GreenHPC: a novel framework to measure energy consumption on HPC applications

G. Rostirolla, R. Righi, V. F. Rodrigues, P. Velho, E. Padoin
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引用次数: 8

Abstract

Energy consumption on systems that have a continuous power source is tightly-related to both the computing time of an application and its required CPU load. Considering the scope of HPC applications which commonly have a time precision in nano or milliseconds, we observe a lack of systems that combine appropriate sampling rate, low intrusiveness and low cost. In this context, this article presents a model called GreenHPC that uses a hall effect sensor to precisely capture current with an arbitrary timeslice on HPC applications. Its scientific contribution relies on analyzing the energy consumption at a cluster scale, without application intrusiveness, showing the impact of maintaining idle nodes or turning them off for energy saving. Furthermore, considering the use of GreenHPC over the execution of a seismic wave application, we also present the number of employed processors which present the best energy consumption index. Finally, we have used the obtained results to infer a model to estimate energy consumption of HPC applications. All the developed work has a special concern on reproducibility, so all data and hardware schematics are available for download at 1.
greenenhpc:一个衡量高性能计算应用能耗的新框架
具有连续电源的系统的能耗与应用程序的计算时间及其所需的CPU负载密切相关。考虑到HPC应用的范围通常具有纳米或毫秒级的时间精度,我们观察到缺乏结合适当采样率,低侵入性和低成本的系统。在这种情况下,本文提出了一种称为GreenHPC的模型,该模型使用霍尔效应传感器在HPC应用程序上精确捕获具有任意时间片的电流。它的科学贡献依赖于在没有应用程序干扰的情况下分析集群规模的能耗,显示维护空闲节点或关闭它们以节省能源的影响。此外,考虑到在地震波应用程序的执行中使用greenenhpc,我们还给出了呈现最佳能耗指数的所使用处理器的数量。最后,我们利用所得结果推导出一个模型来估计高性能计算应用的能耗。所有开发的工作都特别关注再现性,因此所有数据和硬件原理图都可以在1下载。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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