• DocumentCode
    2138665
  • Title

    Impact of realistic MIMO physical layer on video transmission over mobile Ad Hoc network

  • Author

    Hamidouche, Wassim ; Vauzelle, Rodolphe ; Olivier, Christian ; Pousset, Yannis ; Perrine, Clency

  • Author_Institution
    Dept. of Signal Image & Commun., Poitiers Univ., Poitiers, France
  • fYear
    2009
  • fDate
    13-16 Sept. 2009
  • Firstpage
    187
  • Lastpage
    191
  • Abstract
    In this paper we investigate the impact of a realistic physical layer on the H.264/AVC video transmission over Ad Hoc networks in urban environment. We propose a realistic Multiple Input Multiple Output (MIMO) physical layer which combines a determinist propagation model and a fine-grained model of wireless transmission errors. The determinist propagation model takes into account all the environmental characteristics (geometric and electric) and provides all the information of the multi-path channel (received power, complex impulse response). The wireless transmission errors model is based on a BER computation. The BER is calculated according to 802.11n standard to evaluate MIMO wireless links and, then, is compared to both SISO configuration and an existing wireless errors model using empirical propagation models. In the case of a SISO configuration, the BER is computed according to 802.11a standard. The simulation results show clearly a significant difference in term of QoS for the video transmission using realistic and empirical physical layer. In addition, the MIMO system, compared to a SISO one, improves the quality of links in the network and, thus, provides a better QoS for video transmission over Ad Hoc networks.
  • Keywords
    MIMO communication; ad hoc networks; error statistics; mobile radio; quality of service; video coding; wireless LAN; 802.11 standard; BER computation; H.264/AVC video transmission; MIMO physical layer; MIMO wireless links; QoS; SISO; impact wireless transmission errors; mobile ad hoc network; multipath channel; multiple input multiple output; video transmission; Ad hoc networks; Automatic voltage control; Bit error rate; Error correction codes; MIMO; Mobile ad hoc networks; Physical layer; Power system modeling; Video compression; Videoconference; 3D Ray Tracing; H.264/AVC; IEEE 802.11a/n; MIMO; Outdoor environment; Physical Layer;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Personal, Indoor and Mobile Radio Communications, 2009 IEEE 20th International Symposium on
  • Conference_Location
    Tokyo
  • Print_ISBN
    978-1-4244-5122-7
  • Electronic_ISBN
    978-1-4244-5123-4
  • Type

    conf

  • DOI
    10.1109/PIMRC.2009.5450260
  • Filename
    5450260