H∞ Observer-Based Sliding Mode Control for Uncertain Stochastic Systems with Time-Varying Delays
Peng Zhang, Yonggui Kao, Jingyan Zhu, Wei Li
Abstract
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Peng Zhang, Yonggui Kao, Jingyan Zhu, Wei Li
Abstract
Open-access reader
The paper is concerned with sliding mode control for uncertain time-delay systems subjected to input nonlinearity and stochastic perturbations. Using the sliding mode control, a robust law is derived to guarantee the reachability of the sliding surface in a finite time interval. The sufficient conditions on asymptotic stability of the error system and sliding mode dynamics with disturbance attenuation level are presented in terms of linear matrix inequalities (LMIs). Finally, an example is provided to illustrate the efficiency and effectiveness of the proposed method.
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The paper is concerned with sliding mode control for uncertain time-delay systems subjected to input nonlinearity and stochastic perturbations. Using the sliding mode control, a robust law is derived to guarantee the reachability of the sliding surface in a finite time interval. The sufficient conditions on asymptotic stability of the error system and sliding mode dynamics with disturbance attenuation level are presented in terms of linear matrix inequalities (LMIs). Finally, an example is provided to illustrate the efficiency and effectiveness of the proposed method.
Key concepts: Control theory (sociology), Reachability, Sliding mode control, Observer (physics), Nonlinear system, Exponential stability, Attenuation, Interval (graph theory)