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\(H_\infty \) Reliable Bumpless Transfer Control for Switched Systems: A Mixed State/Time Dependent Switching Method

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Abstract

In this paper, the problem of reliable bumpless transfer control for switched systems with actuator faults is investigated. A switching law and a class of reliable controllers via output feedback are constructed such that the bumpless transfer performance and \(H_\infty \) reliable property of the closed-loop systems are guaranteed. The switching process is divided into two stages, that is, dwell time and state-dependent switching stages. In the dwell time stage, a low bound of the time of the activated subsystem is introduced to restrict the frequent switching and suppress the system bumps. This guarantees the bumpless transfer performance of systems. In the second stage, only the measurable controller states are used to generate the switching signals, which upgrades the feasibility in the frame of output feedback. Finally, to ensure the \(H_\infty \) reliable property, the proposed controllers are time-varying, which work in the different switching stages. A simulation example is given to demonstrate the effectiveness of the proposed control scheme.

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Acknowledgements

This work is supported in part by the Education Department of Jilin Province under Grant JJKH20240151KJ, the Natural Science Foundation of Jilin Province under Grant 20240101357JC, 20230101239JC and the National Natural Science Foundation of China under Grant 62273072.

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Correspondence to Guang-Xin Zhong.

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Zhao, XQ., Sun, J., Li, JN. et al. \(H_\infty \) Reliable Bumpless Transfer Control for Switched Systems: A Mixed State/Time Dependent Switching Method. Circuits Syst Signal Process 43, 6996–7019 (2024). https://doi.org/10.1007/s00034-024-02809-9

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