Title :
H∞ control for striped steel centering of electro-hydraulic servo control system
Author :
Xu Lin ; Zhu Xiaochen ; Chen Yaqiang ; Wang Chaoli
Author_Institution :
Coll. of Inf. Sci. & Eng., Northeastern Univ., Shenyang, China
Abstract :
It is the control problems of hydraulic servo system that parameter perturbation and the uncertainty caused by external interference difficult to solve. Based on robust control, we can still ensure good quickness and steady state performance even when the system is under ultimate conditions through designing a controller with steady structure and constant parameters. This paper focuses on applying robust control H∞ to realizing the electro-hydraulic servo control. In connection with the production line of cold rolled sheet of some steelworks electro-hydraulic servo control system for striped steel centering, we designed a H∞ robust controller with optimal mixed sensitivity on the basis of mixed sensitivity design method. The relative simulation results show that the controller we designed ensures that the robust stability of the closed-loop system and good follow performances, at the same time, it restrains the model perturbation and external disturbance to the influence of the system, which settled the system of anti-disturbance and model disturbance well.
Keywords :
H∞ control; closed loop systems; cold rolling; control system synthesis; electrohydraulic control equipment; metalworking; perturbation techniques; robust control; sensitivity; servomechanisms; sheet metal processing; steel manufacture; strips; uncertain systems; H∞ robust controller design; antidisturbance; closed loop system; cold rolled sheet; constant parameters; controller design; electrohydraulic servo control system; external interference; hydraulic servo system; mixed sensitivity design method; model disturbance; model perturbation; optimal mixed sensitivity; parameter perturbation; production line; robust stability; steady state performance; steady structure; steelworks; striped steel centering; uncertainty; Frequency control; Interference; Robust stability; Sensitivity; Servomotors; Steel; Uncertainty; Electro-hydraulic servo-control; H∞ mixed sensitivity; Robust control; Striped steel centering control;
Conference_Titel :
Control and Decision Conference (CCDC), 2012 24th Chinese
Conference_Location :
Taiyuan
Print_ISBN :
978-1-4577-2073-4
DOI :
10.1109/CCDC.2012.6244440