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An improved constrained model predictive control approach for Hammerstein-Wiener nonlinear systems

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【作者】 李妍陈雪原毛志忠袁平

【Author】 LI Yan;CHEN Xue-yuan;MAO Zhi-zhong;YUAN Ping;AVIC Aerodynamics Research Institute,Aviation Key Laboratory of Science and Technology on Aerodynamics of High Speed and High Renolds Number;School of Information Science and Engineering, Northeastern University;

【机构】 AVIC Aerodynamics Research Institute,Aviation Key Laboratory of Science and Technology on Aerodynamics of High Speed and High Renolds NumberSchool of Information Science and Engineering, Northeastern University

【摘要】 Many industry processes can be described as Hammerstein-Wiener nonlinear systems. In this work, an improved constrained model predictive control algorithm is presented for Hammerstein-Wiener systems. In the new approach, the maximum and minimum of partial derivative for input and output nonlinearities are solved in the neighbourhood of the equilibrium. And several parameter-dependent Lyapunov functions, each one corresponding to a different vertex of polytopic descriptions models, are introduced to analyze the stability of Hammerstein-Wiener systems, but only one Lyapunov function is utilized to analyze system stability like the traditional method. Consequently, the conservation of the traditional quadratic stability is removed, and the terminal regions are enlarged. Simulation and field trial results show that the proposed algorithm is valid. It has higher control precision and shorter blowing time than the traditional approach.

【Abstract】 Many industry processes can be described as Hammerstein-Wiener nonlinear systems. In this work, an improved constrained model predictive control algorithm is presented for Hammerstein-Wiener systems. In the new approach, the maximum and minimum of partial derivative for input and output nonlinearities are solved in the neighbourhood of the equilibrium. And several parameter-dependent Lyapunov functions, each one corresponding to a different vertex of polytopic descriptions models, are introduced to analyze the stability of Hammerstein-Wiener systems, but only one Lyapunov function is utilized to analyze system stability like the traditional method. Consequently, the conservation of the traditional quadratic stability is removed, and the terminal regions are enlarged. Simulation and field trial results show that the proposed algorithm is valid. It has higher control precision and shorter blowing time than the traditional approach.

【基金】 Project(61074074) supported by the National Natural Science Foundation,China;Project(KT2012C01J0401) supported by the Group Innovative Fund,China
  • 【文献出处】 Journal of Central South University ,中南大学学报(英文版) , 编辑部邮箱 ,2014年03期
  • 【分类号】O415
  • 【被引频次】4
  • 【下载频次】30
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