Research on instability model in main drive of rolling mill based on LADRC
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摘要: 從軋機主傳動控制系統的角度出發研究機電系統失穩模型和控制策略.在保證控制系統穩態和動態性能的前提下,對兩慣性主傳動機電系統模型進行簡化,采用線性擴張狀態觀測器對系統內外總擾動進行觀測,通過線性反饋和動態誤差反饋方法,達到檢測和控制機電系統失穩的目的.介紹了基于模型簡化系統微分方程的閉環控制器設計方法,并以仿真和實驗進行驗證.研究結果表明,本文所提出的方法在解決由軋機機電系統負荷變化引起的機電失穩方面具有顯著效果.Abstract: From the view of the mill main driving control system,instability model of the electromechanical system and control strategy were researched. In the premise of ensuring the steady and dynamic performance of the control system,the model of main drive of two inertial systems was simplified,the inside and outside disturbance of the system was observed by linear extended state observer. By linear feedback and dynamic error feedback method,the detection and control of electromechanical system failure were achieved. The closed loop controller design method based on simplified differential equation model was proposed,and validated by simulation and experiment. The results show that this study has a significant effect on solving the instability caused by load changes of rolling mill system.
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Key words:
- main drive control system /
- instability model /
- LADRC /
- linear feedback
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