Delay-dependent partial order reduction technique for real time systems

被引:0
|
作者
Hanifa Boucheneb
Kamel Barkaoui
机构
[1] École Polytechnique de Montréal,Laboratoire VeriForm, Department of Computer Engineering and Software Engineering
[2] Laboratoire CEDRIC,undefined
[3] Conservatoire National des Arts et Métiers,undefined
来源
Real-Time Systems | 2018年 / 54卷
关键词
Time Petri nets; Partial order techniques; State space abstractions; Contracted state class graph method;
D O I
暂无
中图分类号
学科分类号
摘要
Almost all partial order reduction techniques proposed for time Petri nets (TPNs in short) are based on the notion of Partially Ordered Sets. The idea is to explore simultaneously, by relaxing some firing order constraints of persistent transitions (An enabled transition is persistent, if it cannot be disabled until its firing.), several equivalent sequences, while computing the convex hull of the abstract states reached by these equivalent sequences. However, unlike timed automata, in the TPN state space abstractions, the union of the abstract states reached by different interleavings of the same set of non conflicting transitions is not necessarily identical to their convex hull. Moreover, the convex hull over-approximation preserves neither the boundedness nor the reachability properties of the TPN. In this context, the main challenge is to establish sufficient conditions over transitions that ensure, in addition to their persistency, identity between the union and the convex hull of the abstract states reachable by their different interleavings. This paper shows how to weaken the sufficient conditions proposed in the literature, by taking into better account the structure, the marking, the static and the dynamic time parameters of the TPN.
引用
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页码:278 / 306
页数:28
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