Reliability Assurance of RAID Storage Systems for a Wide Range of Latent Sector Errors

I. Iliadis, Xiao-Yu Hu
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引用次数: 9

Abstract

The low-cost disk drives, which are increasingly being adopted in today's data storage systems, have higher capacity but lower reliability, which leads to more frequent rebuilds and to a higher risk of unrecoverable or latent media errors. An intra-disk redundancy scheme has been proposed to cope with such errors and enhance the reliability of RAID systems. Empirical field results recently reported in the literature, however, suggest that the extent to which unrecoverable media errors occur is higher than the data sheet specifications provided by the disk manufacturers. Our results demonstrate that the reliability improvement due to intradisk redundancy is adversely affected because of the increase in the number of unrecoverable errors. We demonstrate that, by revising the parameter choice of the intradisk redundancy scheme, we can obtain essentially the same reliability as that of a system operating without unrecoverable sector errors. The I/O and throughput performance are evaluated by means of analysis and event-driven simulations. The effects of the spatial locality of errors and of the error-burst length distribution on the system reliability are also investigated.
大范围扇区潜在错误下的RAID存储系统可靠性保证
目前越来越多的数据存储系统采用低成本的磁盘驱动器,其容量较大,但可靠性较低,重构频率较高,出现不可恢复或潜在介质错误的风险较高。提出了一种磁盘内冗余方案来处理这种错误,提高RAID系统的可靠性。然而,最近在文献中报道的经验领域结果表明,不可恢复的介质错误发生的程度高于磁盘制造商提供的数据表规格。我们的结果表明,由于不可恢复错误数量的增加,磁盘内冗余对可靠性的提高产生了不利影响。我们证明,通过修改磁盘内冗余方案的参数选择,我们可以获得与没有不可恢复扇区错误的系统运行基本相同的可靠性。通过分析和事件驱动模拟来评估I/O和吞吐量性能。研究了误差的空间局域性和突发误差长度分布对系统可靠性的影响。
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