Title :
Current hysteresis controlled resonant C-dump converter for switched reluctance motor drive
Author :
Yoon, Yong-Ho ; Dae-Hee Ran ; Kim, Se-loo ; Kim, Duck-Kyu ; Won, Chung-Yuen
Author_Institution :
Sungkyunkwan Univ., Su-Won, South Korea
Abstract :
The speed at which the SRM makes a transition from chopping control to single pulse operation, (i.e., low speed to high speed operation). It is unsatisfied with performance at all operational regimes. In this paper, the operational performance of SRM can be improved by using current hysteresis control method. This method maintains a generally flat current waveform. At the high speed, the current chopping capability is lost due to the development of the back-EMF. Therefore SRM operates in single pulse mode. By using zero-current switching and zero-voltage switching technique, the stress of power switches can be reduce in chopping mode. When the commutation from one phase winding to another phase winding, the current can be zero as fast as possible in this period because several times negative voltage of DC-source voltage produce in phase winding. This paper is compared to performance based on conventional C-dump converter topology and the proposed resonant C-dump converter topology. Simulation and experimental results are presented to verify the effectiveness of the proposed circuit.
Keywords :
electric current control; electric potential; hysteresis; machine control; machine windings; reluctance motor drives; switching convertors; SRM; back-EMF; chopping control; converter topology; current hysteresis control method; phase winding; resonant C-dump converter; single pulse operation; switched reluctance motor drive; zero-current switching technique; zero-voltage switching technique; Circuit topology; Commutation; Hysteresis; Reluctance machines; Reluctance motors; Resonance; Stress; Switching converters; Zero current switching; Zero voltage switching;
Conference_Titel :
Power Electronics Specialists Conference, 2004. PESC 04. 2004 IEEE 35th Annual
Print_ISBN :
0-7803-8399-0
DOI :
10.1109/PESC.2004.1355615