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Dynamic workload and cooling management in High-Efficiency data centers

机译:高效数据中心中的动态工作负载和散热管理

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摘要

Energy efficiency research in data centers has traditionally focused on raised-floor air-cooled facilities. As rack power density increases, traditional cooling is being replaced by close-coupled systems that provide enhanced airflow and cooling capacity. This work presents a model for close-coupled data centers with free cooling, and explores the power consumption trade-offs in these facilities as outdoor temperature changes throughout the year. Using this model, we propose a technique that jointly allocates workload and controls cooling in a power-efficient way. Our technique is tested with configuration parameters, power traces, and weather data collected from real-life data centers, and application profiles obtained from enterprise servers. Results show that our joint workload allocation and cooling policy provides 5% reduction in overall data center energy consumption, and up to 24% peak power reduction, leading to a 6% decrease in the electricity costs without affecting performance.
机译:传统上,数据中心的能效研究一直集中在高架地板风冷设施上。随着机架功率密度的增加,传统的制冷已被封闭式系统取代,该系统可提供增强的气流和冷却能力。这项工作为具有免费冷却功能的紧密耦合数据中心提供了一个模型,并探讨了这些设施在全年室外温度变化时的功耗平衡。使用此模型,我们提出了一种技术,该技术可以以节能方式共同分配工作量并控制冷却。我们的技术已通过配置参数,电源跟踪和从实际数据中心收集的天气数据以及从企业服务器获取的应用程序配置文件进行了测试。结果表明,我们的联合工作负载分配和冷却策略可将数据中心的整体能耗降低5%,峰值能耗降低24%,从而在不影响性能的情况下将电力成本降低6%。

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