• DocumentCode
    3151454
  • Title

    A Simulated Annealing Approach for Maximizing the Accrued Utility of an Isochronal Soft Real-Time System

  • Author

    Kazem, Ali Asghar Pourhaji ; Dadashkhani, Neda ; Kargahi, Mehdi ; Aghdam, Hamed Habibi

  • Author_Institution
    Dept. of Eng., Islamic Azad Univ., Tabriz, Iran
  • fYear
    2009
  • fDate
    28-30 Dec. 2009
  • Firstpage
    191
  • Lastpage
    195
  • Abstract
    Many real-time systems are in fact isochronal, where both early and late responses are harmful to the system or lead to lower quality of service. Task scheduling problems in real-time systems proved that are NP-hard problems. Therefore, heuristic search strategies can be applied to these problems. In this paper, a simulated annealing algorithm is proposed for static task scheduling in non-overloaded isochronal soft real-time systems. The main objective of proposed algorithm is maximizing the total accumulated utility of jobs. Experimental results indicate that simulated annealing approach is suitable than genetic algorithm for static task scheduling in isochronal soft real-time systems.
  • Keywords
    computational complexity; processor scheduling; real-time systems; search problems; simulated annealing; NP-hard problems; genetic algorithm; heuristic search strategies; multiprocessor scheduling; nonoverloaded isochronal soft real-time systems; quality of service; simulated annealing approach; static task scheduling; Computational modeling; Computer science; Computer simulation; Iterative algorithms; NP-hard problem; Processor scheduling; Quality of service; Real time systems; Simulated annealing; Time factors; Isochronal; Real-time Systems; Simulated Annealing; Static Scheduling; TUF;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Environmental and Computer Science, 2009. ICECS '09. Second International Conference on
  • Conference_Location
    Dubai
  • Print_ISBN
    978-0-7695-3937-9
  • Electronic_ISBN
    978-1-4244-5591-1
  • Type

    conf

  • DOI
    10.1109/ICECS.2009.79
  • Filename
    5383527