Adaptive fuzzy finite‐time fault‐tolerant control design for nonlinear pure‐feedback systems with sensor faults

Author:

You Guodong1ORCID,Shen Zhifang1,Xu Bin1,Zhang Chuanlei2,Zhao Shuangle1,Hou Xiaoxin1,Liu Zhifeng1

Affiliation:

1. College of Electronic Information and Automation Tianjin University of Science and Technology Tianjin China

2. College of Artificial Intelligence Tianjin University of Science and Technology Tianjin China

Abstract

SummaryThis article investigates an adaptive fuzzy finite‐time fault‐tolerant control (FTC) scheme for nonlinear pure‐feedback systems (PFSs) with sensor faults. The pure‐feedback system in this article includes time‐varying fault factors and unknown nonlinear functions. Choose the time‐varying fault separation method to keep the fault parameters away from the actual state to avoid coupling problems. Using the mean‐value theorem (MVT) to handle the non‐affine functions in the system and effectively decouple the control input signals. The approximation capability of the fuzzy logic systems (FLSs) is utilized to handle the unknown functions in the system and combined with the backstepping techniques for the construction of the adaptive fault‐tolerant controller. Using Lyapunov theory to verify the stability of closed‐loop system. Finally, choose two simulation examples verified the validity of the control strategy.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Signal Processing,Control and Systems Engineering

Reference46 articles.

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2. Intelligent Adaptive Tracking Controller Design for Stochastic Switched Pure-Feedback Nonlinear Systems With Input Saturation and Non-Lower Triangular Structure

3. Robust adaptive prescribed performance dynamic surface control for uncertain nonlinear pure‐feedback systems;Jia FJ;J Franklin Inst,2019

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