DocumentCode :
2984096
Title :
Torque sensorless control of induction motor
Author :
Jezernik, Karel ; Rodiç, Miran
Author_Institution :
FERI, Univ. of Maribor, Maribor
fYear :
2008
fDate :
1-3 Sept. 2008
Firstpage :
2283
Lastpage :
2288
Abstract :
In this paper the torque and speed sensorless induction motor (IM) control is presented. The main idea consists in utilizing the best qualities of the both nonlinear structures of the motor observer and the current controller. Motor observer is based on flux error between modeled and measured quantities. In addition, the rotor flux observer is using combination of the feedforward and feedback terms in order to enhance the sensitivity of the observer. Torque and stator current control as well as the rotor flux observer are based on the sliding mode theory, which results in high degree of robustness towards parameters variation and the external disturbances. Proposed control scheme is implemented on DSP system extended with FPGA where event-driven current controlled modulator is realized. DSP serves for time discrete speed control and observer, while time critical current control is implemented on FPGA. Results demonstrate high efficiency of the proposed estimation and control method.
Keywords :
angular velocity control; fault diagnosis; induction motors; machine control; observers; robust control; rotors; stators; torque control; variable structure systems; DSP system; FPGA; current controller; event-driven current controlled modulator; induction motor; motor observer; rotor flux observer; sliding mode theory; speed sensorless control; stator current control; torque sensorless control; Control systems; Digital signal processing; Feedback; Field programmable gate arrays; Induction motors; Rotors; Sensorless control; Sliding mode control; Stators; Torque control; induction motor; sensorless control; sliding mode control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics and Motion Control Conference, 2008. EPE-PEMC 2008. 13th
Conference_Location :
Poznan
Print_ISBN :
978-1-4244-1741-4
Electronic_ISBN :
978-1-4244-1742-1
Type :
conf
DOI :
10.1109/EPEPEMC.2008.4635603
Filename :
4635603
Link To Document :
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