High Step-Up Resonant DC/DC Converter With Balanced Capacitor Voltage for Distributed Generation Systems

  • Son, Sungho
  • Montes, Oscar Andres
  • Junyent-Ferre, Adria
  • Kim, Minsung
Citations

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초록

We propose a high step-up resonant dc-dc converter that can achieve voltage balance of the resonant capacitors in distributed generation systems. By incorporating a switching mechanism on the secondary side, we achieve high step-up voltage gain with a minimum number of devices and without reverse-recovery problem. An active-clamp circuit installed on the primary side suppresses the surge voltage that occurs at switch components, recycles the energy stored in the leakage inductance, and provides an alternate resonant-current path formed by the leakage inductance and the output resonant capacitors. A dual resonance that occurs at the secondary side of the converter is exploited to reduce the turn-OFF current and switching loss significantly, and to achieve high power conversion efficiency. The resonant capacitor voltages remain in balance because the duty cycle of the primary-side switches is always set to 0.5, regardless of the input voltages and load variations. Design and analysis of the proposed converter are presented, and tests using a 400-W experimental prototype verify its superior performance.

키워드

Active clampdual series-resonant converterhigh step-upminimum number of devicesvoltage unbalanceDC-DC CONVERTERACTIVE-CLAMPIMPLEMENTATIONCIRCUIT
제목
High Step-Up Resonant DC/DC Converter With Balanced Capacitor Voltage for Distributed Generation Systems
저자
Son, SunghoMontes, Oscar AndresJunyent-Ferre, AdriaKim, Minsung
DOI
10.1109/TPEL.2018.2857209
발행일
2019-05
유형
Article
저널명
IEEE Transactions on Power Electronics
34
5
페이지
4375 ~ 4387