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基于魯棒二自由度增益自適應Smith預估器的冷軋厚度計型AGC

Cold-rolling gaugemeter-type AGC based on robust two-degrees-freedom and gain-adaptive Smith-predictor

  • 摘要: 綜合考慮冷軋厚度計型AGC(automatic gauge control)控制對象模型的漸變性以及在低速軋制時大時延引起的厚度反饋較大時滯,提出一種冷軋厚度計型AGC控制的改進方法來減弱這些系統不確定性和厚度反饋時滯帶來的不利影響.推導出針對任意階對象的增益自適應調節律,并給出了在保證系統魯棒穩定條件下的控制器和濾波器參數選取原則.仿真結果證明這一新方法可有效地抑制干擾,而且在對象參數攝動時系統具有魯棒穩定性.

     

    Abstract: In view of the changing of a clod-rolling gaugemeter-type automatic gauge control (AGC) model and the gauge feedback resulted from long time-delay under low-speed rolling, a modified method of gaugemetertype AGC for cold-rolling to attenuate the bad influence resulted from uncertainties of the system was proposed. A new gain adaptive algorithm was deduced for an over two-order system with time-delay, and a principle for selecting controller parameters was given to ensure robust stability of the system. Simulation result shows that this method can effectively attenuate disturbance of the system, and stabilize the system when the parameters of the system is changing.

     

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