Finite-time observer design for singular systems subject to unknown inputs
This study is concerned with the finite-time observer (FTO) design for a class of singular systems subject to unknown inputs in both the state and the output equations. First, in order to overcome the restriction of the classical FTO method, two different non-singular auxiliary dynamic systems, whic...
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Published in | IET control theory & applications Vol. 13; no. 14; pp. 2289 - 2299 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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The Institution of Engineering and Technology
24.09.2019
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ISSN | 1751-8644 1751-8652 |
DOI | 10.1049/iet-cta.2018.6038 |
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Abstract | This study is concerned with the finite-time observer (FTO) design for a class of singular systems subject to unknown inputs in both the state and the output equations. First, in order to overcome the restriction of the classical FTO method, two different non-singular auxiliary dynamic systems, which are simultaneously equivalent to the original singular system, are constructed to act as the new reference systems for the sub-observers' design. Second, based on the observer matching condition and strong observability condition, it is proven that an FTO can be designed where the observer parameters are given by an algebraic method. Also, in order to present a systematical method to compute the observer parameters, an alternative linear matrix inequality method is proposed. The advantages of the FTO over the conventional asymptotic convergence observer are discussed and numerical examples are given to show the effectiveness of the proposed method. |
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AbstractList | This study is concerned with the finite‐time observer (FTO) design for a class of singular systems subject to unknown inputs in both the state and the output equations. First, in order to overcome the restriction of the classical FTO method, two different non‐singular auxiliary dynamic systems, which are simultaneously equivalent to the original singular system, are constructed to act as the new reference systems for the sub‐observers' design. Second, based on the observer matching condition and strong observability condition, it is proven that an FTO can be designed where the observer parameters are given by an algebraic method. Also, in order to present a systematical method to compute the observer parameters, an alternative linear matrix inequality method is proposed. The advantages of the FTO over the conventional asymptotic convergence observer are discussed and numerical examples are given to show the effectiveness of the proposed method. |
Author | Zhang, Jiancheng Chadli, Mohammed Zhu, Fanglai |
Author_xml | – sequence: 1 givenname: Jiancheng orcidid: 0000-0001-7250-5727 surname: Zhang fullname: Zhang, Jiancheng organization: 1School of Science, Jiangnan University, Wuxi, 214122, People's Republic of China – sequence: 2 givenname: Mohammed surname: Chadli fullname: Chadli, Mohammed email: chadli@ieee.org organization: 2University of Picardie Jules Verne, 80000 Amiens, France – sequence: 3 givenname: Fanglai surname: Zhu fullname: Zhu, Fanglai organization: 3College of Electronics and Information Engineering, Tongji University, Shanghai, 201804, People's Republic of China |
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Keywords | singular systems nonsingular auxiliary dynamic systems linear matrix inequality method FTO design observer parameters observability condition state equations systematical method observer matching condition unknown inputs linear matrix inequalities output equations algebraic method sub-observer design observers finite-time observer design reference systems |
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Snippet | This study is concerned with the finite-time observer (FTO) design for a class of singular systems subject to unknown inputs in both the state and the output... This study is concerned with the finite‐time observer (FTO) design for a class of singular systems subject to unknown inputs in both the state and the output... |
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SubjectTerms | algebraic method finite‐time observer design FTO design linear matrix inequalities linear matrix inequality method nonsingular auxiliary dynamic systems observability condition observer matching condition observer parameters observers output equations reference systems Research Article singular systems state equations sub‐observer design systematical method unknown inputs |
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Title | Finite-time observer design for singular systems subject to unknown inputs |
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