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Energy-aware job scheduler for high-performance computing

机译:节能型作业调度程序,用于高性能计算

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In recent years energy-aware computing has become a major topic, not only in wireless and mobile devices but also in devices using wired technology. The ICT industry is consuming an increasing amount of energy and a large part of the consumption is generated by large-scale data centers. In High-Performance Computing (HPC) data centers, higher performance equals higher energy consumption. This has created incentives on exploring several alternatives to reduce the energy consumption of the system, such as energy-efficient hardware or the Dynamic Voltage and Frequency Scaling (DVFS) technique. This work presents an energy-aware scheduler that can be applied to a HPC data center without any changes in hardware. The scheduler is evaluated with a simulation model and a real-world HPC testbed. Our experiments indicate that the scheduler is able to reduce the energy consumption by 6-16% depending on the job work- load. More importantly, there is no significant slowdown in the turnaround time or increase in the wait time of the job. The results hereby evidence that our approach can be beneficial for HPC data center operators without a large penalty on service level agreements.
机译:近年来,能量感知计算已成为一个主要主题,不仅在无线和移动设备中,而且在使用有线技术的设备中也是如此。 ICT行业正在消耗越来越多的能源,其中很大一部分是由大型数据中心产生的。在高性能计算(HPC)数据中心中,更高的性能等于更高的能耗。这激发了人们探索减少系统能耗的多种选择的动力,例如节能硬件或动态电压和频率缩放(DVFS)技术。这项工作提出了一个节能的调度程序,该调度程序可以应用于HPC数据中心,而无需更改硬件。通过仿真模型和实际的HPC测试平台对调度程序进行评估。我们的实验表明,根据工作负荷,调度程序能够将能耗降低6-16%。更重要的是,周转时间或作业的等待时间不会显着减慢。结果在此证明,我们的方法可以对HPC数据中心运营商有利,而不会对服务水平协议造成重大损失。

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