管理分布式UPS能量,实现数据中心有效的功率封顶

Vasileios Kontorinis, L. Zhang, Baris Aksanli, J. Sampson, H. Homayoun, Eddie Pettis, D. Tullsen, T. Simunic
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引用次数: 195

摘要

电力超额订阅可以降低现代数据中心的成本。然而,设计一个比所有服务器的聚合峰值功率更低的工作功率点的电力基础设施需要动态技术来避免高峰值功率成本,甚至更糟糕的是,跳闸断路器。这项工作提出了一种分布式每台服务器ups的架构,该架构可以在低活动期间存储能量,并在功率峰值期间使用这些能量。这项工作利用了UPS电池的分布式特性,并制定了延长其使用时间的策略。这种特定的方法将现代服务器的峰值功率降低了19.4%,而不影响性能,允许在相同的功率预算下多安装24%的服务器。更多的服务器可以更好地摊销基础设施成本,因此,每台服务器的总拥有成本降低了6.3%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Managing distributed UPS energy for effective power capping in data centers
Power over-subscription can reduce costs for modern data centers. However, designing the power infrastructure for a lower operating power point than the aggregated peak power of all servers requires dynamic techniques to avoid high peak power costs and, even worse, tripping circuit breakers. This work presents an architecture for distributed per-server UPSs that stores energy during low activity periods and uses this energy during power spikes. This work leverages the distributed nature of the UPS batteries and develops policies that prolong the duration of their usage. The specific approach shaves 19.4% of the peak power for modern servers, at no cost in performance, allowing the installation of 24% more servers within the same power budget. More servers amortize infrastructure costs better and, hence, reduce total cost of ownership per server by 6.3%.
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