Synchronization Control Strategy Applied in Two Cylinders System of Rolling Mill

Author:

Wei Li Xin1,Zhao Jin Chun1

Affiliation:

1. Yanshan University

Abstract

The inner parameters and outside load of operating-side and driving-side subsystems of rolling mill are different. This difference can lead to an unequal horizontal thickness difference distribution of strip. Synchronous system is being widely applied in industrial field, in order to solve the problem of synchronization control based on two cylinders system of rolling mill, a mathematical model of hydiaulic system is presented, then, a kind of dynamic synchronous control strategy is applied. In the part of controller, the parameters of PID controller are adjusted by self-study. So the PID controller has the capability of self-adaptation. Experimental results show that the method can reduce synchronization error from to and improve the quality of the plate and strip.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference8 articles.

1. ZHANG Zhi-wei, ZHANG Fu-bo, WANG Guo-dong. An Synchronization Control Strategy Applied in Two Cylinders System and Its Simulation [J]. Machine Tool and Hydraulics, 2003, (3): 232-239.

2. Jang J S, KimY B, Lee I Y, Yun S N. Design of a Synchronous Position Controller with a Pneumatic Cylinder Driving System [J]. In: Proceedings of Instrument and Control Engineers Annual Conference. Sapporo, Japan: Monographie, 2004. 295-299.

3. Zhao G, Ma G L, Guo J, Hu W L. Adaptive Synchronous Control of Servo System Driven by Two Motors [J]. In: Proceedings of the 8th Intermational Conference on Control, Automation, Robotics and vision, Kunming, China: IEEE, 2004, 1990-(1993).

4. Ren L, Mills J K, Sun D. Adaptive Synchronization Control of a Planar Parallel Manipulator [J]. In: Proceedings of the 2004 American Control Conference. Boston, Massachusetts, USA: IEEE, 2004. 3980-3985.

5. FANG Yi-ming, ZHAO Lin-lin, OU Fa-shun. Robust Dynamic Output Feedback Synchronous Control for Both Sides of Pressing Down Position System for Cold Rolling Mill [J]. Acta Automatica Sinica, 2009, (4): 438-442.

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