DocumentCode
1567731
Title
A Novel Three-Phase Three-Level Power Factor Correction (PFC) Converter Using Two Single-Phase PFC Modules
Author
Tan, Jingtao ; Li, Yang ; Jiang, Zhiqiang ; Cai, Li ; Ying, Jianping
Author_Institution
Delta Electron. (Shanghai) CO., LTD., Shanghai
fYear
2007
Firstpage
3060
Lastpage
3064
Abstract
In recent years, the research on power factor correction (PFC) circuits for high-power applications has increased for the rigorous harmonic limits. Three-level boost type PFC is a very attractive solution for high power density and high efficiency three-phase preregulator. The major advantage of the three level structures is the reduction of the voltage stress on the power switches, which allows the use of low losses and low cost power semiconductors. A common practice for three-phase high-power PFC is the connection of three single-phase modules to the three-phase AC system to achieve the required output power level. Unity power factor is obtained with single-phase modules, but the cost is high because of the large number of components used in the system. In this paper, based on the above considerations, a novel three-phase power-factor correction scheme using only two single-phase PFC modules is proposed and compared with the conventional one in section II. The control strategy is analyzed in section III in detail. The proposed converter has advantages such as fewer components, lower cost, higher component utilization and so on. At last, experimental results are presented to prove the high reliability and efficiency of the converter.
Keywords
power convertors; power factor correction; high-power applications; power factor correction circuits; power semiconductors; power switches; single-phase PFC modules; single-phase modules; three-level boost type PFC; three-phase AC system; three-phase preregulator; three-phase three-level power factor correction converter; unity power factor; voltage stress reduction; Circuits; Costs; Power factor correction; Power generation; Power semiconductor switches; Power system harmonics; Stress; Thyristors; Topology; Voltage; PFC; three-level;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics Specialists Conference, 2007. PESC 2007. IEEE
Conference_Location
Orlando, FL
ISSN
0275-9306
Print_ISBN
978-1-4244-0654-8
Electronic_ISBN
0275-9306
Type
conf
DOI
10.1109/PESC.2007.4342513
Filename
4342513
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