DocumentCode
461276
Title
A Multi-Cell Variable Frequency Interleaved ZCS Boost Rectifier Digitally Controlled by FPGA
Author
Canesin, C.A. ; Gonçalves, F. A S
Author_Institution
Dept. of Electr. Eng., Sao Paulo Univ.
Volume
2
fYear
2006
fDate
9-13 July 2006
Firstpage
1382
Lastpage
1387
Abstract
This paper presents a multi-cell single-phase high power factor boost rectifier in interleave connection, operating in critical conduction mode, employing a soft-switching technique, and controlled by field programmable gate array (FPGA). The soft-switching technique is based on zero-current-switching (ZCS) cells, providing ZC (zero-current) turn-on and ZCZV (zero-current-zero-voltage) turn-off for the active switches, and ZV (zero-voltage) turn-on and ZC (zero-current) turn-off for the boost diodes. The disadvantages related to reverse recovery effects of boost diodes operated in continuous conduction mode (additional losses, and electromagnetic interference (EMI) problems) are minimized, due to the operation in critical conduction mode. In addition, due to the interleaving technique, the rectifier´s features include the reduction in the input current ripple, the reduction in the output voltage ripple, the use of low stress devices, low volume for the EMI input filter, high input power factor (PF), and low total harmonic distortion (THD) in the input current, in compliance with the IEC61000-3-2 standards. The digital controller has been developed using a hardware description language (VHDL) and implemented using a XC2S200E-SpartanII-E/Xilinx FPGA device, performing a true critical conduction operation mode for all interleaved cells, and a closed-loop to provide the output voltage regulation, like as a pre-regulator rectifier. Experimental results are presented for a implemented prototype with two and with four interleaved cells, 400 V nominal output voltage and 220 Vrms nominal input voltage, in order to verify the feasibility and performance of the proposed digital control through the use of a FPGA device
Keywords
digital control; diodes; electromagnetic interference; field programmable gate arrays; hardware description languages; harmonic distortion; power engineering computing; power factor; power harmonic filters; rectifying circuits; zero current switching; zero voltage switching; 400 V; EMI input filter; FPGA digital control; IEC61000-3-2 standards; THD; VHDL; active switches; boost diodes; continuous conduction mode; electromagnetic interference; field programmable gate array; hardware description language; multicell variable frequency interleaved ZCS boost rectifier; power factor boost rectifier; soft-switching technique; total harmonic distortion; zero-current-switching; zero-current-zero-voltage; Digital control; Diodes; Electromagnetic interference; Field programmable gate arrays; Frequency; Reactive power; Rectifiers; Switches; Voltage control; Zero current switching;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics, 2006 IEEE International Symposium on
Conference_Location
Montreal, Que.
Print_ISBN
1-4244-0496-7
Electronic_ISBN
1-4244-0497-5
Type
conf
DOI
10.1109/ISIE.2006.295674
Filename
4078289
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