DocumentCode
3578384
Title
The discrete-time model of the small signal compensator of the buck converter
Author
Xin-Xiang Lian ; Chao-chyun Chen ; I-Chyn Wey ; Zhi-Qun Cheng
Author_Institution
State Key Lab., Hangzhou Dian Zi Univ., Hangzhou, China
fYear
2014
Firstpage
219
Lastpage
222
Abstract
The converter is a power supply which controls the opening and closing time ratio of the switching tube in the use of modern power and electronic technology to maintain a stable output voltage. The converter generally consists of the composition of IC, MOSFET and Pulse Width Modulation (PWM). With the development and innovation of power electronic technology, converter technology has been also constantly innovating. Currently, the converter, with miniaturization and high efficiency, has been widely applied to almost all electronic equipment and is indispensable in the rapid development of the electronic information industry nowadays. This study focuses on the differences between the discrete-time model of the converter working at a fixed frequency and the continue-time model. The buck converter in the discrete-time model is based on the continue-time model. The closed loop includes an A/D converter, a pulse width modulator and a compensator. The design methods of both models are different but the parameters of the components used in the design are the same. In the final simulation results, the accuracy of the two methods is confirmed.
Keywords
MOSFET; analogue-digital conversion; discrete time systems; power convertors; power supply circuits; pulse width modulation; semiconductor device models; A/D converter; MOSFET; PWM; buck converter; discrete-time model; electronic equipment; electronic information industry; power electronic technology; power supply; pulse width modulation; small signal compensator; switching tube; Computational modeling; Control systems; Design methodology; Integrated circuit modeling; Load modeling; Power supplies; Transfer functions;
fLanguage
English
Publisher
ieee
Conference_Titel
Communication Problem-Solving (ICCP), 2014 IEEE International Conference on
Print_ISBN
978-1-4799-4246-6
Type
conf
DOI
10.1109/ICCPS.2014.7062257
Filename
7062257
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