基于估计器的非线性系统未知输入时滞二阶滑模控制设计

Estimator-Based Second-Order Sliding Mode Control Design for Nonlinear Systems With Unknown Input Delay

IEEE Transactions on Cybernetics · 2025
被引 3
ABS 3

中文导读

针对存在未知输入时滞的不确定非线性系统,提出一种基于估计器的二阶滑模控制器,通过辅助补偿系统和凸优化方法估计时滞,并用幂积分器处理时滞问题,仿真验证了其优越性。

Abstract

In this article, we propose an estimator-based second-order sliding mode (SOSM) controller tailored for uncertain nonlinear systems with unknown input delay. Distinct from existing SOSM control methods, this work tackles two principal challenges: 1) the difficulty of dealing with unknown input delay, especially given the discontinuity of sliding mode controllers; and 2) the uncertainties in the nonlinear systems bounded by functions rather than widely-used constants. We begin by establishing the SOSM dynamics with input delay and uncertainties, followed by the introduction of an auxiliary compensation system. Then, we design an input delay estimator suitable for discontinuous controllers by enhancing the convex optimization method. Leveraging this, a novel estimator-based SOSM controller is constructed by adding a power integrator technique to address the input delay issue. Rigorous Lyapunov analysis is conducted to confirm the finite-time stability of the closed-loop control system. Finally, comparative simulations validate the superiority of the proposed SOSM controller.

控制理论滑模控制非线性系统时滞系统