• CN:11-2187/TH
  • ISSN:0577-6686

›› 2000, Vol. 36 ›› Issue (1): 75-78.

• 论文 • 上一篇    下一篇

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汽车半主动悬架的非线性神经网络自适应控制研究

陈无畏;王其东;王志君;王启瑞;范迪彬;李智超   

  1. 合肥工业大学机械汽车学院
  • 发布日期:2000-01-15

RESEARCH ON ADAPTIVE CONTROL FOR AUTOMOTIVE SEMI-ACTIVE SUSPENSIONS BASED ON NONLINEAR NEURAL NETWORKS

Chen Wuwei;Wang Qidong;Wang Zhijun;Wang Qirui;Fan Dibin;Li Zhichao   

  1. Hefei University of Technology
  • Published:2000-01-15

摘要: 分析了汽车悬架的非线性特性,提出了基于神经网络的自适应控制策略,设计了神经辨识器和控制器,并通过一个补偿网络,来进行后悬架的预见控制。仿真计算表明,神经网络自适应控制的半主动悬架具有明显的减振效果,而加有后悬架预见控制其效果更佳。为验证仿真结果,还进行了台架试验。试验结果亦表明了半主动悬架的优良减振性能。

关键词: 半主动悬架, 非线性神经网络, 预见控制, 自适应控制

Abstract: Based on the analysis of nonlinear characteristics of automotive suspension, the suspension model is built, the adaptive control strategy based on neural networks is put forward and the neural identifier and controller are designed. In order to improve the control effects, a compensating network is added to the control system. It can be used for the preview control of the rear suspension according to the road disturbances experienced by the front wheels. Simulation results show that adaptively controlled semi-active suspensions with nonlinear neural networks can achieve obvious vibration reducing effects, and the effects are even better for those with preview control of rear suspension. In order to check the simulation results, experiments are carried out on the test rig. The results of different road surfaces and vehicle speeds coincide with those of simulation quite well.

Key words: Adaptive control, Nonlinear neural network, Preview control, Semi-active suspension

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