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Improving energy efficiency of supercomputer systems through software-aided liquid cooling management

机译:通过软件辅助的液体冷却管理提高超级计算机系统的能效

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摘要

Many fields of modern science rely more and more on the immense computing power of supercomputers. Modern, multi-thousand node systems can consume megawatts of electrical energy in highly uneven manner, challenging the data center infrastructure, both power and cooling coils. The traditional way of managing the infrastructure makes each subsystem of a data center (e.g. cooling) independent from all other in the way it relies only on local sensors to manage the infrastructure. The erratic nature of computing in a large data center makes this approach suboptimal. In the paper we show that by challenging the traditional split between the infrastructure and the computing equipment, one can gain significant boost in energy efficiency of the entire ecosystem. A solution that predicts cooling power demand basing on the information from a supercomputer resource manager, and then sets up the parameters of the cooling loop, is presented along with potential benefits in terms of reduction of the power draw.
机译:现代科学的许多领域越来越依赖于超级计算机的巨大计算能力。数以千计的现代节点系统可能会以高度不均匀的方式消耗数兆瓦的电能,从而对数据中心基础架构(包括电源线圈和冷却线圈)造成了挑战。传统的基础架构管理方式使数据中心的每个子系统(例如冷却系统)仅依赖于本地传感器来管理基础架构,因此彼此独立。大型数据中心中计算的不稳定特性使该方法不理想。在本文中,我们表明,通过挑战基础设施和计算设备之间的传统划分,人们可以显着提高整个生态系统的能源效率。提出了一种解决方案,该解决方案基于来自超级计算机资源管理器的信息来预测冷却功率需求,然后设置冷却回路的参数,以及降低功耗方面的潜在好处。

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