• DocumentCode
    14003
  • Title

    Design considerations of IEEE 802.15.4m low-rate WPAN in TV white space

  • Author

    Chin-Sean Sum ; Liru Lu ; Ming-Tuo Zhou ; Kojima, Fumihide ; Harada, Hiroshi

  • Volume
    51
  • Issue
    4
  • fYear
    2013
  • fDate
    Apr-13
  • Firstpage
    74
  • Lastpage
    82
  • Abstract
    This article provides an overview of technical design considerations for IEEE 802.15.4m LRWPAN operating in TVWS. We summarize and discuss TVWS regulatory requirements and LRWPAN applications, the two major driving forces motivating the formation of the new IEEE 802.15.4m standard. These forces define the criteria necessary for consideration during IEEE 802.15.4m system design to meet regulatory requirements and optimize performance. First, system design is presented from the perspective of LR-WPAN channelization with reference to the TV channel plan. Next, design considerations for network architecture and topology are discussed by relating the architecture requirement in TVWS regulations to that in the legacy IEEE 802.15.4 standard. Third, the PHY and MAC layer designs, which are crucial for meeting the criterion of optimizing LR-WPAN performance to support potential applications, are studied. In the PHY layer, the existing design in IEEE 802.15.4 is listed and discussed with regard to its applicability and reusability in TVWS. In the MAC layer, two functional entities, the TVWS operation-enabling feature and the dynamic frequency-band switching mechanism, are discussed with respect to their necessity and practicality for performance enhancement.
  • Keywords
    IPTV; Zigbee; access protocols; personal area networks; telecommunication network topology; IEEE 802.15.4m low rate WPAN; LR-WPAN channelization; LRWPAN applications; MAC layer designs; TV channel; TV white space; design considerations; dynamic frequency band switching mechanism; network architecture; network topology; wireless personal area networking; Digital audio broadcasting; IEEE 802.15 Standards; Network topology; Peer-to-peer computing; Phase modulation; System analysis and design; TV; White spaces;
  • fLanguage
    English
  • Journal_Title
    Communications Magazine, IEEE
  • Publisher
    ieee
  • ISSN
    0163-6804
  • Type

    jour

  • DOI
    10.1109/MCOM.2013.6495764
  • Filename
    6495764