Nonlinear Analysis: Hybrid Systems | 2021

Global finite-time stabilization of switched high-order rational power nonlinear systems

 
 
 
 

Abstract


Abstract This works is concerned with the finite-time optimal stabilization problem for a class of switched non-strict-feedback nonlinear systems whose powers are possibly different positive odd rational numbers in the sense the powers of each subsystem might differ from others. It is well known that high-order nonlinear systems are intrinsically challenging as feedback linearization and backstepping method successfully developed for low-order systems fail to work. To this purpose, the nested saturation homogeneous controller is constructively devised to achieve global finite-time stability. Furthermore, the corresponding design parameters are optimized by minimizing a well-defined cost function, and thus an optimal controller being independent of switching signals is obtained. Simulation results are eventually provided to validate the effectiveness of the proposed control scheme.

Volume 40
Pages 101007
DOI 10.1016/j.nahs.2020.101007
Language English
Journal Nonlinear Analysis: Hybrid Systems

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