基于观测器的滑模控制用于有/无时滞失配扰动系统的镇定

Observer-Based Sliding Mode Control for Stabilization of Mismatched Disturbance Systems With or Without Time Delays

IEEE Transactions on Systems, Man, and Cybernetics: Systems · 2021
被引 39
ABS 3

中文导读

研究了有/无时滞的失配扰动系统镇定问题,通过扰动观测器设计两种滑模控制方案,适用于扰动界未知的情况。

Abstract

In this article, the stabilization problem of mismatched disturbance systems with or without time delays is studied via observed-based sliding mode control (SMC). Two kinds of SMC schemes for systems with time delay and without time delay are considered, respectively. When time delay is addressed in the system, an SMC strategy is structured via disturbance observer, where the unknown external disturbances are supposed to be generated by an exogenous dynamic. When time delay is not addressed, an SMC approach is designed in which the unknown external disturbances are assumed to tend to a constant steady state in infinite time. Sufficient conditions for stability of the corresponding sliding motion are derived by using Lyapunov–Krasovskii functional and Lyapunov function approach, respectively. Our results can be applied when the bound of the disturbances are unmeasured or unknown. Two simulation examples are shown to illustrate the proposed methods.

控制理论滑模控制时滞系统扰动观测器