Title :
Phase resistance estimation for sensorless control of switched reluctance motors
Author_Institution :
Motorola Czech Syst. Labs., Motorola, Roznov, Czech Republic
Abstract :
The determination of phase resistance is a key factor for a number of sensorless position estimation algorithms of switched reluctance (SR) motors. The change of phase resistance during motor operation due to it´s temperature dependency causes error in the position estimation and thus it significantly affects the performance of the drive. An on-the-fly resistance estimation algorithm for SR motors has been developed. The algorithm is based on estimation of flux linkage and its relation to the actual phase current. The developed resistance estimation algorithm has been successfully implemented and tested on a sensorless SR drive. The overall error of the phase resistance estimation was reached in a range of 2% for the low- and mid-speed range. it significantly improves the sensorless position estimation and thus SR drive performance. Since the algorithm requires neither additional sensors nor excessive computational power, it is applicable in real sensorless SR drives.
Keywords :
electric resistance; machine control; magnetic flux; parameter estimation; reluctance motor drives; flux linkage estimation; phase current; phase resistance estimation; position estimation error; resistance estimation algorithm; sensorless control; sensorless position estimation algorithms; switched reluctance motors; temperature dependency; Couplings; Estimation error; Phase estimation; Reluctance motors; Sensorless control; Strontium; Synchronous motors; Temperature dependence; Temperature sensors; Universal motors;
Conference_Titel :
IECON 02 [Industrial Electronics Society, IEEE 2002 28th Annual Conference of the]
Print_ISBN :
0-7803-7474-6
DOI :
10.1109/IECON.2002.1185416