Forcing faults diagnosis in K steps in discrete event systems

J. Carlos, RAMOS-CABRAL, MARTÍNEZ-VARGAS, Martha Patricia
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Abstract

Discrete Event Systems occur naturally in engineering practice and include industrial processes, production systems, robotics, among others. So, its diagnosis is important. The aim of this work is to present a new approach to enforce faults diagnosis in Discrete Event Systems modeled by Interpreted Petri nets without limited to much its language. This approach is based on a Regulation Circuit that reduces the relative distance between any two pair of transitions that prevent the detection of the firing of transitions whose occurrence indicates that a fault occurred. By modifying the initial marks of the net that make up the Regulation Circuit, language limitation is avoided, and the diagnosis is established in k steps. First, the terminology used in the Interpreted Petri nets and the diagnosis are established, then the relationship between theses nets and the Regulation Circuit is reviewed to determine the characterization of nets where they can be added, they are analysed and then the proposal is made. The proposal is an option to force faults diagnosis in binary Interpreted Petri nets that are not diagnosable without limiting so much its language that represents their behavior.
离散事件系统的K步强迫故障诊断
离散事件系统在工程实践中自然出现,包括工业过程、生产系统、机器人等。所以,诊断是很重要的。这项工作的目的是提出一种新的方法来强制诊断由解释Petri网建模的离散事件系统的故障,而不受其语言的限制。这种方法基于一个调节电路,它减少了任何两对转换之间的相对距离,从而防止检测到发生的转换触发表明发生了故障。通过修改构成调节电路的网络的初始标记,避免了语言限制,并在k步中建立了诊断。首先,建立了解释Petri网和诊断中使用的术语,然后审查了这些网与调节电路之间的关系,以确定可以添加它们的网的特征,然后对它们进行分析,然后提出建议。该建议是在不限制太多表示其行为的语言的情况下,对无法诊断的二进制解释Petri网强制进行故障诊断的一种选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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