Actuator Fault Diagnosis for Discrete-Time Systems via Augmenting State Approach

Author:

Wang Yongchao12,Qi Shangmin12,Hu Yujun12,Guo Shenghui31ORCID,Huang Darong41ORCID

Affiliation:

1. Electric Power Research Institute, State Grid Xinjiang Electric Power Co., Ltd., Urumqi 830011, China

2. Marketing Service Center, State Grid Xinjiang Electric Power Co., Ltd., Urumqi 830011, China

3. College of Electronics and Information Engineering, Suzhou University of Science and Technology, Suzhou 215009, China

4. School of Information Science and Engineering, Chongqing Jiaotong University, Chongqing 400074, China

Abstract

For the problem of the actuator fault diagnosis in the control systems, this paper presents a novel method by using an interval estimation approach to detect the faults and reconstruct them. In order to make estimations of the unavoidable measurement noise, a descriptor system form is built. Firstly, a full-order interval observer is developed to detect actuator faults for its sensitiveness to them. Then, a reduced-order one, which is robust to actuator faults, is presented. This method does not need the boundary information of faults; thus, the design condition is more relaxed. In order to make the interval observer stable and cooperative, linear matrix inequalities and a time-varying transformation are employed to ensure the error system matrix to be Schur and nonnegative. Based on the interval estimation results of the aforementioned method, an interval reconstruction method of actuator faults is proposed. Finally, results of the two simulation examples verify the proposed methods are effective and accurate.

Funder

State Grid Corporation of China

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

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