Aggressive Datacenter Power Provisioning with Batteries

IF 2 4区 计算机科学 Q2 COMPUTER SCIENCE, THEORY & METHODS ACM Transactions on Computer Systems Pub Date : 2013-02-01 DOI:10.1145/2427631.2427633
Sriram Govindan, Di Wang, A. Sivasubramaniam, B. Urgaonkar
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引用次数: 30

Abstract

Datacenters spend $10--25 per watt in provisioning their power infrastructure, regardless of the watts actually consumed. Since peak power needs arise rarely, provisioning power infrastructure for them can be expensive. One can, thus, aggressively underprovision infrastructure assuming that simultaneous peak draw across all equipment will happen rarely. The resulting nonzero probability of emergency events where power needs exceed provisioned capacity, however small, mandates graceful reaction mechanisms to cap the power draw instead of leaving it to disruptive circuit breakers/fuses. Existing strategies for power capping use temporal knobs local to a server that throttle the rate of execution (using power modes), and/or spatial knobs that redirect/migrate excess load to regions of the datacenter with more power headroom. We show these mechanisms to have performance degrading ramifications, and propose an entirely orthogonal solution that leverages existing UPS batteries to temporarily augment the utility supply during emergencies. We build an experimental prototype to demonstrate such power capping on a cluster of 8 servers, each with an individual battery, and implement several online heuristics in the context of different datacenter workloads to evaluate their effectiveness in handling power emergencies. We show that our battery-based solution can: (i) handle emergencies of short durations on its own, (ii) supplement existing reaction mechanisms to enhance their efficacy for longer emergencies, and (iii) create more slack for shifting applications temporarily to nonpeak durations.
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积极的数据中心电池供电
无论实际消耗多少瓦特,数据中心在配置电力基础设施上每瓦花费10- 25美元。由于峰值电力需求很少出现,因此为它们提供电力基础设施可能非常昂贵。因此,假设所有设备的同时峰值消耗很少发生,人们可以积极地减少基础设施的供应。当电力需求超过规定容量时,所产生的紧急事件的非零概率,无论多么小,都要求有优雅的反应机制来限制电力消耗,而不是将其留给破坏性断路器/保险丝。现有的功率封顶策略使用服务器本地的时间旋钮来限制执行速度(使用功率模式),和/或空间旋钮将多余的负载重定向/迁移到具有更多功率剩余空间的数据中心区域。我们展示了这些机制有性能下降的后果,并提出了一个完全正交的解决方案,利用现有的UPS电池在紧急情况下暂时增加公用事业供应。我们构建了一个实验原型,在一个由8台服务器组成的集群上演示这种功率上限,每台服务器都有一个单独的电池,并在不同的数据中心工作负载上下文中实现了几个在线启发式方法,以评估它们在处理电源紧急情况方面的有效性。我们表明,我们基于电池的解决方案可以:(i)自行处理短时间的紧急情况,(ii)补充现有的反应机制,以提高其对较长时间紧急情况的有效性,以及(iii)为将应用暂时转移到非峰值持续时间创造更多的空闲。
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来源期刊
ACM Transactions on Computer Systems
ACM Transactions on Computer Systems 工程技术-计算机:理论方法
CiteScore
4.00
自引率
0.00%
发文量
7
审稿时长
1 months
期刊介绍: ACM Transactions on Computer Systems (TOCS) presents research and development results on the design, implementation, analysis, evaluation, and use of computer systems and systems software. The term "computer systems" is interpreted broadly and includes operating systems, systems architecture and hardware, distributed systems, optimizing compilers, and the interaction between systems and computer networks. Articles appearing in TOCS will tend either to present new techniques and concepts, or to report on experiences and experiments with actual systems. Insights useful to system designers, builders, and users will be emphasized. TOCS publishes research and technical papers, both short and long. It includes technical correspondence to permit commentary on technical topics and on previously published papers.
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