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首页> 外文期刊>IEEE transactions on device and materials reliability >Redundancy and Aging of Efficient Multidimensional MDS Parity-Protected Distributed Storage Systems
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Redundancy and Aging of Efficient Multidimensional MDS Parity-Protected Distributed Storage Systems

机译:有效多维MDS奇偶校验保护的分布式存储系统的冗余和老化

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The effect of redundancy on the aging of an efficient maximum distance separable (MDS) parity-protected distributed storage system that consists of MDS-parity protected array of storage units is explored. In light of the experimental evidences and survey data, this paper develops generalized expressions for the reliability of array storage systems based on more realistic time to failure distributions such as Weibull. For instance, a distributed disk array system is considered in which the array components are disseminated across the network and are subject to independent failure rates. Based on such, generalized closed-form hazard rate expressions are derived. These expressions are extended to estimate the asymptotical reliability behavior of large-scale storage networks equipped with MDS parity-based protection. Unlike previous studies, a generic hazard rate function is assumed, a generic MDS code for parity generation is used, and an evaluation of the implications of adjustable redundancy level for an efficient distributed storage system is presented. Results of this paper are applicable to any erasure correction code as long as it is accompanied with a suitable structure and an appropriate encoding/decoding algorithm such that the MDS property is maintained.
机译:探索了冗余对由MDS奇偶校验保护的存储单元阵列组成的有效最大距离可分离(MDS)奇偶校验保护的分布式存储系统的老化的影响。根据实验证据和调查数据,本文基于更实际的失效时间分布(例如Weibull),开发了阵列存储系统可靠性的通用表达式。例如,考虑一种分布式磁盘阵列系统,其中阵列组件在网络上分布,并具有独立的故障率。基于这样的推导,可以得出广义的封闭形式危险率表达式。这些表达式被扩展以估计配备有基于MDS奇偶校验的保护的大规模存储网络的渐近可靠性行为。与以前的研究不同,我们假定了通用的危险率函数,使用了用于奇偶校验生成的通用MDS代码,并提出了可调整冗余级别对高效分布式存储系统的影响的评估。本文的结果适用于任何纠删码,只要它具有适当的结构和适当的编码/解码算法,以保持MDS属性即可。

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