DocumentCode
2852904
Title
Control of Three-phase Power Factor Corrected Rectifier in Balanced and Unbalanced Systems
Author
Wen, Jun ; Smedley, Keyue
Author_Institution
Power Electron. Lab., California Univ., Irvine, CA
Volume
2
fYear
2006
fDate
8-12 Oct. 2006
Firstpage
562
Lastpage
568
Abstract
One-cycle control is a unified constant-frequency control scheme, with which the three-phase rectifier achieves unity power factor and low THD. Previous research has been conducted on the OCC controlled rectifier in both balanced and unbalanced system. The analysis of the rectifier in unbalanced system indicates that although the controller is proposed for balanced system, it also works for the unbalanced system, and the phase currents will be proportional to the non-zero sequence phase voltages under unbalanced conditions. The result is satisfying since the current waveform quality is high and the source voltages have the same load stresses. However, there are still two limitations for the present OCC controller in unbalanced system: first, minimum switching losses can not be ensured, which is contradictory to the vector control goal; second, the present OCC controller will not be able to handle the extreme unbalanced system where one phase voltage is entirely zero. In light of these, this paper aims to improve the present OCC controller´s performance in unbalanced system. By utilizing the non-zero sequence phase voltages for region selection, both limitations are eliminated. The proposed OCC vector controller can cope with all the system conditions, with switching losses always minimized. A 1kW experimental prototype has been built to verify the proposed controller
Keywords
PWM rectifiers; power factor correction; power system control; 1 kW; OCC controlled rectifier; balanced systems; current waveform quality; low THD; nonzero sequence phase voltages; one-cycle control; performance improvement; phase currents; power factor corrected rectifier control; source voltages; three-phase rectifier control; unbalanced systems; unified constant-frequency control scheme; vector control goal; Control systems; Lighting control; Proportional control; Prototypes; Reactive power; Rectifiers; Stress; Switching loss; Voltage control; Zero voltage switching; OCC; PFC; non-zero sequence; unbalanced; vector control;
fLanguage
English
Publisher
ieee
Conference_Titel
Industry Applications Conference, 2006. 41st IAS Annual Meeting. Conference Record of the 2006 IEEE
Conference_Location
Tampa, FL
ISSN
0197-2618
Print_ISBN
1-4244-0364-2
Electronic_ISBN
0197-2618
Type
conf
DOI
10.1109/IAS.2006.256583
Filename
4025269
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