• DocumentCode
    2522544
  • Title

    Energy-efficient application-aware online provisioning for virtualized clouds and data centers

  • Author

    Rodero, I. ; Jaramillo, J. ; Quiroz, A. ; Parashar, M. ; Guim, F. ; Poole, S.

  • Author_Institution
    NSF Center for Autonomic Comput., Rutgers, State Univ. of New Jersey, Piscataway, NJ, USA
  • fYear
    2010
  • fDate
    15-18 Aug. 2010
  • Firstpage
    31
  • Lastpage
    45
  • Abstract
    As energy efficiency and associated costs become key concerns, consolidated and virtualized data centers and clouds are attractive computing platforms for data- and compute- intensive applications. These platforms provide an abstraction of nearly-unlimited computing resources through the elastic use of pools of consolidated resources, and provide opportunities for higher utilization and energy savings. Recently, these platforms are also being considered for more traditional high-performance computing (HPC) applications that have typically targeted Grids and similar conventional HPC platforms. However, maximizing energy efficiency, cost-effectiveness, and utilization for these applications while ensuring performance and other Quality of Service (QoS) guarantees, requires leveraging important and extremely challenging tradeoffs. These include, for example, the tradeoff between the need to efficiently create and provision Virtual Machines (VMs) on data center resources and the need to accommodate the heterogeneous resource demands and runtimes of these applications. In this paper we present an energy-aware online provisioning approach for HPC applications on consolidated and virtualized computing platforms. Energy efficiency is achieved using a workload-aware, just-right dynamic provisioning mechanism and the ability to power down subsystems of a host system that are not required by the VMs mapped to it. We evaluate the presented approach using real HPC workload traces from widely distributed production systems. The results presented demonstrated that compared to typical reactive or predefined provisioning, our approach achieves significant improvements in energy efficiency with an acceptable QoS penalty.
  • Keywords
    Internet; computer centres; grid computing; quality of service; virtual machines; HPC applications; QoS guarantees; data center resources; distributed production systems; dynamic provisioning mechanism; energy efficiency; energy-aware online provisioning approach; energy-efficient application-aware online provisioning; heterogeneous resource demands; high-performance computing; quality of service; virtual machines; virtualized clouds; virtualized computing platforms; virtualized data centers; Algorithm design and analysis; Clouds; Clustering algorithms; Quality of service; Resource management; Runtime; Servers; Autonomic Computing; Cloud Computing; Data Center; Efficiency; Energy; Resource Provisioning; Virtualization;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Green Computing Conference, 2010 International
  • Conference_Location
    Chicago, IL
  • Print_ISBN
    978-1-4244-7612-1
  • Type

    conf

  • DOI
    10.1109/GREENCOMP.2010.5598283
  • Filename
    5598283