Attitude control of quadrotor UAV based on integral backstepping active disturbance rejection control

Author:

Yu Susu12ORCID,Fan Xuan3,Qi Jingjing4,Wan Luanfei5,Liu Bingyou12

Affiliation:

1. School of Electrical Engineering, Anhui Polytechnic University, China

2. Key Laboratory of Advanced Perception and Intelligent Control of High-End Equipment, Ministry of Education, China

3. Wuhu HIT Robot Industrial Technology Research Institute Co., Ltd., China

4. Anhui Dar Intelligent Control System Stock Co., Ltd., China

5. Wuhu Institute of Technology, China

Abstract

For the attitude control system of a quadrotor unmanned aerial vehicle (UAV), an integral backstepping active disturbance rejection control strategy is proposed to solve the tracking and disturbance rejection problems in flight control. To solve the problem of buffeting near the origin of traditional nonlinear functions, this paper designs a function [Formula: see text] with better smoothness near the origin. Second, to improve the observation performance of the extended state observer and the anti-disturbance performance of the controller, an improved expanded state observer (IESO) based on error is designed according to the working principle of expanded state observer (ESO) and the tracking law of state variables. Then, to improve the tracking accuracy of the controller, the integral term is introduced into the backstepping method and uses the idea of recursion to design the nonlinear backstepping integral control law. Combining the disturbance estimation and compensation functions of active disturbance rejection control (ADRC), an integral backstepping active disturbance rejection control is designed and applied to the attitude angle control channel of quadrotor UAV. Finally, experimental results indicate that the designed control strategy can realize high-precision tracking of the attitude angle of a quadrotor UAV, achieve fast dynamic response, and improve the anti-interference.

Funder

Key Technology Project of Wuhu City

Academic Support Program for Top Talents in University Disciplines

Anhui Polytechnic University - Jiujiang District industrial collaborative innovation New Special Fund Project

Anhui University Natural Science Research Project key project

Publisher

SAGE Publications

Subject

Instrumentation

Reference33 articles.

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