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Computationally Improved Optimal Deadlock Control Policy for Flexible Manufacturing Systems

机译:计算改进的柔性制造系统最优死锁控制策略

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Deadlock prevention, deadlock detection, and deadlock avoidance strategies are used to solve the deadlock problems of flexible manufacturing systems. The theory of regions is recognized as the unique method for obtaining maximally permissive (i.e., optimal) controllers in the existing literature. All legal and live maximal behavior of a Petri net model can be preserved by using a marking/transition-separation instance (MTSI). However, obtaining them is an extremely time consuming problem. This work proposes crucial MTSIs that allow designers to employ much fewer MTSIs to deal with deadlocks. The advantage of the proposed policy is that an optimal deadlock controller can be obtained with drastically reduced computation. Experimental results, by varying the markings of given net structures, indicate that it is the most efficient policy to obtain such controllers.
机译:死锁预防,死锁检测和避免死锁策略用于解决柔性制造系统的死锁问题。在现有文献中,区域理论被认为是获得最大允许(即最佳)控制器的独特方法。通过使用标记/过渡分离实例(MTSI),可以保留Petri网模型的所有合法和实时最大行为。但是,获得它们是非常耗时的问题。这项工作提出了至关重要的MTSI,允许设计人员使用更少的MTSI来处理死锁。所提出的策略的优点在于,可以通过大大减少计算来获得最佳死锁控制器。通过改变给定网络结构的标记的实验结果表明,获得此类控制器是最有效的策略。

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