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首页> 外文期刊>International journal of systems science >Supervisory control based on minimal cuts and Petri net sub-controllers coordination
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Supervisory control based on minimal cuts and Petri net sub-controllers coordination

机译:基于最小削减和Petri网子控制器协调的监督控制

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摘要

This paper addresses the synthesis of Petri net (PN) controller for the forbidden state transition problem with a new utilisation of the theory of regions. Moreover, as any method of control synthesis based on a reachability graph, the theory of regions suffers from the combinatorial explosion problem. The proposed work minimises the number of equations in the linear system of theory of regions and therefore one can reduce the computation time. In this paper, two different approaches are proposed to select minimal cuts in the reachability graph in order to synthesise a PN controller. Thanks to a switch from one cut to another, one can activate and deactivate the corresponding PN controller. An application is implemented in a flexible manufacturing system to illustrate the present method. Finally, comparison with previous works with experimental results in obtaining a maximally permissive controller is presented.
机译:本文利用区域理论的新方法解决了用于禁态转移问题的Petri网(PN)控制器的综合问题。而且,作为基于可达性图的控制合成的任何方法,区域理论都受到组合爆炸问题的困扰。提出的工作使区域理论的线性系统中的方程式数量最少,因此可以减少计算时间。在本文中,提出了两种不同的方法来选择可达性图中的最小切口,以便合成PN控制器。由于从一个切割切换到另一个切割,可以激活和禁用相应的PN控制器。在柔性制造系统中实现了一种应用,以说明本方法。最后,与以往的实验结果进行比较,以获得最大允许的控制器。

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