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Robust deadlock control for automated manufacturing systems based on elementary siphon theory

机译:基于基础虹吸理论的自动制造系统强大的僵局控制

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Resource failures may happen from time to time in an automated manufacturing system (AMS) in production practice, leading to that most of deadlock control methods in the literature are not applicable. For a generalized system of simple sequential process with resources (GS(3)PR), this paper develops a robust deadlock control strategy when there exists a type of unreliable resources. To do so, after computing the system's elementary and dependent strict minimal siphons (SMSs), by using the concept of max'-controllability of siphons, we then check whether an elementary SMS is self-max'-controlled or not, and whether it contains unreliable resources. Afterwards, a constraint set for a siphon is introduced and a monitor is designed for each non-max'-controlled elementary SMS and self-max'-controlled elementary one that contains unreliable resources. Then, if a dependent SMS is max'-controlled with respect to the control depth variables of its elementary siphons, it needs no monitor; otherwise, we add a monitor for such a dependent SMS. Finally, a robust deadlock control algorithm is developed to keep each SMS to be max'-controlled, even if there exists a type of unreliable resources. The proposed method is demonstrated by using examples. (C) 2019 Elsevier Inc. All rights reserved.
机译:资源故障可能在生产实践中自动制造系统(AMS)中的时间不时发生,导致文献中的大多数死锁控制方法不适用。对于具有资源的简单顺序过程的广义系统(GS(3)PR),当存在一种不可靠的资源时,本文开发了强大的死锁控制策略。为此,在计算系统的基本和依赖严格的SIPHONS(SMSS)之后,通过使用SIPHONS的MAX'可控性的概念,我们检查基本短信是否是自我最大控制的,以及是否包含不可靠的资源。之后,引入了用于SIPHON的约束,并且为每个非MAX的基本短信和包含不可靠资源的自最大控制的基本单独的监视器设计了监视器。然后,如果相对于其基本虹吸的控制深度变量的依赖式SMS,则不需要显示器;否则,我们为这种依赖的SMS添加了一个监视器。最后,开发了一种强大的死锁控制算法以使每个SMS保持最大限度的控制,即使存在一种不可靠的资源。通过使用实施例来证明所提出的方法。 (c)2019 Elsevier Inc.保留所有权利。

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