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Cost-Efficient Overclocking in Immersion-Cooled Datacenters

机译:浸没式冷却数据中心的经济高效超频

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Cloud providers typically use air-based solutions for cooling servers in datacenters. However, increasing transistor counts and the end of Dennard scaling will result in chips with thermal design power that exceeds the capabilities of air cooling in the near future. Consequently, providers have started to explore liquid cooling solutions (e.g., cold plates, immersion cooling) for the most power-hungry workloads. By keeping the servers cooler, these new solutions enable providers to operate server components beyond the normal frequency range (i.e., overclocking them) all the time. Still, providers must tradeoff the increase in performance via overclocking with its higher power draw and any component reliability implications.In this paper, we argue that two-phase immersion cooling (2PIC) is the most promising technology, and build three prototype 2PIC tanks. Given the benefits of 2PIC, we characterize the impact of overclocking on performance, power, and reliability. Moreover, we propose several new scenarios for taking advantage of overclocking in cloud platforms, including oversubscribing servers and virtual machine (VM) auto-scaling. For the auto-scaling scenario, we build a system that leverages overclocking for either hiding the latency of VM creation or postponing the VM creations in the hopes of not needing them. Using realistic cloud workloads running on a tank prototype, we show that overclocking can improve performance by 20%, increase VM packing density by 20%, and improve tail latency in auto-scaling scenarios by 54%. The combination of 2PIC and overclocking can reduce platform cost by up to 13% compared to air cooling.
机译:云提供商通常使用基于空气的解决方案进行数据中心的冷却服务器。然而,增加晶体管计数和丹尼德缩放的末端将导致具有热设计功率的芯片,其超越了不久的将来的空气冷却能力。因此,提供者已经开始探索最大功率饥饿的工作负载的液体冷却解决方案(例如,冷板,浸没冷却)。通过保持服务器冷却器,这些新的解决方案使提供商能够一直以正常频率范围(即,超频它们超频)操作服务器组件。尽管如此,提供商必须通过超频超频推动性能的增加,并通过其更高的功率抽取和任何组件可靠性影响。在本文中,我们认为两相浸没冷却(2Pic)是最有前途的技术,并建立三种原型的2Pic罐。鉴于2PIC的好处,我们表征了超频对性能,力量和可靠性的影响。此外,我们提出了利用云平台中超频超频的几种新方案,包括超额信写服务器和虚拟机(VM)自动缩放。对于自动缩放方案,我们构建一个系统,它利用超频来隐藏VM创建或推迟VM创作的潜伏期,希望不需要它们。使用在坦克原型上运行的现实云工作负载,我们显示超频可以提高性能20%,将VM包装密度提高20%,并在自动缩放方案中提高尾随延迟54%。与空气冷却相比,2Pic和超频的组合可以将平台成本降低至13%。

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