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首页> 外文期刊>IEEE Transactions on Systems, Man, and Cybernetics >Liveness Analysis and Deadlock Control for Automated Manufacturing Systems With Multiple Resource Requirements
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Liveness Analysis and Deadlock Control for Automated Manufacturing Systems With Multiple Resource Requirements

机译:具有多种资源需求的自动化制造系统的活动性分析和死锁控制

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This paper focuses on the liveness analysis and deadlock control for automated manufacturing systems (AMSs) with multiple resource requirements. Such an AMS is modeled by a class of generalized Petri nets called systems of simple sequential processes with multiple resources ((SPMR)-P-3). It is shown that a deadlock of the considered AMSs can be characterized by the saturation of a structural object in (SPMR)-P-3, called perfect resource transition-circuit (PRT-circuit). As a consequence, an (SPMR)-P-3 is live if and only if no PRT-circuit is saturated at any reachable marking. To ensure the system liveness, one has to prevent all PRT-circuits from being saturated at all reachable markings. To develop a structurally simple Petri net deadlock controller, we present the concept of an effective transition cover, which is a special subset of PRT-circuits that may be saturated. Then by designing a control place with a proper control variable for each PRT-circuit in an effective transition cover, we obtain a deadlock controller for the system. The needed control variables are determined by an integer linear program. Since the number of PRT-circuits in an effective transition cover is much less than that of all PRT-circuits that need to control, our controller is of small structural size. For an AMS with saturable PRT-circuits, there exists at least a transition cover. An algorithm is presented for checking the effectiveness of transition covers, and transforming noneffective transition covers into effective ones. Finally, some examples are used to illustrate the proposed method.
机译:本文重点关注具有多种资源需求的自动化制造系统(AMS)的活动性分析和死锁控制。这种AMS由一类称为Petri网的广义Petri网建模,该系统具有多个资源的简单顺序过程((SPMR)-P-3)。结果表明,所考虑的AMS的死锁可以通过(SPMR)-P-3中结构对象的饱和来表征,这种结构对象称为完美资源转换电路(PRT-circuit)。结果,(SPMR)-P-3在且仅当在任何可到达的标记处没有PRT电路饱和时才带电。为了确保系统的使用寿命,必须防止所有PRT电路在所有可到达的标记处饱和。为了开发结构简单的Petri网死锁控制器,我们提出了有效过渡覆盖的概念,它是可能饱和的PRT电路的特殊子集。然后,通过在有效过渡盖中为每个PRT电路设计一个具有适当控制变量的控制位置,我们获得系统的死锁控制器。所需的控制变量由整数线性程序确定。由于有效过渡盖中的PRT电路的数量远远少于所有需要控制的PRT电路的数量,因此我们的控制器的结构尺寸较小。对于具有饱和PRT电路的AMS,至少存在一个过渡盖。提出了一种算法,用于检查过渡覆盖的有效性,并将无效过渡覆盖转化为有效覆盖。最后,通过一些例子来说明所提出的方法。

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