scholarly journals Adaptive backstepping fuzzy sliding mode vibration control of flexible structure

2018 ◽  
Vol 37 (4) ◽  
pp. 1079-1096 ◽  
Author(s):  
Yunmei Fang ◽  
Juntao Fei ◽  
Tongyue Hu

An adaptive backstepping fuzzy sliding mode control is proposed to approximate the unknown system dynamics for a cantilever beam in this paper. The adaptive backstepping fuzzy sliding mode control is developed by combining the backstepping method with adaptive fuzzy strategy, where backstepping design approach is used to drive the trajectory tracking errors to converge to zero rapidly with global asymptotic stability and fuzzy logic system is designed to approximate the unknown nonlinear function in the adaptive backstepping fuzzy sliding mode control. The proposed backstepping controllers can ensure proper tracking of the reference trajectory, and impose a desired dynamic behavior, giving robustness and insensitivity to parameter variations. Numerical simulation for cantilever beam is investigated to verify the effectiveness of the proposed adaptive backstepping fuzzy sliding mode control scheme and demonstrate the satisfactory vibration suppression performance.

Author(s):  
Liming Dai ◽  
Lin Sun

With employment of a modified Fuzzy Sliding Mode Control (FSMC) approach, in the present research a methodology is developed to control the chaotic responses of a laminated composite cantilever beam subjected to an external sinusoidal excitation. The 3rd order shearing effect on the responses of the beam is considered in the model establishment. The modified FSMC approach has shown significant advantages on effectively suppressing the chaotic responses of the investigated system.


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