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Fault Diagnosis with Structured Augmented State Models: Modeling, Analysis, and Design

机译:结构增强状态模型的故障诊断:建模,分析和设计

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This paper presents an internal model approach for modeling, analysis, and diagnostic functionality design for nonlinear systems operating subject to single- and multiple-faults. We therefore provide the framework of structured augmented state models. Fault characteristics are considered to be generated by dynamical exosystems, switched via equality constraints to overcome the augmented state observability limiting the number of diagnosable faults. Conditions and practical procedures for diagnosability and fault-detectability analysis are provided and exemplified, stating essential premises for the synthesis of diagnostic functionalities. Based on the proposed model, the fault diagnosis problem is specified as an optimal hybrid augmented state estimation problem. Sub-optimal solutions are motivated and the fault diagnosis of a DC drive is illustrated. As the considered class of fault diagnosis problems is large, the suggested approach is not only of theoretical interest but also of high practical relevance
机译:本文提出了一种内部模型方法,用于对遭受单故障和多故障的非线性系统进行建模,分析和诊断功能设计。因此,我们提供了结构化扩充状态模型的框架。故障特征被认为是由动态外部系统生成的,通过相等约束进行切换以克服增强状态可观察性,从而限制了可诊断故障的数量。提供并举例说明了可诊断性和故障可检测性分析的条件和实用程序,为综合诊断功能指明了必要前提。基于提出的模型,将故障诊断问题指定为最优混合增强状态估计问题。提出了次优解决方案,并说明了直流驱动器的故障诊断。由于所考虑的故障诊断问题类别很大,因此建议的方法不仅具有理论意义,而且具有很高的实际意义。

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