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An improved algorithm for supervisor design for FMS using the theory of regions

机译:基于区域理论的FMS主管设计改进算法

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To solve the problem of deadlock prevention for flexible manufacturing systems (FMS), an effective approach based on the theory of regions was proposed previously in a framework of Petri nets. However, it needs to solve too many linear programming problems (LPP). This paper presents an improved algorithm to decrease the number of LPP and thus reduces the computational efforts. First, the theory of regions is applied. The concepts of marking/transition separation matrix and elementary marking/transition separation instances are presented. Then it is proved that, in order to obtain the maximally permissive behavior, the number of monitors to be added is less than the smaller of the number of separation instances and the number of transitions plus one. Therefore, the number of LPP to be solved is bounded by the net size. This result significantly advances the supervisory design methods based on the theory of regions.
机译:为了解决柔性制造系统(FMS)的死锁预防问题,以前在Petri网框架内提出了一种基于区域理论的有效方法。但是,它需要解决太多的线性编程问题(LPP)。本文提出了一种改进的算法来减少LPP的数量,从而减少了计算量。首先,应用区域理论。介绍了标记/过渡分离矩阵和基本标记/过渡分离实例的概念。然后证明,为了获得最大的允许行为,要添加的监视器的数量小于分离实例的数量和过渡数量加一的较小者。因此,要解决的LPP数量受净大小限制。这一结果大大提高了基于区域理论的监督设计方法。

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