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Analysis of set-theoretic unknown input observer and interval observer in robust fault detection

机译:鲁棒故障检测中的集合论未知输入观测器和区间观测器分析

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This paper focuses on comparing fault detection (FD) performance of two robust FD approaches, namely the set-theoretic unknown input observer-based approach and the interval observer-based approach. The former is implemented using the set theory and the unknown input observer (UIO), where the set theory and the UIO are used to decouple the effect of unknown inputs in passive and active ways, respectively. The latter is based on the set theory and the Luenberger observer, which completely relies on the set-based passive decoupling to obtain FD robustness. The former is a new method recently proposed by the authors, while the latter is a well-known robust FD method. The objective of this paper is to analyze these two FD approaches in a systematic way and to compare their FD sensitivity based on mathematical analysis. Eventually, an explicit criterion used to choose which method is better for FD of a system is given by using invariant sets. At the end of this paper, an example is used to illustrate the obtained results.
机译:本文着重比较两种鲁棒的FD方法的故障检测(FD)性能,这两种方法分别是基于集合理论的基于未知输入观察者的方法和基于间隔观察者的方法。前者是使用集合论和未知输入观察者(UIO)来实现的,其中集合论和UIO分别用于以被动和主动方式去耦未知输入的影响。后者基于集合论和Luenberger观测器,后者完全依靠基于集合的被动去耦来获得FD鲁棒性。前者是作者最近提出的一种新方法,而后者是众所周知的鲁棒FD方法。本文的目的是系统地分析这两种FD方法,并在数学分析的基础上比较它们的FD灵敏度。最终,使用不变集给出了用于选择哪种方法更适合系统FD的显式标准。在本文的最后,用一个例子来说明所获得的结果。

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