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Exploring the Energy-Time Tradeoff in High-Performance Computing

机译:探索高性能计算中的节能课程

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High-performance computing is and has always been performance oriented. However, a consequence of the push towards maximum performance is increased energy consumption, especially at supercomputing centers. Moreover, as peak performance is rarely attained, some of this energy consumption results in little or no performance gain. In addition, large energy consumption costs the government a significant amount of money and wastes natural resources. This paper investigates the tradeoff between energy and performance. Through the use of processors that support frequency and voltage scaling, we measured the performance and energy consumption of programs from three popular benchmark sets. We took multiple measurements for each program using different frequency and voltage settings. Results show that for many programs, a significant decrease in energy is possible with a small increase in time. We believe that this justifies further investigation into parallel HPC (e.g., MPI) applications.
机译:高性能计算是并始终以性能为导向。然而,推动最大性能的结果是提高能源消耗,特别是在超级计算中心。此外,随着峰值性能很少达到,一些能量消耗导致性能增益很少或没有。此外,大量能耗将政府成本为大量资金和废弃自然资源。本文调查了能源与绩效之间的权衡。通过使用支持频率和电压缩放的处理器,我们从三个流行的基准集中测量了程序的性能和能耗。我们使用不同的频率和电压设置对每个程序进行了多次测量。结果表明,对于许多节目,可以在较小的时间内增加能量的显着降低。我们认为,这证明了进一步调查并行HPC(例如,MPI)应用程序。

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