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Robustness of deadlock control for a class of Petri nets with unreliable resources

机译:具有资源不可靠的一类Petri网的死锁控制的鲁棒性

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A variety of deadlock control policies based on Petri nets have been proposed for automated manufacturing systems (AMSs). Most of them prevent deadlocks by adding monitors for emptiable siphons that, without an appropriate control policy, can cause deadlocks, where the resources in a system under consideration are assumed to be reliable. When resources are unreliable, it is infeasible or impossible to apply the existing control strategies. For systems of simple sequential processes with resources (S~3PR), this paper bridges the gap between a divide-and-conquer deadlock control strategy and its application to real-world systems with unreliable resources. Recovery subnets and monitors are designed for unreliable resources and strict minimal siphons that may be emptied, respectively. Normal and inhibitor arcs are used to connect monitors with recovery subnets in case of necessity. Then reanalysis of the original Petri net is avoided and a robust liveness-enforcing supervisor is derived. Examples are presented to illustrate the proposed methodology.
机译:已经提出了用于自动化制造系统(AMS)的各种基于Petri网的死锁控制策略。它们中的大多数都通过为空的虹吸管添加监视程序来防止死锁,如果没有适当的控制策略,该监视器可能会导致死锁,此时所考虑的系统中的资源被认为是可靠的。当资源不可靠时,应用现有控制策略是不可行或不可能的。对于具有资源的简单顺序过程系统(S〜3PR),本文弥合了分而治之死锁控制策略与其在资源不可靠的实际系统中的应用之间的差距。恢复子网和监控器分别设计用于不可靠的资源和可能被清空的严格的最小虹吸管。如果需要,可以使用法线弧线和禁止弧线将监视器与恢复子网连接。然后,避免了对原始Petri网的重新分析,并得出了一个健壮的增强生命力的管理程序。举例说明了所提出的方法。

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