Title :
Sensorless Direct Torque Control for Electrically Excited Synchronous Motor Based on Injecting High-Frequency Ripple Current Into Rotor Winding
Author :
Yangzhong Zhou ; Shipeng Long
Author_Institution :
Dept. of Electr. Eng. & Autom., Fuzhou Univ., Fuzhou, China
Abstract :
A novel rotor position angle estimator is proposed to achieve zero and very low operation speed for sensorless direct torque-controlled electrically excited synchronous motor (EESM) drive. First, high-frequency ripple current is injected into rotor winding, and second, using closed-loop torque control, high-frequency component is injected into electromagnetic torque to produce high-frequency stator current only in d-axis direction. At last, the rotor position angle is estimated with phase-locked loop principle. The stator flux and electromagnetic torque are calculated with stator flux current model and estimated rotor position angle, and then a sensorless direct torque-controlled EESM drive is constructed with estimated flux and torque. The experimental results show that the proposed sensorless EESM drive system can operate at zero and very low speed.
Keywords :
closed loop systems; phase locked loops; sensorless machine control; synchronous motor drives; torque control; EESM drive; closed-loop torque control; d-axis direction; electrically excited synchronous motor; electrically excited synchronous motor drive; electromagnetic torque; high-frequency ripple current injection; phase-locked loop principle; rotor position angle estimator; rotor winding; sensorless direct torque control; stator flux current model; Electromagnetics; Hafnium; Rotors; Stator windings; Synchronous motors; Torque; Direct torque control (DTC); electrically excited synchronous motor (EESM); rotor high-frequency (HF) ripple current; sensorless;
Journal_Title :
Energy Conversion, IEEE Transactions on
DOI :
10.1109/TEC.2014.2360991