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An Optimal Design Approach for Fault-Tolerant Petri Net Controllers Using Arc Weights Minimization

机译:基于弧权最小化的容错Petri网控制器的优化设计方法

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This paper proposes an approach for the optimal design of fault-tolerant Petri net controllers using arc weights minimization. Given a system controller that is modeled as a Petri net, a fault-tolerant Petri net controller is obtained by embedding the given Petri net controller into a larger (redundant) Petri net controller that retains the properties of the original controller and allows the detection and identification of faults that may occur in the controller places. An algorithm is developed to systematically design this fault-tolerant Petri net controller in an optimal sense. The optimality is in terms of minimizing the sum of the entries in the input and output incident matrices of the fault-tolerant controller. Examples of the optimal design of fault-tolerant Petri net controllers for a manufacturing system are also provided to illustrate our approach.
机译:本文提出了一种基于弧权最小化的容错Petri网控制器的优化设计方法。给定一个建模为Petri网的系统控制器,通过将给定的Petri网控制器嵌入到一个较大的(冗余)Petri网控制器中来获得容错Petri网控制器,该控制器保留原始控制器的属性并允许检测和识别控制器位置可能发生的故障。开发了一种算法,以最佳方式系统地设计此容错Petri网控制器。最优性在于使容错控制器的输入和输出入射矩阵中的条目之和最小。还提供了制造系统的容错Petri网控制器的最佳设计示例,以说明我们的方法。

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