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基于LMI方法的軋機主傳動系統機電振動H控制

H control based on LMI for electromechanical vibration of a rolling mill main drive system

  • 摘要: 為了抑制機電振動,保證對干擾有良好的動態抑制作用且無靜態擾動誤差,針對軋機主傳動系統,建立了基于模型匹配二自由度系統的狀態空間模型,并將軋機主傳動系統機電振動控制設計問題歸結為標準的H控制問題;用線性矩陣不等式法得到輸出反饋H控制器,以保證系統的魯棒性.仿真研究結果表明,該方法有效改善了軋機主傳動系統的跟蹤性能,抑制了系統的機電振動現象,同時減小了軋制負荷擾動引起的動態速降.

     

    Abstract: In order to suppress electromechanical vibration, to dynamically restrain the disturbance ot a main drive system and not to induce static error by the disturbance, a state space model of two-degree-of-freedom systems was built based on model matching techniques for the main drive system of a roiling mill. The design of an electromechanical vibration controller was converted into a standard H control problem. Then an output feedback H controller was obtained by using LMI approach so as to guarantee the robustness of the main drive system of a roiling mill. Simulated results showed that the controller effectively improved the performance of command following, suppressed electromechanical vibration, and reduced the dynamic speed fall caused by load disturbance.

     

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