2019 IEEE 27th International Symposium on Modeling, Analysis, and Simulation of Computer and Telecommunication Systems (MASCOTS 2019
DOI: 10.1109/mascots.2019.00015
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A Tool for the Automatic Derivation of Symbolic ODE from Symmetric Net Models

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Cited by 4 publications
(3 citation statements)
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“…In principle, coloured Petri nets could be simulated directly on the coloured level with the constraint that the model is symmetric (Beccuti et al, 2015), thus avoiding blowing up the model structure which often comes with unfolding. However, the corresponding algorithms are much more complicated, often involve an implicit partial unfolding, and only a few of them are actually available in practice (Beccuti et al, 2019;Amparore et al, 2021). In addition, our models are generally not symmetric.…”
Section: Folding/unfoldingmentioning
confidence: 99%
“…In principle, coloured Petri nets could be simulated directly on the coloured level with the constraint that the model is symmetric (Beccuti et al, 2015), thus avoiding blowing up the model structure which often comes with unfolding. However, the corresponding algorithms are much more complicated, often involve an implicit partial unfolding, and only a few of them are actually available in practice (Beccuti et al, 2019;Amparore et al, 2021). In addition, our models are generally not symmetric.…”
Section: Folding/unfoldingmentioning
confidence: 99%
“…Then, a reduced ODE system may be derived including only these symbolic equations whose solution mimics the behavior of the original model. Recently this result was further improved in [3] where a new algorithm is discussed to generate the symbolic equation for each equivalence class of ODEs without deriving the complete ODE system. This is achieved thanks to a recent extension of a symbolic calculus for the computation of SSN structural properties [7].…”
Section: Scientific Backgroundmentioning
confidence: 99%
“…Similarly, in the analysis phase the ESSN model provides a powerful methodology that automatically exploits the system symmetries to reduce the complexity (in terms of number of equations) of the underlying deterministic process. Indeed in [3] we proposed an algorithm that directly derives a compact ODE system from a ESSN model in a symbolic way, through algebraic manipulation of ESSN annotations.…”
Section: Introductionmentioning
confidence: 99%