DocumentCode :
2316532
Title :
Digitally controlled multi-phase electronic current sink
Author :
Wei Jiang ; Shuren Wang ; Shiqi Kan ; Li Xie ; Hashimoto, Shuji
Author_Institution :
Smart Energy Lab., Yangzhou Univ., Yangzhou, China
fYear :
2013
fDate :
22-25 April 2013
Firstpage :
862
Lastpage :
866
Abstract :
In this paper, a digital-controlled multi-phase electronic current sink is proposed. The wide Safe Operation Area (SOA) MOSFETs are used as the power dissipating device, which are regulated to the saturation region by filtered PWM gate signals. Due to the inherent limitation of switching frequency and sampling rate in digital systems, interleaved multi-phase PWM scheme is proposed to provide active current ripple mitigation. The power stage and signal conditioning peripherals are designed and modeled; the digital controller is implemented to provide regulation for constant current and pulsed current sink modes. The digital signal controller dsPIC33FJ64GS606 is used to provide four-phase interleaved high-precision PWM and real time control for the prototype. The experimental test results indicate that the proposed system performs well in the steady-state and dynamic testing, and is applicable to future digitalized testing equipments.
Keywords :
PWM power convertors; digital control; electric current control; power MOSFET; signal conditioning circuits; PWM converter; SOA; active current ripple mitigation; constant current regulation; digital systems; digitalized testing equipments; digitally controlled multiphase electronic current sink; dsPIC33FJ64GS606 digital signal controller; dynamic testing; filtered PWM gate signals; four-phase interleaved high-precision PWM control; interleaved multiphase PWM scheme; power MOSFET; power dissipating device; pulsed current sink modes; real-time control; sampling rate; saturation region; signal conditioning peripherals; steady-state testing; switching frequency; wide safe operation area MOSFET; Logic gates; MOSFET; Power supplies; Pulse width modulation; Switches; Testing; Voltage control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics and Drive Systems (PEDS), 2013 IEEE 10th International Conference on
Conference_Location :
Kitakyushu
ISSN :
2164-5256
Print_ISBN :
978-1-4673-1790-0
Electronic_ISBN :
2164-5256
Type :
conf
DOI :
10.1109/PEDS.2013.6527138
Filename :
6527138
Link To Document :
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