通过利用迭代应用程序上的剩余不平衡来节省能量

E. Padoin, M. Castro, L. Pilla, P. Navaux, J. Méhaut
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引用次数: 14

摘要

随着大型系统规模的增长,高性能计算(HPC)系统的功耗日益受到关注,从而消耗更多的能源。为了应对这一挑战,我们提出了一种新型能量感知负载均衡器的两种变体,旨在减少运行不平衡科学应用的并行平台的能耗,同时不降低其性能。我们的研究将动态负载平衡与DVFS技术相结合,以降低低负载计算核心的时钟频率,即使在任务重新映射后也会出现一些残留的不平衡。通过基准测试和实际应用的实验结果表明,使用我们的细粒度变体执行每核DVFS可节省高达32%的能源,使用我们的粗粒度变体执行每芯片DVFS可节省高达34%的能源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Saving energy by exploiting residual imbalances on iterative applications
The power consumption of High Performance Computing (HPC) systems is an increasing concern as large-scale systems grow in size and, consequently, consume more energy. In response to this challenge, we propose two variants of a new energy-aware load balancer that aim at reducing the energy consumption of parallel platforms running imbalanced scientific applications without degrading their performance. Our research combines dynamic load balancing with DVFS techniques in order to reduce the clock frequency of underloaded computing cores which experience some residual imbalance even after tasks are remapped. Experimental results with benchmarks and a real-world application presented energy savings of up to 32% with our fine-grained variant that performs per-core DVFS, and of up to 34% with our coarsegrained variant that performs per-chip DVFS.
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