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Controllability of complex siphons for deadlock prevention in Systems of Simple Sequential Processes with Resources

机译:复杂SIPHONS在简单顺序流程系统中预防资源的僵局预防的可控性

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Deadlock prevention policies for flexible manufacturing systems (FMS) usually suffer from redundant monitors since some monitors may be added to the siphons that are originally controlled. To eliminate these redundant monitors, the controllability condition of siphons is studied in this work. For a class of Petri nets called Systems of Simple Sequential Processes with Resources (S3PR), new concepts of simple and complex strict minimal siphons (SMS) are introduced. More importantly, a necessary and sufficient condition of controllability of complex SMS is proposed for the first time. Based on this condition, an algorithm is given to control all SMS via M-controlling part of them and a structurally simple optimal liveness-enforcing supervisor can thus be synthesized for some classes of S3PR. Two examples are provided to illustrate the application of the proposed algorithm and show its superiority to prior work.
机译:用于灵活的制造系统(FMS)的死锁预防策略通常遭受冗余监视器,因为某些监视器可以添加到最初控制的SIPHONS中。为了消除这些冗余监视器,在这项工作中研究了SIPHONS的可控性状况。对于一类称为简单顺序流程系统的培养网,介绍了简单和复杂的严格最小虹吸(SMS)的新概念。更重要的是,首次提出了复杂SMS的必要和充分可控性条件。基于该条件,给出了一种算法通过M控制部分控制所有SMS,因此可以为某些类别的S3PR合成结构简单的最佳活跃监督。提供了两个示例以说明所提出的算法的应用,并显示其优越性。

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