DocumentCode
2728989
Title
PMSM robust current control with adaptive tuning of axis decoupling
Author
Nyman, P.-O. ; Sulkowski, W.
Author_Institution
Narvik Inst. of Technol., Norway
Volume
3
fYear
2003
fDate
2-6 Nov. 2003
Firstpage
2239
Abstract
Current control of a permanent magnet synchronous motor is designed for optimal robust performance under both uncertainties in the stator parameters, and variation of operating speed. To avoid the conservatism inherent in many robust control approaches, and to admit a flexible choice of optimization criteria, the design is carried out with the help of a genetic algorithm. The controller is composed of two SISO PI-controllers and a static feedback decoupling network that minimizes the interaction between the d- and g-axes uniformly across the parameter uncertainty range, and across the speed range. Remaining interaction is eliminated by a simple on-line adaptive cancellation. This results in a practically perfect decoupling in the stationary case, while leaving the stability and performance level guaranteed by the robust design intact. It is shown that the stability and parameter convergence of the proposed adaptive cancellation mechanism is robust with respect to stator parameter uncertainties for a relative broad range of reasonable controller parameters. The adaptive mechanism is tested both in simulations and on the actual motor.
Keywords
PI control; electric current control; feedback; genetic algorithms; machine vector control; minimisation; permanent magnet motors; robust control; synchronous motors; tuning; SISO PI-controllers; axis decoupling adaptive tuning; genetic algorithm; online adaptive cancellation; operating speed; optimization criteria; parameter convergence; permanent magnet synchronous motor; proportional integral control; robust current control; single input single output controllers; static feedback decoupling network; stator parameter uncertainties; Adaptive control; Current control; Design optimization; Permanent magnet motors; Programmable control; Robust control; Robust stability; Stators; Uncertain systems; Uncertainty;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics Society, 2003. IECON '03. The 29th Annual Conference of the IEEE
Print_ISBN
0-7803-7906-3
Type
conf
DOI
10.1109/IECON.2003.1280591
Filename
1280591
Link To Document