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Estimating the reliability of regeneration-based replica control protocols

机译:估计基于再生的复制控制协议的可靠性

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The accessibility of vital information can be enhanced by replicating the data on several sites and employing a consistency control protocol to manage the replicas. The reliability of a replicated data object depends on maintaining a viable set of current replicas. When storage is limited, it may not be feasible to simply replicate a data object at enough sites to achieve the desired level of reliability. Regeneration approximates the reliability provided by additional replicas for a modest increase in storage costs, and is applicable whenever a new replica of a data object can be created faster than a system failure can be repaired. Regeneration enhances reliability by creating new replicas on other sites in response to site failures. Several strategies for replica maintenance are considered, and the benefits of each are analyzed using simulation and both algebraic and numeric solutions to systems of differential equations.
机译:通过在几个站点上复制数据并采用一致性控制协议来管理副本,可以增强重要信息的可访问性。复制数据对象的可靠性取决于维护一组可行的当前副本。当存储受到限制时,简单地在足够的位置复制数据对象以达到所需的可靠性水平可能是不可行的。再生近似于其他副本所提供的可靠性,从而适度增加了存储成本,并且再生可以在创建数据对象的新副本的速度快于修复系统故障的速度时适用。响应于站点故障,重新生成通过在其他站点上创建新副本来提高可靠性。考虑了几种副本维护策略,并使用模拟以及微分方程组的代数和数值解法分析了每种策略的优势。

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