DocumentCode
976206
Title
Parallel Operation of One-Cycle Controlled Three-Phase PFC Rectifiers
Author
Chen, Yang ; Smedley, Keyue Ma
Author_Institution
Univ. of California, Irvine
Volume
54
Issue
6
fYear
2007
Firstpage
3217
Lastpage
3224
Abstract
Parallel operation of three-phase power-factor-corrected (PFC) rectifiers is a critical issue for high-power applications, since it extends the power range to a much higher level and allows modular design. The technical challenges are current sharing and circulating current control among the modules. This paper studies these phenomena within two paralleled rectifiers and proposes a new current-sharing method based on one-cycle control (OCC) with vector operation and bipolar operation. With some minor additions to the original OCC circuit and a simple add-on communication path among the individual modules, the input current is shared and the circulating current is limited, while the OCC advantages, such as constant switching frequency, no multipliers, and simple circuitry, are preserved. Two OCC PFC rectifiers of 2.5 kW each were built and tied together using the proposed parallel operation method. Experiments have demonstrated the simplicity and the effectiveness of this method.
Keywords
electric current control; power factor correction; rectifying circuits; bipolar operation; circulating current control; current-sharing method; one-cycle controlled three-phase PFC rectifiers; parallel operation; power 2.5 kW; power-factor-correction; three-phase rectifiers; vector operation; Circuits; Communication system control; Current control; Electric variables control; Inductors; Power factor correction; Rectifiers; Support vector machines; Switching frequency; Switching loss; Circulating current; current sharing; one-cycle control (OCC); parallel rectifier; power factor correction (PFC); vector operation;
fLanguage
English
Journal_Title
Industrial Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0278-0046
Type
jour
DOI
10.1109/TIE.2007.905917
Filename
4383268
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