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Popularity-based covering sets for energy proportionality in shared-nothing clusters

机译:无共享簇中基于比例的基于流行度的能量比例覆盖集

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Energy management for large-scale clusters has been the subject of significant research attention in recent years. The principle of energy proportionality states that we can save energy by activating only a subset of cluster nodes, in proportion to the current load. However, achieving the energy proportionality in shared-nothing clusters is challenging, because the arbitrary deactivation of nodes would make some data become unavailable. In this paper, we propose a new algorithm, named popularity-based covering sets (PCS), to achieve the energy proportionality in large-scale shared-nothing clusters. PCS determines the set of active nodes dynamically, in order to achieve the design goals of (a) guaranteeing the minimum level of availability for every data so that any job can execute promptly, and (b) providing more replicas for popular data to mitigate contention on the data. This differs from previous studies, where some data may become unavailable, or they provide the same number of replicas for every data. Furthermore, PCS is rack-aware and thus it can reduce the energy consumption of power-hungry rack components. Experiment results indicate that PCS improves the overall energy savings by up to 62% compared to previous algorithms without significant performance loss.
机译:近年来,大型集群的能源管理已成为研究重点。能量比例原理指出,通过仅激活集群节点的一个子集(与当前负载成比例),我们可以节省能量。但是,在什么都不共享的集群中实现能量比例具有挑战性,因为节点的任意停用将使某些数据变得不可用。在本文中,我们提出了一种新算法,称为基于流行度的覆盖集(PCS),以实现大规模无共享簇中的能量比例。 PCS动态确定活动节点的集合,以实现以下设计目标:(a)保证每个数据的最低可用性,以便任何作业都可以迅速执行;以及(b)为受欢迎的数据提供更多副本以减轻竞争在数据上。这与以前的研究不同,在先前的研究中,某些数据可能变得不可用,或者它们为每个数据提供相同数量的副本。此外,PCS具有机架意识,因此可以减少耗电的机架组件的能耗。实验结果表明,与以前的算法相比,PCS可以将总体能源节省提高62%,而不会造成明显的性能损失。

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