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An energy, performance efficient resource consolidation scheme for heterogeneous cloud datacenters

机译:异构云数据中心的节能,性能高效的资源整合方案

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Datacenters are the principal electricity consumers for cloud computing that provide an IT backbone for today's business and economy. Numerous studies suggest that most of the servers, in the US datacenters, are idle or less-utilised, making it possible to save energy by using resource consolidation techniques. However, consolidation involves migrations of virtual machines, containers and/or applications, depending on the underlying virtualisation method; that can be expensive in terms of energy consumption and performance loss. In this paper, we: (a) propose a consolidation algorithm which favours the most effective migration among VMs, containers and applications; and (b) investigate how migration decisions should be made to save energy without any negative impact on the service performance. We demonstrate through a number of experiments, using the real workload traces for 800 hosts, approximately 1516 VMs, and more than million containers, how different approaches to migration, will impact on datacenter's energy consumption and performance. We suggest, using reasonable assumptions for datacenter set-up, that there is a trade-off involved between migrating containers and virtual machines. It is more performance efficient to migrate virtual machines; however, migrating containers could be more energy efficient than virtual machines. Moreover, migrating containerised applications, that run inside virtual machines, could lead to energy and performance efficient consolidation technique in large-scale datacenters. Our evaluation suggests that migrating applications could be similar to 5.5% more energy efficient and similar to 11.9% more performance efficient than VMs migration. Further, energy and performance efficient consolidation is similar to 14.6% energy and similar to 7.9% performance efficient than application migration. Finally, we generalise our results using several repeatable experiments over various workloads, resources and datacenter set-ups.
机译:数据中心是云计算的主要电力消费者,为当今的商业和经济提供IT骨干。大量研究表明,美国数据中心中的大多数服务器都处于空闲状态或利用率较低,从而可以通过使用资源整合技术来节省能源。但是,整合涉及迁移虚拟机,容器和/或应用程序,具体取决于底层的虚拟化方法。就能耗和性能损失而言,这可能是昂贵的。在本文中,我们:(a)提出一种整合算法,该算法支持在VM,容器和应用程序之间进行最有效的迁移; (b)研究如何做出迁移决策以节省能源,而又不对服务性能产生任何负面影响。通过使用800个主机,大约1516个VM和超过100万个容器的实际工作负载跟踪,我们通过大量实验演示了不同的迁移方法将如何影响数据中心的能耗和性能。我们建议使用合理的数据中心设置假设,在迁移容器和虚拟机之间要权衡取舍。迁移虚拟机更高效。但是,迁移容器可能比虚拟机更节能。此外,迁移在虚拟机内部运行的容器化应用程序可能会导致大型数据中心采用节能高效的整合技术。我们的评估表明,与VM迁移相比,迁移应用程序能效高5.5%,性能效率高约11.9%。此外,与应用程序迁移相比,节能和性能有效的整合与14.6%的能量相似,而性能效率则与7.9%相似。最后,我们使用针对各种工作负载,资源和数据中心设置的几个可重复实验对结果进行概括。

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