Robust Fault Detection Scheme for Asynchronous Switched Systems via Sliding Mode Observer

This work studies the fault detection problem for continuous-time asynchronous switched systems. For residual signal generation, we design a fault detection sliding mode observer such that residual characterizes the fault sensitivity level by H _ performance, and its robustness to process disturbanc...

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Veröffentlicht in:International journal of control, automation, and systems 2024, Automation, and Systems, 22(4), , pp.1186-1200
Hauptverfasser: Ali, Shafqat, Jiang, Yuchen, Luo, Hao, Raza, Muhammad Taskeen, Faisal, Shah, Shahid, Faizan
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Sprache:eng
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Zusammenfassung:This work studies the fault detection problem for continuous-time asynchronous switched systems. For residual signal generation, we design a fault detection sliding mode observer such that residual characterizes the fault sensitivity level by H _ performance, and its robustness to process disturbance is determined by H ∞ performance. Specifically, the challenge entails addressing the phenomenon of asynchronous switching between the controlled object and the observer, where there is a delay between the switching of the subsystems and the observer. A piece-wise Lyapunov function and average dwell time approach are applied to resolve the asynchronous switching stability within matched and unmatched periods. A feasible solution is derived based on linear matrix inequalities. For effective fault detection, a residual evaluation scheme is provided with a threshold. Finally, simulation results on a buck-boost converter are furnished to validate the usefulness of the proposed approach.
ISSN:1598-6446
2005-4092
DOI:10.1007/s12555-023-0121-4