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Research on control of electro-hydraulic servo system based on third-order linear ADRC

Bingwei Gao, Wei Zhang, Lintao Zheng, Hongjian Zhao

Robotic Intelligence and Automation

ISSN: 2754-6969

Article publication date: 7 June 2023

Issue publication date: 23 June 2023

162

Abstract

Purpose

The purpose of this paper is to design a third-order linear active disturbance rejection controller (LADRC) to improve the response characteristics and robustness of the electrohydraulic servo system.

Design/methodology/approach

The LADRC was designed by replacing the nonlinear functions in each part of ADRC with linear functions or linear combinations, and the parameters of each part of the LADRC were connected with their bandwidth through the pole configuration method to reduce the required tuning parameters, and used an improved grey wolf optimizer to tune the LADRC parameters.

Findings

The anti-interference control simulation and experiment on the LADRC, ADRC and proportion integration differentiation (PID) were carried out to test the robustness, anti-interference ability and superiority of the designed LADRC. The simulation and experiment results showed that the LADRC control and anti-interference control had excellent performance, and because of its simple structure and fewer parameters, LADRC was easier to implement and had a better control effect and anti-interference.

Originality/value

For the problems of parameter perturbation, unknown interference and inaccurate model in the electrohydraulic position servo system, the designed third-order LADRC has good tracking accuracy and anti-interference, has few parameters and is conducive to promotion.

Keywords

Acknowledgements

This work was supported by the Natural Science Foundation of Heilongjiang Province of China (LH2019E064), and National Natural Science Foundation of China (52075134).

Citation

Gao, B., Zhang, W., Zheng, L. and Zhao, H. (2023), "Research on control of electro-hydraulic servo system based on third-order linear ADRC", Robotic Intelligence and Automation, Vol. 43 No. 3, pp. 301-312. https://doi.org/10.1108/RIA-10-2022-0247

Publisher

:

Emerald Publishing Limited

Copyright © 2023, Emerald Publishing Limited

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