TY - JOUR
T1 - Controller design of a steel billet mould oscillation system with iterative feedback tuning
AU - Zhao, Jiangbo
AU - Wang, Junzheng
AU - Wang, Shoukun
PY - 2015/11
Y1 - 2015/11
N2 - In the continuous casting of steel billets, mould oscillation is a key process. The mould driven by a hydraulic cylinder is a big inertia system. Its trajectory is required to track a specific oscillation rule, but the tracking performance will be influenced by the molten steel weight. In this paper, dynamic pressure feedback (DPF) is proposed as compensation for the PID controller, to eliminate the adverse effect caused by the variation of the molten steel weight. The iterative feedback tuning (IFT) method is applied to tune the PID controller parameters and the DPF coefficient. In contrast to common IFT tuning structure, this paper designs a new scheme to estimate the cost function gradient with respect to the controller parameters. Numerical simulations and experimental results show the effectiveness of the DPF compensation strategy and the proposed parameter tuning method.
AB - In the continuous casting of steel billets, mould oscillation is a key process. The mould driven by a hydraulic cylinder is a big inertia system. Its trajectory is required to track a specific oscillation rule, but the tracking performance will be influenced by the molten steel weight. In this paper, dynamic pressure feedback (DPF) is proposed as compensation for the PID controller, to eliminate the adverse effect caused by the variation of the molten steel weight. The iterative feedback tuning (IFT) method is applied to tune the PID controller parameters and the DPF coefficient. In contrast to common IFT tuning structure, this paper designs a new scheme to estimate the cost function gradient with respect to the controller parameters. Numerical simulations and experimental results show the effectiveness of the DPF compensation strategy and the proposed parameter tuning method.
KW - Dynamic pressure feedback
KW - electro-hydraulic system
KW - iterative feedback tuning
KW - mould oscillation
KW - servo valve
UR - http://www.scopus.com/inward/record.url?scp=84942602554&partnerID=8YFLogxK
U2 - 10.1177/0142331214558500
DO - 10.1177/0142331214558500
M3 - Review article
AN - SCOPUS:84942602554
SN - 0142-3312
VL - 37
SP - 1161
EP - 1170
JO - Transactions of the Institute of Measurement and Control
JF - Transactions of the Institute of Measurement and Control
IS - 10
ER -