Title :
Two-degree-of-freedom robust speed controller for high-performance rolling mill drives
Author :
Dhaouadi, Rached ; Kubo, Kenji ; Tobise, Masahiro
Author_Institution :
Hitachi Ltd., Ibaraki, Japan
Abstract :
A scheme is presented for the speed control of rolling mill drives. The proposed speed controller is based on a two-degree-of-freedom (TDF) structure and uses an observer-based state feedback compensator for the major control loop. The control method yields a robust system with respect to system uncertainties and modeling errors and is very effective for vibration suppression. Experimental verification was carried out on a prototype rolling mill minimodel system. The experimental drive system has a three-mass-model structure (motor-gear-load) connected by low stiffness shafts. The mechanical resonances and the inertia ratios between the motor, gear, and load are comparable to those of an actual rolling mill system (resonant frequencies are at 17.4 Hz and 51.3 Hz). The proposed scheme was compared to the conventional PI controller and the performance of each scheme is presented. A high closed loop speed bandwidth was obtained with the proposed TDF speed controller
Keywords :
closed loop systems; electric drives; feedback; machine control; rolling mills; velocity control; 17.4 Hz; 51.3 Hz; PI controller; bandwidth; closed loop; degrees of freedom; gear; load; machine control; mechanical resonances; modeling errors; motor; observers; performance; ratios; robustness; rolling mill drives; speed controller; state feedback compensator; uncertainties; vibration suppression; Error correction; Milling machines; Prototypes; Resonance; Robust control; Shafts; State feedback; Uncertainty; Velocity control; Vibration control;
Journal_Title :
Industry Applications, IEEE Transactions on