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Energy Conservation Through Cloned Execution Of Simulations

机译:通过克隆的仿真执行节能

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High-performance computing facilities used for scientific computing draw enormous energy, some of them consuming many megawatt-hours. Saving the energy consumption of computations on such facilities can dramatically reduce the total cost of their operation and help reduce environmental effects. Here, we focus on a way to reduce energy consumption in many ensembles of simulations. Using the method of simulation cloning to exploit parallelism while also significantly conserving the computational and memory requirements, we perform a detailed empirical study of energy consumed on a large supercomputer consisting of hardware accelerator cards (graphical processing units, GPUs). We build on previous insights from mathematical analysis and implementation of cloned simulations that result in computational and memory savings by several orders-of-magnitude. Using instrumentation to track the power drawn by thousands of accelerator cards, we report significant aggregate energy savings from cloned simulations.
机译:用于科学计算的高性能计算设施绘制了巨大的能量,其中一些人消耗了许多兆瓦。节省这些设施的计算能耗可以显着降低其运行的总成本,有助于减少环境影响。在这里,我们专注于减少模拟的许多集合中的能耗的方法。使用模拟克隆方法来利用并行性,同时也显着节省了计算和内存要求,我们对由硬件加速卡(图形处理单元,GPU)组成的大型超级计算机上消耗的能量进行了详细的实证研究。我们基于以前的数学分析和实施克隆模拟的见解,从而通过几个级数节省计算和内存。使用仪器跟踪数千张加速卡绘制的电源,我们报告了克隆模拟的显着聚合节能。

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