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On Systematic Methods To Remove Redundant Monitors From Liveness-enforcing Netsupervisors

机译:从有生命力的Netsupervisor中删除冗余监视器的系统方法

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摘要

Petri nets based deadlock prevention for flexible manufacturing systems has received much attention over the past decade, primarily due to the seminal work of Ezpeleta et al. in 1995. A Petri net based deadlock prevention mechanism is usually implemented by adding monitors or control places to a plant Petri net model such that liveness can be enforced. The significance of this methodology lies in that both a plant model and its supervisor are in a same formalism-Petri nets. Due to the inherent complexity of Petri nets, in theory, the number of additional monitors that have to been added to achieve liveness-enforce-ment purpose for an uncontrolled plant model is exponential with respect to the size of the model. This paper first proposes a systematic method to minimize the number of additional monitors in a liveness-enforcing Petri net supervisor such that the resultant net system has the same permissive behavior while liveness can still be preserved. Furthermore, for the liveness-enforcing Petri net supervisors of flexible manufacturing systems, which have some particular property, an algorithm is developed such that more permissive liveness-enforcing Petri net supervisors can be obtained after liveness-restrictive monitor removal. Compared with the existing techniques of eliminating redundant monitors in the literature, the complete state enumeration of a supervisor is avoided, which implies the high computational efficiency of the methods in this paper. Flexible manufacturing examples are used to demonstrate the proposed approaches.
机译:在过去十年中,基于Petri网的用于柔性制造系统的防死锁已经引起了广泛的关注,这主要是由于Ezpeleta等人的开创性工作。在1995年,基于Petri网的死锁预防机制通常是通过在工厂Petri网模型中添加监视器或控制位置来实现的,从而可以增强生命力。这种方法的意义在于,工厂模型及其主管都在同一个形式论Petri网中。由于Petri网的内在复杂性,从理论上讲,为实现不受控制的工厂模型而必须增加附加监控器的数量,以达到增强生命力的目的,相对于模型的大小,它的数量是指数级的。本文首先提出了一种系统的方法,以最小化执行生命力的Petri网管理程序中附加监视器的数量,以使最终的网络系统具有相同的允许行为,同时仍然可以保留生命力。此外,对于具有某些特殊性能的柔性制造系统的增强生命力的Petri网管理程序,开发了一种算法,使得在删除有生命力限制的监视器后,可以获得更多的允许生命力的Petri网管理程序。与文献中消除冗余监控器的现有技术相比,避免了管理器的完整状态枚举,这意味着本文方法具有很高的计算效率。柔性制造示例用于说明所提出的方法。

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