Home /Research /Application and Design of a Robust Iterative Learning Controller for Uncertain Time-delay Systems
OTHER

Application and Design of a Robust Iterative Learning Controller for Uncertain Time-delay Systems

Xisheng Zhan

Year
2006
Citations
2

Abstract

A novel method-robust iterative learning control (RILC) is proposed for time-varying systems with uncertain time-delay in this paper. The robust iterative learning controller is obtained by resolving Riccati equation. In addition, the sufficient and necessary conditions of convergence are derived by Lyapunov theory. The proposed controller has lower order and can be more easily realized than robust controller. The scheme proposed guarantees that the tracking error converges to a pre-specified error bound after finite iterations. Cite a two-link planar robot as an example. The simulation result shows the effectiveness and feasibility of the proposed method

Keywords

Iterative learning controlControl theory (sociology)Controller (irrigation)Convergence (economics)Robust controlComputer scienceTracking errorScheme (mathematics)Robustness (evolution)Iterative method

Related papers

Browse all OTHER papers