Abstract
This paper focuses on the bumpless transfer fault detection problem for switched systems under state-dependent switching. The goal is to find an effective constraint on filters and an appropriate switching signal to reduce the bumps of residual signals caused by switching while achieving expected fault sensitivity and robustness of the filtering systems. For transient behavior description, a novel bumpless transfer constraint is proposed to limit the amplitude of residual signals into a bounded range at the switching points. In terms of multiple Lyapunov functions, a state-dependent switching law is designed to realize fault detection performance even if the robustness and fault sensitivity of each subsystem are local. Sufficient conditions for the bumpless transfer fault detection problem are provided in the form of linear matrix inequalities. Finally, a numerical example is given to validate the effectiveness of the developed method.
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Acknowledgements
This work was partially supported by National Natural Science Foundation of China (Grant Nos. 61773235, 61803225, 61903261), partially by Taishan Scholar Project of Shandong Province (Grant No. TSQN20161033), partially by China Postdoctoral Science Foundation (Grant No. 2019M652352), partially by Post Doctoral Innovation Project of Shandong Province (Grant No. 201903046), partially by Natural Science Foundation of Liaoning Province (Grant No. 2019-BS-179), partially by General Project of Scientific Research of the Education Department of Liaoning Province (Grant No. LJGD2019015), and partially by Interdisciplinary Scientific Research Projects of Qufu Normal University (Grant No. xkjjc201905).
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Zong, G., Huang, C. & Yang, D. Bumpless transfer fault detection for switched systems: a state-dependent switching approach. Sci. China Inf. Sci. 64, 172208 (2021). https://doi.org/10.1007/s11432-020-3036-9
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DOI: https://doi.org/10.1007/s11432-020-3036-9