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Workload Management for Power Efficiency in Heterogeneous Data Centers

机译:异构数据中心的电源效率工作负载管理

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The cloud computing paradigm has recently emerged as a convenient solution for running different workloads on highly parallel and scalable infrastructures. One major appeal of cloud computing is its capability of abstracting hardware resources and making them easy to use. Conversely, one of the major challenges for cloud providers is the energy efficiency improvement of their infrastructures. Aimed at overcoming this challenge, heterogeneous architectures have started to become part of the standard equipment used in data centers. Despite this effort, heterogeneous systems remain difficult to program and manage, while their effectiveness has been proven only in the HPC domain. Cloud workloads are different in nature and a way to exploit heterogeneity effectively is still lacking. This paper takes a first step towards an effective use of heterogeneous architectures in cloud infrastructures. It presents an in-depth analysis of cloud workloads, highlighting where energy efficiency can be obtained. The microservices paradigm is then presented as a way of intelligently partitioning applications in such a way that different components can take advantage of the heterogeneous hardware, thus providing energy efficiency. Finally, the integration of microservices and heterogeneous architectures, as well as the challenge of managing legacy applications, is presented in the context of the OPERA project.
机译:云计算范例最近成为一种方便的解决方案,用于在高度并行和可扩展的基础架构上运行不同的工作负载。云计算的一个主要吸引力是其抽象硬件资源并使它们易于使用的能力。相反,云提供商面临的主要挑战之一是其基础架构的能效改进。为了克服这一挑战,异构体系结构已开始成为数据中心使用的标准设备的一部分。尽管付出了这些努力,但异构系统仍然难以编程和管理,尽管其有效性仅在HPC领域得到了证明。云工作负载本质上是不同的,仍然缺乏有效利用异构性的方法。本文迈出了在云基础架构中有效使用异构架构的第一步。它提供了对云工作负载的深入分析,重点介绍了可以在何处获得能源效率。然后,将微服务范式作为一种智能分区应用程序的方式来呈现,以使不同组件可以利用异构硬件,从而提高能源效率。最后,在OPERA项目的上下文中介绍了微服务和异构体系结构的集成,以及管理遗留应用程序的挑战。

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