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首页> 外文期刊>Systems, Man, and Cybernetics: Systems, IEEE Transactions on >Nonpure Petri Net Supervisors for Optimal Deadlock Control of Flexible Manufacturing Systems
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Nonpure Petri Net Supervisors for Optimal Deadlock Control of Flexible Manufacturing Systems

机译:非纯Petri网管理程序,用于柔性制造系统的最佳死锁控制

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摘要

This paper illustrates that Petri nets with self-loops are more powerful than pure nets in modeling and control of flexible manufacturing systems. A self-loop in a Petri net cannot be mathematically represented by its incidence matrix. This paper presents a mathematical method to design a maximally permissive Petri net supervisor that is expressed by a set of control places with self-loops. A control place with a self-loop can be represented by a constraint and a self-loop associated with a transition whose firing may lead to an illegal marking. The constraint is designed to ensure that all legal markings are reachable and the self-loop is used to prevent the system from reaching illegal markings by disabling the transition at a specific marking. A marking-reduction approach is developed in order to cut down the considered markings, which can greatly decrease the computational overhead of the proposed method. An integer linear programming model is developed to compress the number of control places, aiming to reduce the structural complexity of the resulting supervisors. Finally, illustrative examples are used to validate the proposed method and to demonstrate that it can obtain an optimal supervisor for some cases that cannot be optimally controlled by pure net supervisors.
机译:本文说明,在柔性制造系统的建模和控制中,具有自环的Petri网络比纯网络更强大。 Petri网中的自环不能用其入射矩阵来数学表示。本文提出了一种数学方法来设计最大允许Petri网管理器,该管理器由一组具有自环的控制位置表示。具有自循环的控制位置可以由与转换相关联的约束和自循环表示,其触发可能导致非法标记。该约束旨在确保所有合法标记均可用,并且通过禁用特定标记处的过渡,使用自循环来防止系统达到非法标记。为了减少考虑的标记,开发了一种减少标记的方法,这可以大大减少所提出方法的计算开销。开发了一个整数线性规划模型来压缩控制位置的数量,目的是降低生成的主管的结构复杂性。最后,通过举例说明来验证所提出的方法,并证明该方法可以在某些无法由纯净监督者最佳控制的情况下获得最佳监督者。

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