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基于H混合靈敏度的冷連軋機多變量解耦魯棒控制

Multivariable decoupling robust control for tandem cold mills based on H mixed sensitivity

  • 摘要: 冷連軋過程中的厚度和張力系統具有多變量、強耦合和不確定特點,為了提高系統的控制精度和控制性能,提出了基于不變性原理解耦的H混合靈敏度魯棒控制策略.首先,建立了厚度和張力系統的動態耦合模型,并應用不變性解耦原理實現了對厚度和張力系統的解耦.其次,針對系統存在的建模誤差、參數攝動和外部擾動等不確定性,采用H混合靈敏度方法設計了魯棒控制器來保證系統的魯棒穩定性和魯棒性能.仿真結果表明解耦后的厚度和張力系統可以獲得更好的控制效果,驗證了本算法的有效性.

     

    Abstract: The thickness and tension system in tandem cold rolling has the features such as multivariation,strong coupling and uncertainty.To improve its control accuracy and quality,a new robust control scheme based on the invariance-decoupling theory and H mixed sensitivity method was presented.First,a dynamic coupling model for the thickness and tension system was built,and the invariance-decoupling theory was applied to completely decouple the thickness and tension system.Then,for systematic uncertainty of modeling error,parameter perturbation and external disturbance,a robust controller was designed based on H mixed sensitivity method to ensure the robust stability and robust performance of the system.Simulation results show that the thickness and tension system after decoupling is controled better,proving the validity of the algorithm.

     

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