2001
DOI: 10.1016/s0167-6423(00)00022-8
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Rule-based refinement of high-level nets preserving safety properties

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Cited by 22 publications
(5 citation statements)
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“…Our contribution extends Padberg's result published in [19,20] but as already mentioned, this result does not consider guard strengthening. To the best of our knowledge, Padberg's work on this topic has been discontinued after a last survey paper [10] has been published on the topic in 2003.…”
Section: Related Worksupporting
confidence: 84%
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“…Our contribution extends Padberg's result published in [19,20] but as already mentioned, this result does not consider guard strengthening. To the best of our knowledge, Padberg's work on this topic has been discontinued after a last survey paper [10] has been published on the topic in 2003.…”
Section: Related Worksupporting
confidence: 84%
“…In [19,20], Padberg, Gajewski and Ermel proposed a mechanism for preserving safety properties on Algebraic Petri-Nets based on place preserving morphisms. However, this result does not allow changes on the transition guards, which is required in order to deal with the kind of iterations we are targeting.…”
Section: Invariants Preservation Along Evolutionmentioning
confidence: 99%
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“…Fact 5.4 (Place preserving morphism preserve safety properties (Theorem 3.5 in [27]) A place-preserving morphism q ∈ Q pp with q : N → N preserves safety properties, i.e. given a safety property ϕ we have…”
Section: Instantiation To Algebraic High-level Netsmentioning
confidence: 99%
“…PN transformation is an important approach to manipulate Petri net structure changes in the way of replacement or operation. The replacement approaches perform rule-based net modification developed from graph transformation, such as a majority of refinement methods [2]- [3] and reduction techniques [4] [5], PN model reconfiguration [1]. However, these approaches of replacement have suffered from strong restriction on net transformation rules, low transformation efficiency, uneasy use and so on.…”
Section: Introductionmentioning
confidence: 99%