Title of article
Self-Organizing Adaptive Wavelet Backstepping Control Research for AC Servo System
Author/Authors
Hou, Run-min Department of Mechanical Engineering - Nanjing University of Science and Technology, China , Hou,Yuan-long Department of Mechanical Engineering - Nanjing University of Science and Technology, China , Gao, Qiang Department of Mechanical Engineering - Nanjing University of Science and Technology, China , Wang, Chao Department of Mechanical Engineering - Nanjing University of Science and Technology, China
Pages
10
From page
1
To page
10
Abstract
A novel self-organizing adaptive wavelet cerebellar model articulation controller backstepping (SOWCB) control is proposed, aiming at some nonlinear and uncertain factors that caused difficulties in controlling the AC servo system. This controller consists of self-organizing wavelet cerebellar model articulation controller (CMAC) and robust compensator. It absorbs fast learning and precise approaching advantage of self-organizing wavelet CMAC to mimic a backstepping controller, and then robust compensator is added to inhibit influence of the uncertainties on system performance effectively and realize high accuracy position tracking for AC servo system. Moreover, the stability of the control system can be guaranteed by using Lyapunov method. The results of the simulation and the prototype test prove that the proposed approach can improve the steady state performance and control accuracy and possess a strong robustness to both parameter perturbation and load disturbance.
Keywords
Self-Organizing , AC Servo System , Adaptive Wavelet Backstepping , Control Research
Journal title
Shock and Vibration
Serial Year
2016
Full Text URL
Record number
2617213
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