首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Switched Threshold-Based Fault Detection for Switched Nonlinear Systems With Its Application to Chua’s Circuit System
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Switched Threshold-Based Fault Detection for Switched Nonlinear Systems With Its Application to Chua’s Circuit System

机译:基于开关阈值的非线性开关系统故障检测及其在蔡氏电路系统中的应用

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In this paper, the fault detection problem for a class of switched nonlinear systems with unknown functions is solved. First, the unknown internal dynamics are approximated by the radial basis function neural networks due to their powerful approximation capabilities. Then, a switched nonlinear observer is developed. Based on the observer, a fault detection scheme is set up with a switched fault detection threshold instead of a common threshold. At the same time, the boundedness of all the signals in the closed-loop system can be guaranteed by using the average dwell time method. Moreover, the fault detection threshold is dependent on the average dwell time, which implies that the fault sensibility can be improved to a certain extent by selecting the average dwell time. Finally, a simulation example on the Chua's circuit system are employed to show the effectiveness of the proposed scheme.
机译:本文解决了一类功能未知的切换非线性系统的故障检测问题。首先,由于其强大的逼近能力,未知的内部动力学可以通过径向基函数神经网络来逼近。然后,开发了一个开关非线性观测器。基于观察者,使用切换的故障检测阈值而不是公共阈值来建立故障检测方案。同时,使用平均驻留时间方法可以保证闭环系统中所有信号的有界性。此外,故障检测阈值取决于平均停留时间,这意味着通过选择平均停留时间可以在一定程度上提高故障敏感性。最后,以蔡氏电路系统为例,验证了所提方案的有效性。

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