Controlling Petri Net Behavior Using Priorities for Transitions

I. Lomazova, L. Popova-Zeugmann
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引用次数: 13

Abstract

In this paper we examine how it is possible to control Petri net behavior with the help of transition priorities. Controlling here means forcing a process to behave in a stable way by ascribing priorities to transitions and hence transforming a classic Petri net into a Priority Petri net. For Petri net models stability is often ensured by liveness and boundedness. These properties are crucial in many application areas, e.g. workflow modeling, embedded systems design, and bioin- formatics. In this paper we study the problem of transforming a given live, but unbounded Petri net into a live and bounded one by adding priority constraints. We specify necessary conditions for the solvability of this problem and present an algorithm for ascribing priorities to net transitions in such a way that the resulting net becomes bounded while staying live.
使用转换优先级控制Petri网行为
在本文中,我们研究了如何在过渡优先级的帮助下控制Petri网行为。这里的控制意味着通过将优先级分配给过渡,从而将经典的Petri网转变为优先级Petri网,从而迫使进程以稳定的方式运行。对于Petri网模型,稳定性通常由活度和有界性来保证。这些特性在许多应用领域都是至关重要的,例如工作流建模、嵌入式系统设计和生物信息学。本文研究了通过添加优先级约束将给定的无界活Petri网转化为有界活Petri网的问题。我们指定了该问题可解性的必要条件,并提出了一种算法,用于将优先级分配给网络转换,从而使所得到的网络在保持活跃的同时成为有界的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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