DocumentCode
1484232
Title
Robust adaptive H∞ position control via a wavelet-neural-network for a DSP-based permanent-magnet synchronous motor servo drive system
Author
El-Sousy, Fayez F. M.
Author_Institution
Dept. of Electr. Eng., King Saud Univ., Saudi Arabia
Volume
4
Issue
5
fYear
2010
fDate
5/1/2010 12:00:00 AM
Firstpage
333
Lastpage
347
Abstract
This paper proposes an adaptive wavelet-neural-network (WNN)-based H ∞ position tracking controller as a new robust motion control system for permanent-magnet synchronous motor (PMSM) servo drives. The combinations of both WNN and H ∞ controllers would insure the robustness and overcome the uncertainties of the servo drive. The new controller combines the merits of the H ∞ control with robust performance and the WNN control (WNNC), which combines the capability of neural networks for on-line learning ability and the capability of wavelet decomposition for identification ability. The on-line trained WNNC is utilised to predict the uncertain system dynamics to relax the requirement of uncertainty bound in the design of the H ∞ controller. The WNNC generates an adaptive control signal to attain robust performance regardless of parameter uncertainties and load disturbances. A systematic methodology for the design of both controllers is provided. A computer simulation is developed to demonstrate the effectiveness of the proposed WNN-based H ∞ controller. An experimental system is established to validate the effectiveness of the servo drive system. All control algorithms are implemented in a TMS320C31 DSP-based control computer. The simulated and experimental results confirm that the new motion controller grants robust performance and a precise dynamic response regardless of load disturbances and PMSM parameter uncertainties.
Keywords
H∞ control; machine control; permanent magnet motors; servomotors; synchronous motor drives; DSP; WNN control; adaptive wavelet-neural-network; permanent-magnet synchronous motor servo drive system; robust adaptive H∞ position control; uncertain system dynamics;
fLanguage
English
Journal_Title
Electric Power Applications, IET
Publisher
iet
ISSN
1751-8660
Type
jour
DOI
10.1049/iet-epa.2009.0156
Filename
5458293
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