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Performance Analysis of Centralized versus Distributed Recovery Schemes in P2P Storage Systems

机译:P2P存储系统中集中式与分布式恢复方案的性能分析

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This paper studies the performance of Peer-to-Peer Storage Systems (P2PSS) in terms of data lifetime and availability. Two schemes for recovering lost data are modeled through absorbing Markov chains and their performance are evaluated and compared. The first scheme relies on a centralized controller that can recover multiple losses at once, whereas the second scheme is distributed and recovers one loss at a time. The impact of each system parameter on the performance is evaluated, and guidelines are derived on how to engineer the system and tune its key parameters in order to provide desired lifetime and/or availability of data. We find that, in stable environments such as local area or research laboratory networks where machines are usually highly available, the distributed-repair scheme offers a reliable, scalable and cheap storage/backup solution. This is in contrast with the case of highly dynamic environments, where the distributed-repair scheme is inefficient as long as the storage overhead is kept reasonable. P2PSS with centralized-repair scheme are efficient in any environment but have the disadvantage of relying on a centralized authority. Our analysis also suggests that the use of large size fragments reduces the efficiency of the recovery mechanism.
机译:本文从数据寿命和可用性方面研究了点对点存储系统(P2PSS)的性能。通过吸收马尔可夫链对两种用于恢复丢失数据的方案进行了建模,并对它们的性能进行了评估和比较。第一种方案依赖于中央控制器,该控制器可以一次恢复多个损失,而第二种方案是分布式的,一次可以恢复一个损失。评估每个系统参数对性能的影响,并得出有关如何设计系统和调整其关键参数以提供所需寿命和/或数据可用性的指导原则。我们发现,在诸如局域网或研究实验室网络之类的稳定环境中,通常机器高度可用,机器的分布式维修方案提供了可靠,可扩展且便宜的存储/备份解决方案。这与高动态环境的情况相反,在高动态环境中,只要保持合理的存储开销,分布式修复方案就没有效率。具有集中式修复方案的P2PSS在任何环境中均有效,但是具有依赖集中式授权的缺点。我们的分析还表明,使用大尺寸碎片会降低回收机制的效率。

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