Utility Driven Dynamic Resource Management in an Oversubscribed Energy-Constrained Heterogeneous System

Bhavesh Khemka, Ryan D. Friese, S. Pasricha, A. A. Maciejewski, H. Siegel, G. Koenig, Sarah Powers, Marcia Hilton, Jendra Rambharos, Steve Poole
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引用次数: 16

Abstract

In this paper, we address the problem of scheduling dynamically-arriving tasks to machines in an oversubscribed heterogeneous computing environment. Each task has a monotonically decreasing utility function associated with it that represents the utility (or value) based on the task's completion time. Our system model is designed based on the environments of interest to the Extreme Scale Systems Center at Oak Ridge National Laboratory. The goal of our scheduler is to maximize the total utility earned from task completions while satisfying an energy constraint. We design an energy-aware heuristic and compare its performance to heuristics from the literature. We also design an energy filtering technique for this environment that is used in conjunction with the heuristics. The filtering technique adapts to the energy remaining in the system and estimates a fair-share of energy that a task's execution can consume. The filtering technique improves the performance of all the heuristics and distributes the consumption of energy throughout the day. Based on our analysis, we recommend the level of filtering to maximize the performance of scheduling techniques in an oversubscribed environment.
超额订阅能量约束异构系统中效用驱动的动态资源管理
在本文中,我们解决了在一个超额订阅的异构计算环境中动态到达任务的调度问题。每个任务都有一个与之相关的单调递减的效用函数,它表示基于任务完成时间的效用(或价值)。我们的系统模型是根据橡树岭国家实验室的极端规模系统中心感兴趣的环境设计的。我们的调度器的目标是在满足能量限制的情况下,最大化从任务完成中获得的总效用。我们设计了一个能量感知启发式算法,并将其性能与文献中的启发式算法进行了比较。我们还为这种环境设计了一种与启发式结合使用的能量过滤技术。过滤技术适应系统中剩余的能量,并估计任务执行可以消耗的能量的公平份额。过滤技术提高了所有启发式算法的性能,并分配了全天的能量消耗。根据我们的分析,我们建议在过度订阅的环境中使用过滤级别来最大化调度技术的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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