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首页> 外文期刊>IEEE transactions on automation science and engineering >Optimal Supervisory Control of Flexible Manufacturing Systems by Petri Nets: A Set Classification Approach
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Optimal Supervisory Control of Flexible Manufacturing Systems by Petri Nets: A Set Classification Approach

机译:Petri网对柔性制造系统的最优监督控制:一种集合分类方法

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摘要

Supervisory control is usually considered as an external control mechanism to a system by controlling the occurrences of its controllable events. There exist Petri net models whose legal reachability spaces are nonconvex. In this case, they cannot be optimally controlled by the conjunctions of linear constraints. For Petri net models of flexible manufacturing systems, this work proposes a method to classify the legal markings into several subsets. Each subset is associated with a linear constraint that can forbid all first-met bad markings. Then, the disjunctions of the obtained constraints can make all legal markings reachable and forbid all first-met bad markings, i.e., the controlled net is live and maximally permissive. An integer linear programming model is formulated to minimize the number of the constraints. A supervisory structure is also proposed to implement the disjunctions of the constraints. Finally, examples are provided to illustrate the proposed method.
机译:监督控制通常被认为是通过控制系统可控事件的发生而作为系统的外部控制机制。存在Petri网模型,其法律可及性空间是非凸的。在这种情况下,不能通过线性约束的结合来最佳地控制它们。对于柔性制造系统的Petri网模型,这项工作提出了一种将法律标记划分为几个子集的方法。每个子集与一个线性约束相关联,该线性约束可以禁止所有初次达到不良标记。然后,所获得约束的析取关系可以使所有合法标记均可用,并禁止所有初次达到不良标记,即,受控网络处于活动状态并且具有最大的允许性。制定了整数线性规划模型以最小化约束的数量。还提出了一个监督结构来实现约束的分离。最后,提供示例来说明所提出的方法。

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