Wang Jing, Liu Xinmiao, Xia Jianwei, Shen Hao, Park Ju H
IEEE Trans Cybern. 2022 Jul;52(7):6638-6648. doi: 10.1109/TCYB.2021.3049459. Epub 2022 Jul 4.
This article investigates the problem of quantized fuzzy control for discrete-time switched nonlinear singularly perturbed systems, where the singularly perturbed parameter (SPP) is employed to represent the degree of separation between the fast and slow states. Taking a full account of features in such switched nonlinear systems, the persistent dwell-time switching rule, the technique of singular perturbation and the interval type-2 Takagi-Sugeno fuzzy model are introduced. Then, by means of constructing SPP-dependent multiple Lyapunov-like functions, some sufficient conditions with the ability to ensure the stability and an expected H performance of the closed-loop system are deduced. Afterward, through solving a convex optimization problem, the gains of the controller are obtained. Finally, the correctness of the proposed method and the effectiveness of the designed controller are demonstrated by an explained example.
本文研究离散时间切换非线性奇异摄动系统的量化模糊控制问题,其中奇异摄动参数(SPP)用于表示快态和慢态之间的分离程度。充分考虑此类切换非线性系统的特点,引入了驻留时间切换规则、奇异摄动技术和区间二型Takagi-Sugeno模糊模型。然后,通过构造依赖于SPP的多个类Lyapunov函数,推导出一些能够确保闭环系统稳定性和期望H性能的充分条件。之后,通过求解一个凸优化问题,得到控制器的增益。最后,通过一个示例说明了所提方法的正确性和所设计控制器的有效性。