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Efficient optimal deadlock control of flexible manufacturing systems

机译:柔性制造系统的高效最佳死锁控制

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The development of an efficient deadlock avoidance policy (DAP) is a critical step in the design and operation of a flexible manufacturing system (FMS). However, even for a simple FMS, the computation of an optimal DAP is intractable. This work addresses the optimal deadlock control problem of FMSs. Based on their Petri net models, it introduces the concept of κ-resources and proves that an FMS containing no κ-resources has only two types of reachable states: safe ones and deadlocks. It then can obtain an optimal DAP with polynomial computational complexity for a broader class of FMSs, which was never seen before. At the same time, for these FMSs, new structurally simpler optimal Petri net controllers are proposed.
机译:有效的避免死锁策略(DAP)的开发是柔性制造系统(FMS)的设计和操作中的关键步骤。但是,即使对于简单的FMS,最佳DAP的计算也很困难。这项工作解决了FMS的最佳死锁控制问题。基于他们的Petri网模型,它引入了κ资源的概念,并证明了不包含κ资源的FMS仅具有两种可达状态:安全状态和死锁。然后,它可以为更广泛的FMS类获得具有多项式计算复杂度的最佳DAP,这是以前从未见过的。同时,对于这些FMS,提出了新的结构更简单的最优Petri网控制器。

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