• DocumentCode
    3140639
  • Title

    A Novel Fault-tolerant Particle Swarm Optimization Scheduler for Scheduling Independent Task in Grid Computing Environment

  • Author

    Nikkhah, Mehdi ; Rahmani, Amir Masoud ; Yektaie, M.H. ; Nikkhah, Mehdi

  • Author_Institution
    Comput. Sci., Islamic Azad Univ., Beiza, Iran
  • fYear
    2009
  • fDate
    1-3 June 2009
  • Firstpage
    489
  • Lastpage
    493
  • Abstract
    Grid computing allows one to unite pools of servers, storage systems, and networks from different domain with their specific management policies, into a single large system. The Grid Environment is dynamic and its domains act autonomously. Unfortunately, in such an environment failure may occur occasionally or a volatile host can delay the entire execution for a long period of time, which in turn can fail taskpsilas execution. In this paper, a Novel Fault-tolerant Particle Swarm Optimization Scheduler (NFPSO) is suggested to schedule independent tasks. This approach aims to generate a scheduling plan to overcome the resource failure problem while it decreases total taskpsilas completion time, cost and the percentage of Unsuccessful scheduled task. The experimental results of NFPSO scheduler are compared with results of Genetic Algorithm, Simulated Annealing, mountain Climbing and a Random scheduler. NFPSO shows better result in cost and success rate criteria than all other, but in completion time criteria GA has better than our proposed algorithm which is better than other.
  • Keywords
    fault tolerant computing; genetic algorithms; grid computing; particle swarm optimisation; scheduling; simulated annealing; fail task execution; fault-tolerant particle swarm optimization scheduler; genetic algorithm; grid computing environment; independent task scheduling; mountain climbing; random scheduler; resource failure problem; scheduling plan; simulated annealing; Computer network management; Costs; Delay effects; Fault tolerance; Genetic algorithms; Grid computing; Network servers; Particle swarm optimization; Processor scheduling; Simulated annealing; Computational Grid; Fault-tolerance; Particle Swarm Optimization; Scheduling;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Computer and Information Science, 2009. ICIS 2009. Eighth IEEE/ACIS International Conference on
  • Conference_Location
    Shanghai
  • Print_ISBN
    978-0-7695-3641-5
  • Type

    conf

  • DOI
    10.1109/ICIS.2009.71
  • Filename
    5222940