两地复制云存储系统可靠性

I. Iliadis, D. Sotnikov, Paula Ta-Shma, V. Venkatesan
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引用次数: 14

摘要

在地理复制云存储系统中,站点之间的网络带宽通常比站点内的带宽更稀缺,并且可能成为恢复操作的瓶颈。我们研究了考虑到站点内和站点之间不同带宽的地理复制云存储系统的可靠性。我们考虑了一种称为分阶段重建的新恢复方案,并将其与直接重建方案和智能重建方案进行了比较。为了评估这些方案所获得的可靠性收益,我们开发了一个分析模型,该模型结合了存储系统的各个相关方面,如带宽、潜在扇区错误和故障分布。该模型适用于广泛部署的云存储系统Open Stack Swift。在某些实际系统配置下,我们确定使用这些方案可以实现平均数据丢失时间(MTTDL)的数量级改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability of Geo-replicated Cloud Storage Systems
Network bandwidth between sites is typically more scarce than bandwidth within a site in geo-replicated cloud storage systems, and can potentially be a bottleneck for recovery operations. We study the reliability of geo-replicated cloud storage systems taking into account different bandwidths within a site and between sites. We consider a new recovery scheme called staged rebuild and compare it with both a direct scheme and a scheme known as intelligent rebuild. To assess the reliability gains achieved by these schemes, we develop an analytical model that incorporates various relevant aspects of storage systems, such as bandwidths, latent sector errors, and failure distributions. The model applies in the context of Open Stack Swift, a widely deployed cloud storage system. Under certain practical system configurations, we establish that order of magnitude improvements in mean time to data loss (MTTDL) can be achieved using these schemes.
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