• DocumentCode
    3529843
  • Title

    Evaluation of Energy-Aware Server Selection Algorithms

  • Author

    Kataoka, Hiroki ; Duolikun, Dilawaer ; Enokido, Tomoya ; Takizawa, Makoto

  • Author_Institution
    Hosei Univ., Tokyo, Japan
  • fYear
    2015
  • fDate
    8-10 July 2015
  • Firstpage
    318
  • Lastpage
    325
  • Abstract
    The electric power consumed by servers has to be reduced in a cluster in order to realize eco society. We take a macro level approach to reducing the total electric energy consumption of servers to perform application processes in a server cluster. Servers are now equipped with multi-core CPUs. In this paper, we discuss a multi-level power consumption (MLPC) model of a server with a multi-core CPU. Here, the power consumption of a server depends on the number of active cores and active threads where at least one application process is performed. We also discuss a multi-level computation (MLC) model which gives the expected execution time of a process which is concurrently performed with other processes on a server with a multi-core CPU. Based on the MLPC model and the MLC model, we discuss an energy-aware (EA) algorithm to select a server for each process requested by a client in a cluster so as to reduce the total electric energy consumption while satisfying deadline requirements of the processes. We evaluate the EA algorithm and show not only the total energy consumption but also the average execution time of each process is reduced in the EA algorithm compared with the round-robin (RR) and random (RD) algorithms.
  • Keywords
    file servers; multiprocessing systems; power aware computing; MLC model; MLPC model; energy-aware server selection algorithms; macrolevel approach; multicore CPUs; multilevel computation model; multilevel power consumption model; server electric power consumption reduction; Clustering algorithms; Computational modeling; Energy consumption; Instruction sets; Power demand; Servers; Energy-aware (EA) server selection algorithm; Multi-level computation (MLC) model; Multi-level power consumption (MLPC) model;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Complex, Intelligent, and Software Intensive Systems (CISIS), 2015 Ninth International Conference on
  • Conference_Location
    Blumenau
  • Print_ISBN
    978-1-4799-8869-3
  • Type

    conf

  • DOI
    10.1109/CISIS.2015.45
  • Filename
    7185205