时滞锥形非线性系统的鲁棒有限时间有界控制器设计:基于滑模控制策略

Robust Finite-Time Bounded Controller Design of Time-Delay Conic Nonlinear Systems Using Sliding Mode Control Strategy

IEEE Transactions on Systems, Man, and Cybernetics: Systems · 2017
被引 141
ABS 3

中文导读

研究了一类带时滞和外部扰动的锥形非线性系统的有限时间滑模控制器设计问题,通过构造依赖标量选择的滑模控制律,确保系统在指定短时间区间内状态轨迹到达滑模面并实现有限时间有界。

Abstract

The finite-time sliding mode controller design problem of a class of conic-type nonlinear systems with time-delays and mismatched external disturbance is studied. The time-delay conic nonlinearities are considered to lie in a known hypersphere with an uncertain center. A scalar selection criterion dependent sliding mode control (SMC) law is constructed to drive the state trajectories onto the specified sliding surface during any assigned short time interval. By using slack matrix approach, a delay-dependent sufficient condition is derived to ensure the finite-time boundedness of the closed-loop systems over the finite-time interval. Then, the algorithm for designing the finite-time SMC law is established. Finally, two examples related to the time-delayed Chua's circuit is given to demonstrate the effectiveness of the developed methods.

控制理论非线性系统滑模控制时滞系统有限时间控制