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Failure diagnosis of discrete event systems: the case of intermittent faults

机译:离散事件系统的故障诊断:间歇性故障的情况

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The diagnosis of "intermittent" faults in dynamic systems modeled as discrete event systems is considered. In many systems, faulty behavior often occurs intermittently, with fault events followed by corresponding "reset" events for these faults, followed by new occurrences of fault events, and so forth. Since these events are usually unobservable, it is necessary to develop diagnostic methodologies for intermittent faults. This paper addresses this issue by: (1) proposing a modeling methodology for discrete event systems with intermittent faults; (2) introducing new notions of diagnosability associated with fault and reset events; and (3) developing necessary and sufficient conditions, in terms of the system model and the set of observable events, for these notions of diagnosability. The associated necessary and sufficient conditions are based upon the technique of "diagnosis" introduced in earlier work, albeit the structure of the diagnosis needs to be enhanced to capture the dynamic nature of faults in the system model. The diagnosability conditions are verifiable in polynomial time in the number of states of the diagnosis.
机译:考虑了在以离散事件系统为模型的动态系统中对“间歇性”故障的诊断。在许多系统中,错误行为经常断断续续地发生,故障事件之后是这些故障的相应“重置”事件,然后是新出现的故障事件,依此类推。由于通常无法观察到这些事件,因此有必要针对间歇性故障开发诊断方法。本文通过以下方法解决了这个问题:(1)提出了具有间歇性故障的离散事件系统的建模方法; (2)引入与故障和重置事件相关的可诊断性的新概念; (3)就这些可诊断性概念而言,根据系统模型和可观察事件的集合开发必要和充分的条件。相关的必要条件和充分条件基于早期工作中引入的“诊断”技术,尽管需要增强诊断的结构以捕获系统模型中故障的动态性质。可诊断性条件可以在多项式时间内以诊断状态的数量进行验证。

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