• DocumentCode
    1512650
  • Title

    E-MiLi: Energy-Minimizing Idle Listening in Wireless Networks

  • Author

    Zhang, Xinyu ; Shin, Kang G.

  • Author_Institution
    University of Michigan, Ann Arbor
  • Volume
    11
  • Issue
    9
  • fYear
    2012
  • Firstpage
    1441
  • Lastpage
    1454
  • Abstract
    WiFi interface is known to be a primary energy consumer in mobile devices, and idle listening (IL) is the dominant source of energy consumption in WiFi. Most existing protocols, such as the 802.11 power-saving mode (PSM), attempt to reduce the time spent in IL by sleep scheduling. However, through an extensive analysis of real-world traffic, we found more than 60 percent of energy is consumed in IL, even with PSM enabled. To remedy this problem, we propose Energy-Minimizing idle Listening (E-MiLi) that reduces the power consumption in IL, given that the time spent in IL has already been optimized by sleep scheduling. Observing that radio power consumption decreases proportionally to its clock rate, E-MiLi adaptively downclocks the radio during IL, and reverts to full clock rate when an incoming packet is detected or a packet has to be transmitted. E-MiLi incorporates sampling rate invariant detection, ensuring accurate packet detection and address filtering even when the receiver´s sampling clock rate is much lower than the signal bandwidth. Further, it employs an opportunistic downclocking mechanism to optimize the efficiency of switching clock rate, based on a simple interface to existing MAC-layer scheduling protocols. We have implemented E-MiLi on the USRP software radio platform. Our experimental evaluation shows that E-MiLi can detect packets with close to 100 percent accuracy even with downclocking by a factor of 16. When integrated with 802.11, E-MiLi can reduce energy consumption by around 44 percent for 92 percent of users in real-world wireless networks.
  • Keywords
    Energy consumption; Energy efficiency; IEEE 802.11 Standards; Power demand; Receivers; Software radio; Switches; Synchronization; CSMA wireless networks; Energy efficiency; adapting clock rate; dynamic frequency scaling.; idle listening; packet detection;
  • fLanguage
    English
  • Journal_Title
    Mobile Computing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1536-1233
  • Type

    jour

  • DOI
    10.1109/TMC.2012.112
  • Filename
    6197198