DocumentCode :
1087922
Title :
High-Speed Control of IPMSM Drives Using Improved Fuzzy Logic Algorithms
Author :
Uddin, M. Nasir ; Rahman, M. Azizur
Author_Institution :
Dept. of Electr. Eng., Lakehead Univ., Thunder Bay, Ont.
Volume :
54
Issue :
1
fYear :
2007
Firstpage :
190
Lastpage :
199
Abstract :
This paper presents an improved fuzzy logic controller (FLC) for an interior permanent magnet synchronous motor (IPMSM) for high-performance industrial drive applications. In the proposed control scheme for high-speed operations above the rated speed, the operating limits of IPMSM are expanded by incorporating the maximum torque per ampere operation in constant torque region and the flux-weakening operation in constant power region. The power ratings of the motor and the inverter are considered in developing the control algorithm. A new and simple FLC is utilized as a speed controller. The FLC is developed to have less computational burden, which makes it suitable for real-time implementation, particularly at high-speed operating conditions. The complete drive is implemented in real-time using digital signal processor (DSP) controller board DS 1102 on a laboratory 1-hp IPM motor. The efficiency of the proposed control scheme is evaluated through both experimental and computer simulation results. The proposed controller is found to be robust for high-speed applications
Keywords :
angular velocity control; digital signal processing chips; fuzzy control; invertors; machine vector control; magnetic flux; microcontrollers; permanent magnet motors; real-time systems; robust control; synchronous motor drives; DSP controller board; constant torque region; digital signal processor; flux-weakening operation; fuzzy logic controller; high-performance industrial drive; high-speed control; interior permanent magnet synchronous motor drives; inverter; power ratings; real-time control; robust controller; speed controller; vector control; Digital signal processing; Digital signal processors; Fuzzy logic; Industrial control; Inverters; Permanent magnet motors; Process control; Signal processing algorithms; Synchronous motors; Torque control; Flux-weakening (FW); fuzzy logic control; genetic algorithm (GA) and digital signal processor (DSP); hysteresis current controller; interior permanent magnet (IPM) motor; vector control;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2006.888781
Filename :
4084705
Link To Document :
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