• DocumentCode
    1799272
  • Title

    CapNet: A Real-Time Wireless Management Network for Data Center Power Capping

  • Author

    Saifullah, Abusayeed ; Sankar, S. ; Jie Liu ; Chenyang Lu ; Chandra, Ranveer ; Priyantha, Bodhi

  • Author_Institution
    Washington Univ. in St Louis, St. Louis, MO, USA
  • fYear
    2014
  • fDate
    2-5 Dec. 2014
  • Firstpage
    334
  • Lastpage
    345
  • Abstract
    Data center management (DCM) is increasingly becoming a significant challenge for enterprises hosting large scale online and cloud services. Machines need to be monitored, and the scale of operations mandates an automated management with high reliability and real-time performance. Existing wired networking solutions for DCM come with high cost. In this paper, we propose a wireless sensor network as a cost-effective networking solution for DCM while satisfying the reliability and latency performance requirements of DCM. We have developed Cap Net, a real-time wireless sensor network for power capping, a time-critical DCM function for power management in a cluster of servers. Cap Net employs an efficient event-driven protocol that triggers data collection only upon the detection of a potential power capping event. We deploy and evaluate Cap Net in a data center. Using server power traces, our experimental results on a cluster of 480 servers inside the data center show that Cap Net can meet the real-time requirements of power capping. Cap Net demonstrates the feasibility and efficacy of wireless sensor networks for time-critical DCM applications.
  • Keywords
    cloud computing; computer centres; data communication; power aware computing; protocols; telecommunication computing; telecommunication network management; telecommunication network reliability; telecommunication power management; wireless sensor networks; CapNet; DCM power capping event detection; cloud service; data collection; event-driven protocol; real-time wireless sensor network automated power management; server cluster; time-critical data center management function reliability; Aggregates; IEEE 802.15 Standards; Power demand; Protocols; Real-time systems; Servers; Wireless communication;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Real-Time Systems Symposium (RTSS), 2014 IEEE
  • Conference_Location
    Rome
  • ISSN
    1052-8725
  • Type

    conf

  • DOI
    10.1109/RTSS.2014.35
  • Filename
    7010500