• DocumentCode
    2936374
  • Title

    A `conservative´ approach to parallelizing the Sharks World simulation

  • Author

    Nicol, David M. ; Riffe, Scott E.

  • Author_Institution
    Dept. of Comput. Sci., Coll. of William & Mary, Williamsburg, VA, USA
  • fYear
    1990
  • fDate
    9-12 Dec 1990
  • Firstpage
    186
  • Lastpage
    190
  • Abstract
    The authors describe how they parallelized a benchmark problem for parallel simulation, the Shark´s World. The solution obtained is conservative, in the sense that no state information is saved and no rollbacks occur. Knowledge and exploitation of lookahead in the simulation model can lead to excellent performance. The search for lookahead in Sharks World led to a completely different solution approach. The advantages of the approach are manifold: on a serial workstation problems are solved over 20 times faster than with the usual discrete-event approach: the approach is easily parallelized and achieves high speedups. Also, excellent performance achieved by exploiting lookahead can be easily thwarted by relatively minor changes in problem specification. Any modification to the model rules that affects lookahead exploitation may require a great deal of modification to the solution approach. This fundamental problem will be suffered by any conservative synchronization method whose performance depends on lookahead
  • Keywords
    discrete event simulation; parallel processing; Sharks World simulation; conservative synchronization method; discrete-event; lookahead; no state information; parallel simulation; Computational modeling; Computer science; Computer simulation; Discrete event simulation; Educational institutions; Marine animals; Predictive models; Proposals; Testing; Workstations;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Simulation Conference, 1990. Proceedings., Winter
  • Conference_Location
    New Orleans, LA
  • Print_ISBN
    0-911801-72-3
  • Type

    conf

  • DOI
    10.1109/WSC.1990.129512
  • Filename
    129512