A Deadlock Recovery Policy for Flexible Manufacturing Systems with Minimized Traversing within Reachability Graph

I. Grobelna, A. Karatkevich
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引用次数: 3

Abstract

Petri nets are a powerful technique for modelling flexible manufacturing systems. However, in some situations the system may get stuck in a deadlock state and suspend its operation mode. Here, we propose a novel deadlock recovery policy that may be used to automatically recover from the deadlock states, based on the analysis of a full reachability graph with minimized traversing. Additional recovery transitions are added to the existing structure of a Petri net without changing the existing state space. The solution may not be optimal regarding the number of added recovery transitions, but it can be found in a simple way by considering the closest legal markings. In the paper, the newly proposed method is also illustrated with a case study and compared to the other existing approaches. The preliminary results show, that despite its simplicity, the found deadlock recovery solution is comparable to other more complex methods from the literature, regarding the number of added recovery transitions.
可达图内最小遍历柔性制造系统的死锁恢复策略
Petri网是一种用于柔性制造系统建模的强大技术。但是,在某些情况下,系统可能会陷入死锁状态并暂停其操作模式。在这里,我们提出了一种新的死锁恢复策略,该策略可用于自动从死锁状态中恢复,该策略基于对具有最小遍历的完整可达性图的分析。在不改变现有状态空间的情况下,将额外的恢复转换添加到Petri网的现有结构中。就增加的恢复转换的数量而言,解决方案可能不是最优的,但可以通过考虑最接近的法律标记以一种简单的方式找到它。本文还通过实例对新提出的方法进行了说明,并与其他现有方法进行了比较。初步结果表明,尽管这个死锁恢复解决方案很简单,但就增加的恢复转换次数而言,它与文献中其他更复杂的方法相当。
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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