• DocumentCode
    1341172
  • Title

    A Novel Multichannel Streaming Scheme to Reduce Channel Switching Delay in Application Layer Multicast

  • Author

    Ako, Toshiaki ; Nishiyama, Hiroki ; Ansari, Nirwan ; Kato, Nei

  • Author_Institution
    Grad. Sch. of Inf. Sci., Tohoku Univ., Sendai, Japan
  • Volume
    5
  • Issue
    4
  • fYear
    2011
  • Firstpage
    545
  • Lastpage
    554
  • Abstract
    Video streaming services over the Internet are growing rapidly owing to the broadbandization of various networks. However, in such systems where a large number of users simultaneously access the same contents server, the convergence of the network traffic and service requests presents a significant problem. From this point of view, application layer multicast (ALM) has recently attracted much attention due to its scalability and feasibility in the current network systems. In ALM, user nodes construct a multicast tree structure to efficiently deliver an identical video streaming content. Various techniques to construct ALM trees have been designed to achieve improved performance in terms of shorter delay and higher reliability. However, in most of the existing ALM schemes, the performance in channel switching events has not been studied sufficiently; channel switching can be considered as the combination of the procedures for departing from the current and joining the future ALM trees, respectively. In general, node joining and departure processes take a certain time, which can be increased significantly depending on the network conditions whereby users are left waiting for the start of a new program on the switched channel. Therefore, reducing the channel switching delay is a significant issue in multichannel video streaming in ALM. In this paper, we propose a multichannel streaming scheme to reduce channel switching delay in ALM. Our scheme is based on an advanced ALM method dubbed network-aware hierarchical arrangement graph, which constructs node-disjoint multicast trees by utilizing the arrangement graph theory to achieve high robustness on node departures. The performance of the proposed scheme is verified through extensive computer simulations, which demonstrate that our proposed scheme succeeds in reducing the delay in channel switching without system throughput degradation.
  • Keywords
    Internet; graph theory; multicast communication; telecommunication network reliability; telecommunication switching; trees (mathematics); video streaming; wireless channels; ALM trees; Internet; application layer multicast; channel switching delay reduction; computer simulations; multichannel streaming scheme; network service; network traffic; network-aware hierarchical arrangement graph theory; node-disjoint multicast tree structure; reliability; user nodes; video streaming services; Delay; Graph theory; IP networks; IPTV; Multicast communication; Streaming media; Tree data structures; Application layer multicast (ALM); channel change; channel switching delay; internet TV; multichannel streaming;
  • fLanguage
    English
  • Journal_Title
    Systems Journal, IEEE
  • Publisher
    ieee
  • ISSN
    1932-8184
  • Type

    jour

  • DOI
    10.1109/JSYST.2011.2165611
  • Filename
    6035738