Synthesis of Tension Control Systems for Winders of Cold Rolling Mills

被引:9
|
作者
Pushkina A.A. [1 ]
Kushnarev V.A. [1 ]
Grigorev M.A. [1 ]
机构
[1] South Ural State University, (National Research University), Chelyabinsk
关键词
cold rolling sheet mills; control system; frequency identification;
D O I
10.3103/S1068371220070111
中图分类号
学科分类号
摘要
Abstract: This article discusses the stages of tuning and adjustment of tension control systems for winders of cold-rolled sheet mills using experimental frequency identification of the control object. To successfully solve the problems of synthesis of a control system by frequency methods, initial structures of the control object have been selected and adopted, the parameters of which were specified at the stage of frequency identification. Restrictions on the use of the proposed structure of the electric drive were coordinated—namely, a high cutoff frequency of the torque control loop and an absolutely stretched rolling strip. The imposed restrictions on the model made it possible to significantly simplify it, as well as to eliminate some cross links in the considered structure. In tension control systems, the node for dynamic compensation of disturbance caused by a change in the speed of the rolling stand of cold-rolled sheet mills can contain only one channel that compensates only for the dynamic component. The limitation of the disturbance component due to the inaccuracy in the operation of the indirect torque control loop is realized by adjusting the control loop of the winder’s electric drive moment for maximum speed. In electric drives with new types of electric machines, it is possible to significantly expand the range of operation of the compensating device by increasing the speed of the torque control loops of the rolling stand and winder electric drives. © 2020, Allerton Press, Inc.
引用
收藏
页码:461 / 465
页数:4
相关论文
共 50 条
  • [41] Robust Control of Strip Tension for Tandem Cold Rolling Mill
    Zhang Xiaofeng
    Zhang Qingdong
    2011 30TH CHINESE CONTROL CONFERENCE (CCC), 2011, : 2390 - 2393
  • [42] MODERNIZATION OF COLD-ROLLING MILLS
    DORFER, JG
    IRON AND STEEL ENGINEER, 1985, 62 (07): : 75 - 75
  • [43] ELECTRICAL EQUIPMENT FOR COLD ROLLING MILLS
    TACK, JP
    STREBEL, E
    BROWN BOVERI REVIEW, 1971, 58 (2-3): : 65 - &
  • [44] MODERNIZATION OF COLD-ROLLING MILLS
    SETZER, H
    IRON AND STEEL ENGINEER, 1983, 60 (01): : 50 - 55
  • [45] Looper and Tension Control in Hot Rolling Mills: An Adaptive Sliding Mode Approach
    Wang, Hongwei
    Zhang, Kesheng
    Yu, Chi
    PROCEEDINGS OF THE 30TH CHINESE CONTROL AND DECISION CONFERENCE (2018 CCDC), 2018, : 3749 - 3754
  • [46] Observer-based multivariable tension control of aluminum hot rolling mills
    Hoshino, I
    Okamura, Y
    Kimura, H
    PROCEEDINGS OF THE 35TH IEEE CONFERENCE ON DECISION AND CONTROL, VOLS 1-4, 1996, : 1217 - 1222
  • [47] COLD ROLLING WITH STRIP TENSION
    DOWDING, MF
    JOURNAL OF THE IRON AND STEEL INSTITUTE, 1952, 172 (02): : 142 - 142
  • [48] A PRACTICAL APPROACH FOR THE DESIGN OF THICKNESS AND TENSION CONTROLLERS IN MULTI-STAND COLD ROLLING MILLS
    Soler, Nicolas
    Isermann, Rolf
    Feldmann, Frank
    PROCEEDINGS OF THE ASME DYNAMIC SYSTEMS AND CONTROL CONFERENCE 2008, PTS A AND B, 2009, : 637 - +
  • [49] SIMULATION OF TENSION ROLLING ON HOT STRIP MILLS
    BERTRAND, A
    VERSINI, F
    PERIN, M
    RATTE, P
    SAGUEZ, C
    GOMEZ, C
    REVUE DE METALLURGIE-CAHIERS D INFORMATIONS TECHNIQUES, 1982, 79 (03): : 253 - 259
  • [50] METHOD FOR CONTROLLING TENSION IN CONTINUOUS ROLLING MILLS
    BROVMAN, MY
    VYDRIN, VN
    ERMOKHIN, FK
    KISLYUK, VA
    KRAINOV, VA
    LEVINTOV, SD
    RIMEN, VK
    SEREBRYA.AN
    SHEIDER, BE
    STAL IN ENGLISH-USSR, 1965, (07): : 554 - &