保护编码技术

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摘要

In recent years, erasure codes have become the de facto standard for data protection in large scale distributed cloud storage systems at the cost of an affordable storage overhead. However, traditional erasure coding schemes, such as Reed-Solomon codes, suffer from high reconstruction cost and I/Os. The recent past has seen a plethora of efforts to optimize the tradeoff between the reconstruction cost, I/Os and storage overhead. Quiet different from all prior studies, in this paper, our erasure coding technique makes the first attempt to take advantage of the unequal failure rates across the disks/nodes to optimize the system reliability and reconstruction performance. Specifically, our proposed technique, the Unequal Failure Protection based Local Reconstruction Code (UFP-LRC) divides the data blocks into several unequal-sized groups with local parities, assigning the data blocks stored on more failure-prone disks/nodes into the smaller-sized group, so as to provide unequal failure protection for each group. In this way, by exploiting the nonuniform local parity degrees, the proposed UFP-LRC enables the data blocks that are stored on more failure-prone disks/nodes to tolerate a greater number of failures while suffering from less repair cost than others, leading to a substantial improvement of the overall reliability and repair performance for cloud storage systems. We perform numerical analysis and build a prototype storage system to verify our approach. The analytical results show that the UFP-LRC technique gradually outperforms LRC along the increase of failure rate ratio. Also, extensive experiments show that, when compared to LRC, UFP-LRC is able to achieve a 10 to 15 percent improvement in throughput, and an 8 to 12 percent reduction in decoding latency, while retaining a comparable overall reliability.
机译:近年来,擦除代码已成为大规模分布式云存储系统中数据保护的事实标准,其成本是经济实惠的存储开销。然而,传统的擦除编码方案,例如Reed-Solomon码,遭受高重建成本和I / O.最近的过去已经看过努力优化重建成本,I / OS和存储开销之间的权衡。与所有先前的研究不同,本文的擦除编码技术首次尝试利用磁盘/节点的不等故障率,以优化系统可靠性和重建性能。具体而言,我们提出的技术,基于不平等的故障保护的本地重建代码(UFP-LRC)将数据块划分为具有本地分析的几个不相等大小的组,将存储在更大的故障易于磁盘/节点上的数据块分配给较小的 - 大小集团,以便为每组提供不等的失败保护。以这种方式,通过利用非均匀的局部奇偶校验度,所提出的UFP-LRC使得存储在更多的失败易于磁盘/节点上的数据块以容忍更大量的故障,同时遭受比其他的修复成本更少大幅提高云存储系统的整体可靠性和修复性能。我们执行数值分析并构建原型存储系统以验证我们的方法。分析结果表明,UFP-LRC技术沿着失败率比的增加逐渐优于LRC。此外,大量实验表明,与LRC相比,UFP-LRC能够达到100%至15%的吞吐量,并且解码延迟减少8%至12%,同时保持相当的整体可靠性。

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