Analysis and design of an isolated single-stage converter achieving power-factor correction and fast regulation

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Abstract

This paper presents the analysis and design of an isolated single-stage converter achieving high-power-factor correction and fast regulation. By using the technique suggested by Wu et al., a buck-boost converter and a flyback converter can be integrated to form the discussed converter. The buck-boost semistage working in the discontinuous conduction mode (DCM) functions as a power-factor corrector, and the flyback semistage operating in the DCM is a voltage regulator which is controlled, theoretically, to be independent of load variation. An approximated small-signal model of the converter operating in the DCM is developed. Design of a peak-current feedback loop with an optimal proportional integral controller is also presented. A prototype is implemented to verify that the analysis and design are effective and feasible.

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Wu, T. F., & Chen, Y. K. (1999). Analysis and design of an isolated single-stage converter achieving power-factor correction and fast regulation. IEEE Transactions on Industrial Electronics, 46(4), 759–767. https://doi.org/10.1109/41.778230

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