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首页> 外文期刊>Dynamics of continuous, discrete & impulsive systems, Series B. Applications & algorithms >DECENTRALIZED SUPERVISORY CONTROLLER DESIGN FOR DISCRETE-EVENT SYSTEMS USING OVERLAPPING DECOMPOSITIONS AND EXPANSIONS
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DECENTRALIZED SUPERVISORY CONTROLLER DESIGN FOR DISCRETE-EVENT SYSTEMS USING OVERLAPPING DECOMPOSITIONS AND EXPANSIONS

机译:用于使用重叠分解和扩展的离散事件系统的分散监控控制器设计

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摘要

A decentralized supervisory controller design approach for discrete-event systems (DESs) modeled by automata or formal languages is presented. The controller is designed in order to lead the DES to certain desired marked states, in the sense that, from any state, which is reachable from the initial state, there exists a Unite string of events which leads to one of the marked states. The controller design approach is based on overlapping decompositions and expansions. To apply the proposed approach, the automaton of the given DES is first decomposed overlappingly and expanded to obtain disjoint subau-tomata. Next, a controller is designed for each disjoint subautomaton. These controllers are then combined to obtain a controller for the expanded DES. In the final phase, a controller for the original DES is obtained from the controller determined for the expanded DES. It is proved that this final controller leads the original DES to the desired marked states. The computational complexity of the proposed design approach, relative to the computational complexity of a centralized approach is also discussed.
机译:介绍了自动机或正式语言建模的离散事件系统(DESS)的分散监控控制器设计方法。设计控制器以便在从初始状态到达的任何状态的意义上引导DE到某些所需标记状态,其中存在联合的一系列事件,这导致标记状态之一。控制器设计方法基于重叠分解和扩展。为了应用所提出的方法,给定DES的自动机首先被重叠地分解并扩大以获得脱节Subau-Tomata。接下来,为每个不相交的Subautomaton设计一个控制器。然后将这些控制器组合以获得用于扩展DES的控制器。在最终阶段,从确定的扩展DES确定的控制器获得用于原始DES的控制器。事实证明,该最终控制器将原始DES引导到所需标记状态。还讨论了相对于集中方法的计算复杂性的所提出的设计方法的计算复杂性。

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