基于动态电压缩放的功率感知高性能计算集群能量状态自动控制

Yuansheng Cheng, Yu Zeng
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引用次数: 18

摘要

近年来,高性能计算(HPC)中心的能效问题越来越受到人们的关注。世界500强前10位的超级计算机的功耗通常在1Mkw以上。功率感知技术已广泛应用于数据中心或超级计算机中心,以降低功耗。在高性能计算中心中采用频率可扩展的CPU有助于降低功耗。由于负载不平衡是高性能计算中的一个常见问题,我们可以在CPU空闲时降低CPU的频率,这样可以在性能损失很小的情况下降低功耗。本文提出了一种自动控制CPU能量状态的方法——AESC(Automatic Energy Status control)。首先,我们通过负载均衡和通信时间来区分不同类型的应用程序功耗。其次,在前人研究结果的基础上,给出了控制能量状态的控制策略。通过使用该策略,我们可以自动调整CPU的频率,并获得减少20%能量而仅增加1%执行时间的最佳结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automatic Energy Status Controlling with Dynamic Voltage Scaling in Power-Aware High Performance Computing Cluster
Recently, more and more people are focused on the energy efficiency of HPC(High Performance Computing) centers. The power consumption of supercomputer listed in the first 10 of top 500 is usually more than 1Mkw. Power-aware techniques have been widely used in data centre or supercomputer centre for reducing the power consumption. It is useful for us to reduce the power consumption with frequency scalable CPU being adopted in the HPC centers. Because load unbalance is a common problem in high performance computing, we can gear the frequency of CPU down when it is idle so that the power consumption can be reduced with little performance lose. In this paper, we present a new method called AESC(Automatic Energy Status Controlling) which can control the energy status of CPU automatically. Firstly, we identify the application as different kinds of power consumption by the load balancing and communication time. Secondly, we will give a control policy for controlling the energy status based on former results. By using this policy, we can automatically gear the frequency of CPU and get the best result that 20% less energy while increasing execution time by only 1%.
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