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Energy accounting for shared virtualized environments under DVFS using PMC-based power models

机译:使用基于PMC的功率模型在DVFS下共享虚拟化环境的能源核算

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摘要

Virtualized infrastructure providers demand new methods to increase the accuracy of the accounting models used to charge their customers. Future data centers will be composed of many-core systems that will host a large number of virtual machines (VMs) each. While resource utilization accounting can be achieved with existing system tools, energy accounting is a complex task when per-VM granularity is the goal. In this paper, we propose a methodology that brings new opportunities to energy accounting by adding an unprecedented degree of accuracy on the per-VM measurements. We present a system -which leverages CPU and memory power models based in performance monitoring counters (PMCs) — to perform energy accounting in virtualized systems. The contribution of this paper is threefold. First, we show that PMC-based power modeling methods are still valid on virtualized environments. Second, we show that the Dynamic Voltage and Frequency Scaling (DVFS) mechanism, which commonly is used by infrastructure providers to avoid power and thermal emergencies, does not affect the accuracy of the models. And third, we introduce a novel methodology for accounting of energy consumption in virtualized systems. Accounting is done on a per-VM basis, even in the case where multiple VMs are deployed on top of the same physical hardware, bypassing the limitations of per-server aggregated power metering. Overall, the results for an Intel~? Core? 2 Duo show errors in energy estimations <5%. Such an approach brings flexibility to the chargeback models used by service and infrastructure providers. For instance, we are able to detect cases where VMs executed during the same amount of time, present more than 20% differences in energy consumption even only taking into account the consumption of the CPU and the memory.
机译:虚拟化基础架构提供商需要新的方法来提高用于向客户收费的会计模型的准确性。未来的数据中心将由许多核心系统组成,每个核心系统将托管大量虚拟机(VM)。尽管可以使用现有的系统工具来实现资源利用率核算,但是当以每VM粒度为目标时,能耗核算是一项复杂的任务。在本文中,我们提出了一种方法,该方法通过为每VM测量增加前所未有的准确性为能源核算带来新的机会。我们提出了一种系统-利用基于性能监视计数器(PMC)的CPU和内存电源模型-在虚拟化系统中执行能源核算。本文的贡献是三方面的。首先,我们证明基于PMC的功率建模方法在虚拟化环境中仍然有效。其次,我们表明,基础架构提供商通常使用动态电压和频率缩放(DVFS)机制来避免电源和热紧急情况,它不会影响模型的准确性。第三,我们介绍了一种用于计算虚拟化系统能耗的新颖方法。即使在同一物理硬件上部署多个VM的情况下,计费也基于每个VM进行,从而绕过了每个服务器聚合功率计量的限制。总的来说,结果是一个英特尔〜?核心? 2二重奏显示能量估计中的误差<5%。这种方法为服务和基础架构提供商使用的计费模型带来了灵活性。例如,我们仅在考虑CPU和内存消耗的情况下,就能检测出在相同时间段内执行VM的情况,其能耗差异超过20%。

著录项

  • 来源
    《Future generation computer systems》 |2012年第2期|p.457-468|共12页
  • 作者单位

    Barcelona Supercomputing Center, C.Jordi Girona 1-3, 08034 Barcelona, Spain;

    Barcelona Supercomputing Center, C.Jordi Girona 1-3, 08034 Barcelona, Spain,Universitat Politecnica de Catalunya (UPC), Campus Nord UK D6 Building, C.Jordi Girona 1 -3, 08034, Spain;

    Barcelona Supercomputing Center, C.Jordi Girona 1-3, 08034 Barcelona, Spain,Universitat Politecnica de Catalunya (UPC), Campus Nord UK D6 Building, C.Jordi Girona 1 -3, 08034, Spain;

    Barcelona Supercomputing Center, C.Jordi Girona 1-3, 08034 Barcelona, Spain;

    Barcelona Supercomputing Center, C.Jordi Girona 1-3, 08034 Barcelona, Spain,Universitat Politecnica de Catalunya (UPC), Campus Nord UK D6 Building, C.Jordi Girona 1 -3, 08034, Spain;

    Barcelona Supercomputing Center, C.Jordi Girona 1-3, 08034 Barcelona, Spain;

    Barcelona Supercomputing Center, C.Jordi Girona 1-3, 08034 Barcelona, Spain,Universitat Politecnica de Catalunya (UPC), Campus Nord UK D6 Building, C.Jordi Girona 1 -3, 08034, Spain;

    Barcelona Supercomputing Center, C.Jordi Girona 1-3, 08034 Barcelona, Spain;

    Barcelona Supercomputing Center, C.Jordi Girona 1-3, 08034 Barcelona, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    modeling techniques; energy accounting; performance counters; power modeling; virtualization; DVFS;

    机译:建模技术;能源核算;表演柜台;功率建模;虚拟化;DVFS;

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