Title :
On phased delay stochastic Petri nets: definition and an application
Author :
Jones, Rob ; Ciardo, Gianfranco
Author_Institution :
ASRC Aerosp. Corp., Williamsburg, VA, USA
Abstract :
We present a novel stochastic Petri net formalism where both discrete and continuous phase-type firing delays can appear simultaneously in the same model. By capturing non-Markovian behavior in discrete or continuous time, as appropriate, the formalism affords higher modeling fidelity. Alone, discrete or continuous phase-type Petri nets have simple underlying Markov chains, but mixing the two complicates matters. We show that, in a mixed model where discrete-time transitions are synchronized, the underlying process is semi-regenerative and we can employ Markov renewal theory to formulate stationary or time-dependent solutions. Also noteworthy are the computational trade-offs between the so-called embedded and subordinate Markov chains, which we employ to improve the overall solution efficiency. We present a preliminary stationary solution method that shows promise in terms of time and space efficiency and demonstrate it on an aeronautical data link system application
Keywords :
Markov processes; Petri nets; performance evaluation; Markov chains; Markov renewal theory; aeronautical data link; phase-type firing delays; stationary solution method; stochastic Petri net; Contracts; Delay effects; Educational institutions; Embedded computing; NASA; Petri nets; Random variables; Space stations; State-space methods; Stochastic processes;
Conference_Titel :
Petri Nets and Performance Models, 2001. Proceedings. 9th International Workshop on
Conference_Location :
Aachen
Print_ISBN :
0-7695-1248-8
DOI :
10.1109/PNPM.2001.953366