[an error occurred while processing this directive] [an error occurred while processing this directive] [an error occurred while processing this directive]
[an error occurred while processing this directive]
导弹与制导技术

非线性系统的自适应模糊反演控制器设计

  • 丁明海 ,
  • 张友根 ,
  • 朱良军
展开
  • 1 91868 部队,海南三亚 572000
    2 91551部队,江西九江 331000
    3 91291部队,海南三亚 572000

丁明海(1970-),男,江西赣州人,助理工程师,研究方向:导弹指挥。

收稿日期: 2009-11-18

  网络出版日期: 2025-05-30

基金资助

国家自然科学基金(60674090)

Adaptive Fuzzy Inverse Control Approach for Uncertain Nonlinear System

  • DING Minghai ,
  • ZHANG Yougen ,
  • ZHU Liangjun
Expand
  • 1 No. 91868 Unit, Hainan Sanya 572000, China
    2 No. 91551 Unit, Jiangxi Jiujiang 331000, China
    3 No. 91291 Unit, Hainan Sanya 572000, China

Received date: 2009-11-18

  Online published: 2025-05-30

摘要

针对一类非线性系统,考虑到系统的完全未知模型参数和扰动,提出了自适应模糊反演控制方法。首先因为模糊系统可以以任意精度渐近的逼近任意连续函数的优越性,采用自适应模糊控制理论设计模糊系统逼近系统未建模动态。然后采用反演设计方法逐步设计控制律和更新律,并用Lyapunov综合方法证明其最终一致渐进稳定。最后用仿真验证所给方法的正确性。

本文引用格式

丁明海 , 张友根 , 朱良军 . 非线性系统的自适应模糊反演控制器设计[J]. 弹箭与制导学报, 2011 , 31(1) : 45 -48 . DOI: 10.15892/j.cnki.djzdxb.2011.01.004

Abstract

In this paper, a novel adaptive fuzzy controller for uncertain nonlinear systems was proposed to attenuate the effects caused by unmodeled dynamics and disturbances. Because of the advantages of fuzzy systems, which can uniformly approximate nonlinear continuous functions to arbitrary accuracy, the adaptive fuzzy control theory was then employed to derive the update laws for approximating the uncertain nonlinear functions of the dynamical system. Furthermore, the adaptive inverse control scheme was used to derive the control law and update law, and the uniformly asymptotically stability was proved by Lyapunov synthesis method. Simulation results show the validity of the proposed approach.

[an error occurred while processing this directive]

参考文献

[1]
Isidori A. Nonlinear control systems[M]. Berlin: Springer-Verlag (x), 1998.
[2]
Slotine E, Li Weiping. Applied nonlinear control[M]. 北京: 机械工业出版社, 2004.
[3]
王立新. 模糊系统与模糊控制[M]. 北京: 清华大学出版社, 2003.
[4]
Chen Bor-Sen, Ching-Hsiang Lee, Yeong-Chan Chang. H∞ tracking design of uncertain nonlinear SI-SO systems Adaptive fuzzy approach[J]. IEEE Transaction on Fuzzy Systems, 1996, 4(1): 483-492.
[5]
Wang Wei-Yen, Chan Mei-Lang, Tsu-Tian Lee, et al. Adaptive fuzzy control for strict feedback canonical nonlinear systems with H∞tracking performance[J]. IEEE Transactions on Systems, Man, and Cybernetics Part B: Cybernetics, 2000, 30(6): 32-43.
[6]
Wang Wei-Yen, Chan Mei-Lang, Hsu Chen-Chien James, et al. H∞ tracking-based sliding mode control for uncertain nonlinear systems via an adaptive fuzzy-neural approach[J]. IEEE Transaction On Systems, Man, And Cybernetics-Part B: Cybernetics, 2002, 32(4): 878-885.
[7]
Leu YG, Wang WY, Lee T T. Robust adaptive fuzz-y-neural controllers for uncertain nonlinear systems [J] IEEE Trans. Robot Automat, 1999, 15(5): 805-817.
[8]
Lue YG, Lee T T, Wang W Y. Observer-based adap-tive fuzzy neural control for unknown nonlinear dy-namical systems[J]. IEEE Trans. Syst., Man, Cy-bern, Part B, 1999, 29(5): 583-591.
文章导航

/

[an error occurred while processing this directive]