Data-Driven Intelligent Recognition of Flatness Control Efficiency for Cold Rolling Mills

Author:

Zhou Xiaomin12,Li Liqi1,Ma Xinglong1,Xu Tao2

Affiliation:

1. School of Mechanical Engineering, University of Science and Technology Beijing, Beijing 100083, China

2. Shunde Innovation School, University of Science and Technology Beijing, Foshan 528399, China

Abstract

In the production process of strip tandem cold rolling mills, the flatness control system is important for improving the flatness quality. The control efficiency of actuators is a pivotal factor affecting the flatness control accuracy. At present, the data-driven methods to intelligently identify the flatness control efficiency have become a research hotspot. In this paper, a wavelet transform longitudinal denoising method, combined with a genetic algorithm (GA-WT), is proposed to handle the big noise of the measured data from each signal channel of the flatness meter, and Legendre orthogonal polynomial fitting is employed to extract the effective flatness features. Based on the preprocessed actual production data, the adaptive moment estimation (Adam) optimization algorithm is applied, to intelligently identify the flatness control efficiency. This paper takes the actual production data of a 1420 mm tandem cold mill as an example, to verify the performance of the new method. Compared with the control efficiency determined by the empirical method, the flatness residual MSE 0.035 is 5.4% lower. The test results indicate that the GA-WT-Legendre-Adam method can effectively reduce the noise, extract the flatness features, and achieve the intelligent determination of the flatness control efficiency.

Funder

Scientific and Technological Innovation Foundation of Foshan

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

Reference21 articles.

1. Core technology of process control system for 1250 mm five stands 6-high tandem cold mill;Jia;Steel Roll.,2020

2. Research progress on cold-rolled strip shape recognition and control;Huang;J. Iron Steel Res.,2013

3. Development of cold rolling flatness control theory;Liu;J. Iron Steel Res.,1997

4. Analysis and improvement for flatness control system of 1450 tandem cold mill;Wang;China Metall.,2009

5. Present status and future prospects of strip flatness control based on elastic-plastic finite element;Li;Steel Roll.,2020

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