@article{LI2023, 
author = {Xiaoyuan LI and Lichen GU and Baolong GENG and Donghong CHENG and Benben ZHANG},
title = {Electro-hydraulic servo force loading control based on improved nonlinear active disturbance rejection control},
year = {2023},
journal = {Journal of Measurement Science and Instrumentation},
volume = {14},
number = {4},
pages = {442-451},
keywords = {undercarriage actuator cylinder, valve-controlled cylinder system, nonlinear active disturbance rejection control, genetic particle swarm optimization, electro-hydraulic servo force loading control},
url = {https://www.sciopen.com/article/10.62756/jmsi.1674-8042.2023049},
doi = {10.62756/jmsi.1674-8042.2023049},
abstract = {The transient and dynamic loading accuracy of the valve controlled cylinder force loading system of the undercarriage actuator cylinder wear and life experiment platform is low, which cannot meet the accuracy requirements of the load spectrum, thus affecting the safety and reliability judgment of the actuator. An improved nonlinear active disturbance rejection control (INADRC) algorithm with higher accuracy and anti-interference ability is proposed based on control algorithm. First, the AMESim/Simulink co-simulation model of the electro-hydraulic servo force loading system is established. Secondly, in order to optimize its parameters, the INADRC controller is designed, and the genetic particle swarm algorithm is used. Finally, the performance of the controller is verified by simulating and experiment with three target signal tracking. The simulation and experimental results show that compared with PID control, nonlinear ADRC (NADRC) and other improved nonlinear ADRC (ONADRC), the average accuracy of the INADRC is improved by 4.15%, 1.15% and 0.65%, which reflects the characteristics of high servo force transient, dynamic loading accuracy and strong anti-interference ability.}
}