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Temperature Aware Dynamic Workload Scheduling in Multisocket CPU Servers

机译:多插槽CPU服务器中的温度感知动态工作负载调度

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In this paper, we propose a multitier approach for significantly lowering the cooling costs associated with fan subsystems without compromising the system performance. Our technique manages the fan speed by intelligently allocating the workload at the core level as well as at the CPU socket level. At the core level we propose a proactive dynamic thermal management scheme. We introduce a new predictor that utilizes the band-limited property of the temperature frequency spectrum. A big advantage of our predictor is that it does not require the costly training phase and still maintains high accuracy. At the socket level, we use control theoretic approach to develop a stable scheduler that reduces the cooling costs further by providing a better thermal distribution. Our thermal management scheme incorporates runtime workload characterization to perform efficient thermally aware scheduling. The experimental results show that our approach delivers an average cooling energy savings of 80% compared to the state of the art techniques. The reported results also show that our formal technique maintains stability while heuristic solutions fail in this aspect.
机译:在本文中,我们提出了一种多层方法,可在不影响系统性能的情况下显着降低与风扇子系统相关的冷却成本。我们的技术通过在核心级别以及CPU插槽级别智能分配工作负载来管理风扇速度。在核心级别,我们提出了一种主动的动态热管理方案。我们介绍一种利用温度频谱的带限属性的新预测器。我们的预测器的一大优势在于,它不需要昂贵的培训阶段,并且仍然可以保持较高的准确性。在套接字级别,我们使用控制理论方法来开发稳定的调度程序,该调度程序通过提供更好的热分布来进一步降低冷却成本。我们的热管理方案结合了运行时工作负载特征来执行高效的热感知调度。实验结果表明,与现有技术相比,我们的方法可平均节省80%的冷却能量。报道的结果还表明,我们的形式技术保持了稳定性,而启发式解决方案在这方面失败了。

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