• DocumentCode
    1302809
  • Title

    Reducing Power Consumption for Mobile Platforms via Adaptive Traffic Coalescing

  • Author

    Wang, Ren ; Tsai, James ; Maciocco, Christian ; Tai, Tsung-Yuan Charlie ; Wu, Jackie

  • Author_Institution
    Intel Labs., Portland, OR, USA
  • Volume
    29
  • Issue
    8
  • fYear
    2011
  • fDate
    9/1/2011 12:00:00 AM
  • Firstpage
    1618
  • Lastpage
    1629
  • Abstract
    Battery life remains to be a critical competitive metric for today´s mobile platforms that offer ubiquitous connectivity through their wireless communication interfaces. With most usage models being driven by always-on communication activities, e.g, Internet video streaming, web browsing, etc., it is imperative to understand the impact of network activities on the overall platform power, and optimize power consumption for such activities. As shown by our investigation, various real-world network-driven workloads exhibit bursty and random behavior, which motivates our work on regulating and coalescing incoming packets to reduce platform wake events. To understand the performance impact of packet coalescing, we conduct an extensive investigation to study how coalescing may affect the throughput and user experience. Armed with the deep understandings, we propose, implement and evaluate an Adaptive Traffic Coalescing (ATC) scheme that monitors the incoming traffic at the Network Interface Card (NIC), and adaptively coalesces the packets for a limited duration in the NIC buffer, thus requiring no network or eco-system support. The proposed ATC scheme effectively reduces platform wake events, and enables the platform to enter and stay in the low-power state longer for energy efficiency. We have implemented the scheme in commercial wireless NICs. Using various mobile platforms, we evaluate the power savings and performance impact of the proposed ATC scheme. Experiments show that ATC achieves significant power saving for major platform components, around 20% for real-world Internet workloads, without impacting performance and user experience.
  • Keywords
    Internet; energy conservation; mobile communication; mobile computing; mobility management (mobile radio); network interfaces; optimisation; packet radio networks; power consumption; telecommunication traffic; ATC scheme; NIC buffer; adaptive traffic coalescing; critical competitive metric; energy efficiency; mobile communication; network interface card; optimization; packet coalescing; power consumption; power savings; real-world Internet; real-world network; ubiquitous connectivity; user experience; wireless communication interfaces; Delay; Internet; Mobile communication; Power demand; Steady-state; Throughput; Wireless communication; Energy efficient wireless communication; Mobile platform power management; Traffic coalescing;
  • fLanguage
    English
  • Journal_Title
    Selected Areas in Communications, IEEE Journal on
  • Publisher
    ieee
  • ISSN
    0733-8716
  • Type

    jour

  • DOI
    10.1109/JSAC.2011.110911
  • Filename
    5992831