Title :
A sensorless speed estimator for the direct torque control of an interior permanent magnet synchronous motor drive
Author :
Rahman, M.F. ; Haque, M.E. ; Zhong, L. ; Nagrial, M.
Author_Institution :
New South Wales Univ., Sydney, NSW, Australia
Abstract :
This paper proposes a completely sensorless interior permanent magnet (IPM) synchronous motor drive with direct torque control, which uses a new speed estimator from the stator flux linkage vector and the torque angle. It is shown that by including the torque angle in the estimation process results in a more accurate transient speed estimator than what is reported in the existing literature. Also, the effect of current measurement error (offset error and scaling error) are analyzed. The offset error causes the torque of a motor to oscillate and these torque ripples deteriorate the performance of the speed estimator. In order to eliminate ripples in the estimated speed, compensation has been made using a programmable cascaded low pass filter. Results from modeling and experiment verify the effectiveness of the sensorless speed estimator and offset error compensator.
Keywords :
compensation; electric current measurement; low-pass filters; machine control; magnetic flux; measurement errors; oscillations; parameter estimation; permanent magnet motors; stators; synchronous motor drives; torque control; compensation; current measurement error; direct torque control; estimation process; interior permanent magnet synchronous motor drive; offset error; offset error compensator; programmable cascaded low pass filter; scaling error; sensorless interior PMSM drive; sensorless speed estimator; stator flux linkage vector; torque angle; torque oscillation; torque ripples; transient speed estimator;
Conference_Titel :
Power Electronics, Machines and Drives, 2002. International Conference on (Conf. Publ. No. 487)
Print_ISBN :
0-85296-747-0
DOI :
10.1049/cp:20020168