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Think-globally-act-locally approach with weighted arcs to the synthesis of a liveness-enforcing supervisor for generalized Petri nets modeling FMSs

机译:具有加权弧的全局思考局部方法,用于综合Petri网建模FMS的增强生命力的主管

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This paper proposes a general approach, called a think-globally-act-locally method with weighted arcs (TGALW), which can be used to compute a liveness-enforcing supervisor (LES) for the Petri net (PN) model of a flexible manufacturing system (FMS) prone to deadlocks. Compared with siphon-based deadlock prevention policies that are usually rather conservative, the method is especially effective for generalized PN classes such as (SR)-R-4 and (SPR)-P-4 and also leads to optimal or near optimal LESS while maintaining the necessary computations simple. An original PNM is first transformed into a net that is behaviorally equivalent to it. A global sink/source place (GP) is used temporarily in the design steps and is finally removed when the liveness of the system is achieved. At each iteration step, bad markings are identified and then controlled by monitors through an established place-invariant based method. A condition of the optimal controllability of a bad marking is proposed, i.e., if all bad markings are optimally controlled at each iteration step, the TGALW method can find an optimal LES. Redundancy of monitors is checked. Typical examples existing in the literature are used to demonstrate applicability and the effectiveness of the proposed method. (C) 2015 Elsevier Inc. All rights reserved.
机译:本文提出了一种通用方法,称为带权重弧的全局全局思考局部方法(TGALW),可用于计算柔性制造的Petri网(PN)模型的增强生命力的监督者(LES)系统(FMS)容易出现死锁。与通常比较保守的基于虹吸的死锁预防策略相比,该方法对于广义的PN类(例如(SR)-R-4和(SPR)-P-4)特别有效,并且还导致最佳或接近最佳LESS,而保持必要的计算简单。首先将原始PNM转换为在行为上与其等效的网络。全局接收器/源位置(GP)在设计步骤中被临时使用,并在达到系统活动性时最终被删除。在每个迭代步骤中,识别不良标记,然后由监视器通过已建立的基于位置不变性的方法进行控制。提出了不良标记的最佳可控制性的条件,即,如果在每个迭代步骤中最佳地控制了所有不良标记,则TGALW方法可以找到最佳LES。检查监视器的冗余。文献中存在的典型例子用于证明所提出方法的适用性和有效性。 (C)2015 Elsevier Inc.保留所有权利。

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