Title :
Speed sensorless control of a six-phase induction motor drive using backstepping control
Author :
Rastegar Fatemi, Seyed ; Abjadi, Navid Reza ; Soltani, Jafar ; Abazari, Saed
Author_Institution :
Dept. of Electr. Eng., Islamic Azad Univ., Saveh, Iran
Abstract :
In this study, a direct torque and flux control is described for a six-phase asymmetrical speed and voltage sensorless induction machine (IM) drive, based on non-linear backstepping control approach. First, the decoupled torque and flux controllers are developed based on Lyapunov theory, using the machine two axis equations in the stationary reference frame. In this control scheme, the actual stator voltages are determined from dc-link voltage using the switching pattern of the space vector pulse-width modulation inverter. Then, for a given motor load torque and rotor speed, a so-called fast search method is used to maximise the motor efficiency. According to this method, the rotor reference flux is decreased in the small steps, until the average of real input power to the motor reaches to a minimum value. In addition, a model reference adaptive system-based observer is employed for online estimating of the rotor speed. Finally, the feasibility of the proposed control scheme is verified by simulation and experimental results.
Keywords :
Lyapunov methods; PWM invertors; angular velocity control; induction motor drives; model reference adaptive control systems; nonlinear control systems; observers; phase control; search problems; sensorless machine control; torque control; voltage control; DC-link voltage; IM; Lyapunov theory; direct decoupled torque control; fast search method; flux control; model reference adaptive system-based observer; motor load torque; nonlinear backstepping control approach; rotor reference flux; rotor speed estimation; six-phase asymmetrical speed; six-phase induction motor drive; space vector pulse-width modulation inverter; speed sensorless control; stationary reference frame; stator voltage; voltage sensorless induction machine drive;
Journal_Title :
Power Electronics, IET
DOI :
10.1049/iet-pel.2013.0081