DocumentCode :
1542068
Title :
Experimental Verification of Current-Source Inverter With ZVS Commutation Circuit
Author :
Matsushita, Akihisa ; Takimoto, Kazuyasu ; Suzuki, Kentaro ; Tai, Hiromichi ; Kurosawa, Ryoichi ; Kamiyama, Isao
Author_Institution :
Toshiba Corp., Tokyo, Japan
Volume :
46
Issue :
5
fYear :
2010
Firstpage :
2035
Lastpage :
2045
Abstract :
This paper presents a current-source inverter suitable for high-voltage/high-power motor drives. This inverter uses thyristors as main switching devices and utilizes a zero-voltage-switching (ZVS) commutation circuit. It has the advantages of good motor power factor and self-startability. We have evaluated a test model of the proposed inverter and a motor and verified that the inverter operates at a motor power factor of one and that it can be started even when the motor speed is zero. Moreover, a six-phase synchronous motor was driven by two of these inverters; it was confirmed that they decreased the motor torque ripple and the harmonic component of the voltage source. In addition, we evaluated the operation of the ZVS commutation circuit by simulation and experiment and thus verified that turnoff loss depends mainly on the inductance of the ZVS commutation circuit and not on gate resistance. Moreover, when the switching device turns off the current, its voltage is almost zero. That is, even if the inductance is large, the peak voltage of the switching device is low and switching loss is small. Therefore, the ZVS commutation circuit can be easily composed because it does not need to be of low inductance. These results show that a large-capacity drive system can be easily achieved with the proposed inverter.
Keywords :
commutation; constant current sources; invertors; ZVS commutation circuit; current source inverter; experimental verification; good motor power factor; high-voltage/high-power motor drives; self-startability; thyristors; zero-voltage-switching commutation circuit; Circuit testing; Commutation; Inductance; Inverters; Motor drives; Reactive power; Switching circuits; Synchronous motors; Thyristors; Zero voltage switching; Commutated circuits; load-commutated inverter (LCI); thyristor; zero-voltage-switching (ZVS) commutation circuit;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2010.2059650
Filename :
5512642
Link To Document :
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