DocumentCode
2161276
Title
Intelligent speed controllers for IPM motor drives
Author
Khan, M. A S K ; George, G.H. ; Rahman, M.A.
Author_Institution
Power & Energy Res. Lab., Memorial Univ. of Newfoundland, St. John´´s, NL
fYear
2009
fDate
3-6 May 2009
Firstpage
833
Lastpage
836
Abstract
In this paper the comparative performances of the interior permanent magnet synchronous motor (IPMSM) drive system using proportional integral (PI) controller, proportional integral derivative (PID) controller, adaptive neural network (NN) controller, and wavelet based multiresolution proportional integral derivative (MRPID) controller are presented. In the proposed wavelet based MRPID controller, the discrete wavelet transform is used to decompose the error between actual and command speeds into different frequency components at various scales. The wavelet transformed coefficients of different scales are scaled by their respective gains, and then are added together to generate the control signal. The performances of the IPMSM drive system are investigated in simulation and experiments at different dynamic operating conditions. The vector control scheme of the conventional and proposed speed controllers based IPMSM drive system is successfully implemented in real-time using the digital signal processor board ds1102 on the laboratory 1-hp IPMSM. The simulation and laboratory test results confirm the superiority of the proposed wavelet based MRPID controller over the conventional speed controllers for wide spread applications in high performance industrial motor drive systems.
Keywords
PI control; adaptive control; angular velocity control; control engineering computing; digital signal processing chips; discrete wavelet transforms; intelligent control; machine control; neurocontrollers; permanent magnet motors; synchronous motor drives; three-term control; adaptive neural network controller; digital signal processor board; discrete wavelet transform; ds1102; industrial motor drive systems; intelligent speed controllers; interior permanent magnet synchronous motor drive system; multiresolution proportional integral derivative controller; proportional integral controller; proportional integral derivative controller; Control systems; Discrete wavelet transforms; Laboratories; Motor drives; Neural networks; PD control; Permanent magnet motors; Pi control; Proportional control; Three-term control; Digital signal processor; PI controller; PID controller; interior permanent magnet motor; neural network controller; real-time implementation; vector control; wavelet controller; wavelet transform;
fLanguage
English
Publisher
ieee
Conference_Titel
Electrical and Computer Engineering, 2009. CCECE '09. Canadian Conference on
Conference_Location
St. John´s, NL
ISSN
0840-7789
Print_ISBN
978-1-4244-3509-8
Electronic_ISBN
0840-7789
Type
conf
DOI
10.1109/CCECE.2009.5090245
Filename
5090245
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