• DocumentCode
    1792633
  • Title

    Optimization of TTEthernet networks to support best-effort traffic

  • Author

    Tamas-Selicean, Domitian ; Pop, Paul

  • Author_Institution
    DTU Compute Tech., Univ. of Denmark, Lyngby, Denmark
  • fYear
    2014
  • fDate
    16-19 Sept. 2014
  • Firstpage
    1
  • Lastpage
    4
  • Abstract
    This paper focuses on the optimization of the TTEthernet communication protocol, which offers three traffic classes: time-triggered (TT), sent according to static schedules, rate-constrained (RC) that has bounded end-to-end latency, and best-effort (BE), the classic Ethernet traffic, with no timing guarantees. In our earlier work we have proposed an optimization approach named DOTTS that performs the routing, scheduling and packing / fragmenting of TT and RC messages, such that the TT and RC traffic is schedulable. Although backwards compatibility with classic Ethernet networks is one of TTEthernet´s strong points, there is little research on this topic. However, in this paper, we extend our DOTTS optimization approach to optimize TTEthernet networks, such that not only the TT and RC messages are schedulable, but we also maximize the available bandwidth for BE messages. The proposed optimization has been evaluated on a space application case study.
  • Keywords
    local area networks; optimisation; protocols; search problems; telecommunication traffic; BE messages; DOTTS optimization; RC messages; TT messages; TTEthernet communication protocol; TTEthernet networks; best-effort traffic; design optimization of TTEthernet-based systems; rate-constrained traffic; tabu search-based metaheuristic; time-triggered Ethernet; time-triggered traffic; Aerospace electronics; Bandwidth; Optimization; Protocols; Real-time systems; Schedules; Timing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Emerging Technology and Factory Automation (ETFA), 2014 IEEE
  • Conference_Location
    Barcelona
  • Type

    conf

  • DOI
    10.1109/ETFA.2014.7005256
  • Filename
    7005256