Title :
A speed observer for speed sensorless control of induction motor
Author :
Kai, Sun ; Yanlei, Zhao
Author_Institution :
Sch. of Electr. & Electron. Eng., Shandong Univ. of Technol., Zibo, China
Abstract :
This paper proposes a novel speed sensorless control strategy for induction motor drives based on active-disturbance rejection controller. Based on the field-oriented control technique, the dynamic model of q-axis current is a first order nonlinear state equation including synchronous speed and rotor speed. The synchronous speed and rotor speed is regarded as the internal disturbance of q-axis current. According to the active-disturbance rejection controller theory (ADRC), the system uncertainties and disturbance could be estimated and compensated instantaneously. Once the disturbance including rotor speed is estimated in real-time, rotor speed is also observed from it. With the help of the extended state observer (ESO) and state error feedback control law (NLSEF), the speed observer proposed in this paper realizes the disturbance compensation accurately without the knowledge of the exact system parameters. Simulation results show that the rotor speed can be accurately estimated from 0r/min to rated speed with load or not. A good dynamic and static performance of the sensorless vector control system is achieved by this method.
Keywords :
compensation; induction motor drives; nonlinear equations; observers; rotors; sensorless machine control; state feedback; velocity control; active-disturbance rejection controller; disturbance compensation; extended state observer; field-oriented control; first order nonlinear state equation; induction motor drives; q-axis current; rotor speed; sensorless vector control system; speed observer; speed sensorless control; state error feedback control law; synchronous speed; system disturbance; system parameter; system uncertainty; Control systems; Error correction; Feedback control; Induction motor drives; Induction motors; Nonlinear dynamical systems; Nonlinear equations; Rotors; Sensorless control; Uncertainty; active disturbance rejection controller; induction motor; sensorless control; speed observer; vector control;
Conference_Titel :
Future Computer and Communication (ICFCC), 2010 2nd International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-5821-9
DOI :
10.1109/ICFCC.2010.5497639