Title :
Sliding-mode observer for speed-sensorless induction motor drives
Author :
Xepapas, S. ; Kaletsanos, A. ; Xepapas, F. ; Manias, S.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Athens, Greece
Abstract :
A sliding-mode observer for the speed-sensorless direct torque vector control of induction motors is proposed. The observer estimates the motor speed, the rotor flux, the angular position of the rotor flux and the motor torque from measured terminal voltages and currents. The use of the nonlinear sliding-mode technique provides very good performance for both low- and high-speed motor operation and robustness in motor losses and load variations. The proposed observer uses neither a PI controller nor complicated observer gains, thus establishing an easy setup for any type of motor. Also, the convergence of the proposed observer is examined using the Lyapunov theory. Experimental results using a TMS320F240 digital signal processor are presented for low-speed operation (5 Hz), full speed operation (50 Hz), and forward to reverse operation. Finally, the proposed observer is compared with other recently reported model-reference adaptive system techniques.
Keywords :
Lyapunov methods; digital signal processing chips; induction motor drives; machine vector control; microcontrollers; model reference adaptive control systems; nonlinear control systems; observers; robust control; torque control; variable structure systems; 5 Hz; 50 Hz; Lyapunov theory; TMS320F240 digital signal processor; angular position; convergence; forward to reverse operation; high-speed motor operation; load variations; low-speed motor operation; model-reference adaptive system techniques; motor losses; motor speed; motor torque; nonlinear sliding-mode technique; robustness; rotor flux; sliding-mode observer; speed-sensorless direct torque vector control; speed-sensorless induction motor drives;
Journal_Title :
Control Theory and Applications, IEE Proceedings -
DOI :
10.1049/ip-cta:20030882