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An iterative deadlock prevention approach for automated manufacturing systems

机译:自动化制造系统的迭代死锁预防方法

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This paper considers an iterative deadlock prevention policy in the context of the automated manufacturing systems (AMS) that constitute one of the major production technologies in modern industry. Owing to the specialty of an AMS, the reachability graph (RG) of its given Petri net model shows powerful analysis and control capability to crack such a hard nut. However, the fact that the number of nodes involved in an RG grows exponentially with the size of a Petri net model makes all the RG-based policies infeasible. The approach conducted in this paper illustrates that the bad nodes in an RG can be extracted iteratively by a set of mixed integer programming formulations so that the explicit enumeration of all nodes of the RG is avoided. The proposed approach promises a computationally efficient policy that guarantees a nearly optimal liveness-enforcing supervisor.
机译:本文考虑了构成现代工业中主要生产技术之一的自动化制造系统(AMS)的迭代死锁预防策略。由于AMS的特殊性,其给定Petri网模型的可达性图(RG)显示出强大的分析和控制能力,可以破解这种坚硬的螺母。但是,RG中涉及的节点数量随Petri网络模型的大小呈指数增长,这一事实使得所有基于RG的策略都不可行。本文所采用的方法说明,可以通过一组混合整数规划公式来迭代提取RG中的坏节点,从而避免了RG所有节点的显式枚举。所提出的方法保证了计算效率高的策略,该策略保证了接近最优的增强生命力的主管。

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