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SUPERVISORY CONTROLLER DESIGN FOR TIMED-PLACE PETRI NETS

机译:定时Petri网的监督控制器设计

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Supervisory controller design to avoid deadlock in discrete-event systems modeled by timed-place Petri nets (TPPNs) is considered. The recently introduced approach of place-stretching is utilized for this puipose. In this approach, given an original TPPN (OPN), a new TPPN, called the place-stretched Petri net (PSPN), is obtained. The PSPN has the property that its marking vector is sufficient to represent its state. By using this property, a supervisory controller design approach for TPPNs to avoid deadlock is proposed in the present work. An algorithm to determine the set of all the states of the PSPN which lead to deadlock is presented. Using this set, a controller for the PSPN is defined. Using this controller, a controller for the OPN is then obtained. Assuming that the given Petri net is bounded, the proposed approach always finds a controller in-finite time whenever there exists one. Furthermore, this controller, when exists, is maximally permissive.
机译:考虑了避免在由定时放置Petri网(TPPN)建模的离散事件系统中出现死锁的监督控制器设计。为此目的,采用了最近引入的位置拉伸方法。在这种方法中,如果给定了原始TPPN(OPN),则会获得一个新的TPPN,称为位置扩展Petri网(PSPN)。 PSPN具有其标记向量足以表示其状态的特性。通过使用此属性,在当前工作中提出了一种用于TPPN的避免死锁的监督控制器设计方法。提出了一种确定导致死锁的PSPN所有状态的集合的算法。使用该集合,定义了PSPN的控制器。然后使用该控制器获得OPN的控制器。假设给定的Petri网是有界的,则所提出的方法总是在无限时间内找到存在控制器的控制器。此外,该控制器(如果存在)是最大允许的。

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