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Parallel discrete event simulation using shared memory

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3 Author(s)
D. A. Reed ; Illinois Univ., Urbana, IL, USA ; A. D. Malony ; B. D. McCredie

With traditional event-list techniques, evaluating a detailed discrete event simulation-model can often require hours or even days of computation time. By eliminating the event list and maintaining only sufficient synchronization to ensure causality, parallel simulation can potentially provide speedups that are linear in the numbers of processors. A set of shared-memory experiments using the Chandy-Misra distributed simulation algorithm, to simulate networks of queues is presented. Parameters of the study include queueing network topology and routing probabilities, number of processors, and assignment of network nodes to processors. These experiments show that Chandy-Misra distributed simulation is a questionable alternative to sequential simulation of most queuing network models.

Published in:

IEEE Transactions on Software Engineering  (Volume:14 ,  Issue: 4 )