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A structural characterization of Diagnosability and On-line fault detection and location methodology

机译:诊断性和在线故障检测和位置方法的结构表征

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This paper is concerned with the diagnosability property of partially observed Discrete Event Systems (DES) modeled by live and safe Interpreted Petri Nets (IPN). The IPN are used to model the normal behavior and permanent behavior. Based on the model with the normal and faulty behavior, the notion of input-output diagnosability is introduced and a polynomial algorithm to characterize diagnosable IPN is proposed. The novel features of the approach herein presented are: a) the notion of maximum relative distance between any pair of transitions; b) the use of the net siphons and T-semiflows to determine the relative distance between any pair of transitions; c) a characterization of diagnosable IPN based on the relative distance concept, it characterizes a broader class of IPN exhibiting the diagnosability property and presents a better deepening of the structures needed to characterize diagnosable IPN; d) an efficient method for obtaining a reduced diagnoser IPN model is proposed.
机译:本文涉及由现场和安全解释的Petri网(IPN)建模的部分观察到的离散事件系统(DES)的诊断性质。 IPN用于模拟正常行为和永久性行为。基于具有正常和故障行为的模型,引入了输入 - 输出诊断的概念,提出了一种特征诊断IPN的多项式算法。本文方法的新颖特征如下所示:a)任何一对过渡之间的最大相对距离的概念; b)使用净虹吸管和T-Semiflows以确定任何一对过渡之间的相对距离; c)基于相对距离概念的诊断IPN的表征,其特征在于展示诊断性质的更广泛的IPN,并且呈现出诊断IPN所需的结构的更好地深化; d)提出了一种有效的获得诊断器IPN模型的有效方法。

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