Article ID Journal Published Year Pages File Type
1629929 Journal of Iron and Steel Research, International 2008 4 Pages PDF
Abstract

Automatic gauge control is an essentially nonlinear process varying with time delay, and stochastically varying input and process noise always influence the target gauge control accuracy. To improve the control capability of feedforward automatic gauge control, Kalman filter was employed to filter the noise signal transferred from one stand to another. The linearized matrix that the Kalman filter algorithm needed was concluded; thus, the feedforward automatic gauge control architecture was dynamically optimized. The theoretical analyses and simulation show that the proposed algorithm is reasonable and effective.

Related Topics
Physical Sciences and Engineering Materials Science Metals and Alloys