DocumentCode :
1774549
Title :
FPGA-based digital-controlled power converter designed with universal input meeting 80 plus platinum efficiency code and standby power code for sever power applications
Author :
Yen-Shin Lai ; Kung-Min Ho
Author_Institution :
Center for Power Electron. Technol., Nat. Taipei Univ. of Technol., Taipei, Taiwan
fYear :
2014
fDate :
18-21 May 2014
Firstpage :
3942
Lastpage :
3949
Abstract :
This paper contributes to the design and control of digital-controlled power converter meeting platinum efficiency code and standby power code for sever power applications. Hardware design, control methods and software implementation based upon FPGA will be presented. First, design of hardware and controller is presented, and followed by the loss analysis of power converter to provide a systematic approach to meeting the platinum efficiency code. A feed-forward control for PFC stage with wide range input voltage is presented to provide a constant bandwidth despite of input voltage variation. Two control modes for PSFB converter are presented to meet standby power code. Software implementation based upon FPGA is then included. Experimental results of FPGA-based digital-controlled power converter are presented. It will be shown the standby power is less than 0.5W and light load efficiency is improved to go up to more than 90% for both low line and high line input voltage. Moreover, it will be confirmed that the platinum efficiency code can be met under 20%, 50% and 100% load conditions. These results fully support the claims and contributions of this paper.
Keywords :
bridge circuits; control engineering computing; digital control; feedforward; field programmable gate arrays; power engineering computing; power factor correction; switching convertors; voltage control; FPGA-based digital-controlled power converter; PSFB converter; control methods; feedforward control; hardware design; input voltage variation; loss analysis; phase-shift full-bridge converter; platinum efficiency code; power 0.5 W; power factor corrector; software implementation; standby power code; switching power converters; universal input meeting; Bandwidth; Digital control; Hardware; Radio frequency; Software; Switches; Phase-shift Full-bridge Converter; Power Factor Corrector; Server Power; Standby Control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics Conference (IPEC-Hiroshima 2014 - ECCE-ASIA), 2014 International
Conference_Location :
Hiroshima
Type :
conf
DOI :
10.1109/IPEC.2014.6870066
Filename :
6870066
Link To Document :
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