• DocumentCode
    1476186
  • Title

    Efficient policies for carrying Web traffic over flow-switched networks

  • Author

    Feldmann, Anja ; Rexford, Jennifer ; Caceres, Ramon

  • Author_Institution
    Networking & Distributed Syst. Res. Center, AT&T Labs.-Res., Florham Park, NJ, USA
  • Volume
    6
  • Issue
    6
  • fYear
    1998
  • fDate
    12/1/1998 12:00:00 AM
  • Firstpage
    673
  • Lastpage
    685
  • Abstract
    To efficiently transfer diverse traffic over high-speed links, modern integrated networks require more efficient packet-switching techniques that can capitalize on the advances in switch hardware. Several promising approaches attempt to improve the performance by creating dedicated “shortcut” connections for long-lived traffic flows, at the expense of the network overhead for establishing and maintaining these shortcuts. The network can balance these cost-performance tradeoffs through three tunable parameters: the granularity of flow end-point addresses, the timeout for grouping related packets into flows, and the trigger for migrating a long-lived flow to a shortcut connection. Drawing on a continuous one-week trace of Internet traffic, we evaluate the processor and switch overheads for transferring HTTP server traffic through a flow-switched network. In contrast to previous work, we focus on the full probability distributions of flow sizes and cost-performance metrics to highlight the subtle influence of the HTTP protocol and user behavior on the performance of flow switching. We find that moderate levels of aggregation and triggering yield significant reductions in overhead with a negligible reduction in performance. The traffic characterization results further suggest schemes for limiting shortcut overhead by temporarily delaying the creation of shortcuts during peak load and by aggregating related packets that share a portion of their routes through the network
  • Keywords
    Internet; information resources; network servers; packet switching; performance evaluation; probability; telecommunication network routing; telecommunication traffic; transport protocols; HTTP protocol; HTTP server traffic; Internet traffic; Web traffic; cost-performance tradeoffs; flow end-point address granularity; flow sizes; flow-switched networks; high-speed links; integrated networks; long-lived traffic flows; network overhead; packet-switching; probability distributions; processor overhead; routing; shortcut connection; switch hardware; switch overhead; timeout; tunable parameters; user behavior; Hardware; IP networks; Internet; Network servers; Packet switching; Probability distribution; Protocols; Switches; Telecommunication traffic; Web server;
  • fLanguage
    English
  • Journal_Title
    Networking, IEEE/ACM Transactions on
  • Publisher
    ieee
  • ISSN
    1063-6692
  • Type

    jour

  • DOI
    10.1109/90.748081
  • Filename
    748081