MS3: A Mediterranean-stile job scheduler for supercomputers - do less when it's too hot!

Andrea Borghesi, C. Conficoni, M. Lombardi, Andrea Bartolini
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引用次数: 25

Abstract

Supercomputers machines, HPC systems in general, embed sophisticated and advanced cooling circuits to remove heat and ensuring the required peak performance. Unfortunately removing heat, by means of cold water or air, costs additional power which decreases the overall supercomputer energy efficiency. Free-cooling uses ambient air instead than chiller to cool down warm air or liquid temperature. The amount of heat which can be removed for-free depends on ambient conditions such as temperature and humidity. Power capping can be used to reduce the supercomputer power dissipation to maximize the cooling efficiency. In this paper we present a power capping approach based on Constraint Programming which enables to estimate at every scheduling interval the power consumption of a given job schedule and to select among all possible job schedules the one which maximizes the supercomputer efficiency.
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地中海风格的超级计算机作业调度器——天气太热时少做点事!
一般来说,超级计算机和高性能计算系统都嵌入了复杂而先进的冷却电路,以消除热量并确保所需的峰值性能。不幸的是,通过冷水或冷空气来散热会消耗额外的电力,从而降低超级计算机的整体能效。自然冷却使用环境空气而不是冷却器来冷却热空气或液体温度。可以免费去除的热量取决于环境条件,如温度和湿度。功率封顶可以降低超级计算机的功耗,最大限度地提高散热效率。本文提出了一种基于约束规划的功率封顶方法,该方法能够估计给定作业调度在每个调度区间的功耗,并在所有可能的作业调度中选择最优的作业调度。
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