• DocumentCode
    656308
  • Title

    Multiphase high gain boost converter with switched-capacitor and coupled-inductor

  • Author

    Yuang-Shung Lee ; Wei-Ting Hong ; Tzu-Han Chou

  • Author_Institution
    Dept. of Electr. Eng., Fu Jen Catholic Univ., Taipei, Taiwan
  • fYear
    2013
  • fDate
    3-6 Nov. 2013
  • Firstpage
    320
  • Lastpage
    325
  • Abstract
    This paper proposes a multiphase high gain boost converter with switched-capacitor and coupled inductor. The proposed converter employs an active snubber circuit, which is designed to absorb the transient spike generated by the coupled inductor leakage inductance, to reduce excess voltage stress and the peak to peak pumped capacitor transient current. The snubber circuits are designed to operate zero-voltage switching (ZVS) soft switching that can reduce power switching losses. This design uses multi-phase technology for the high gain boost converters to reduce power losses and save cost. This paper will introduce multiphase technology in the proposed high gain boost converter with the switched-capacitor and coupled inductor. Simulation and experimental results are used to verify validate the design and performance. The 400W multiphase high gain boost converter design was measured a 94.1% efficiency. The designed multiphase conversion architecture with the maximum power reach 1 kW and the average converter efficiency is over 90%.
  • Keywords
    inductors; switched capacitor networks; switching convertors; zero voltage switching; ZVS; active snubber circuit; coupled inductor leakage inductance; excess voltage stress reduction; high gain boost converters; multiphase high gain boost converter; multiphase technology; peak to peak pumped capacitor transient current; power switching losses reduction; soft switching; switched-capacitor; zero-voltage switching; Capacitors; Switching circuits; coupled inductor; interleaved technology; multiphase boost converter; switched capacitor;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Future Energy Electronics Conference (IFEEC), 2013 1st International
  • Conference_Location
    Tainan
  • Print_ISBN
    978-1-4799-0071-8
  • Type

    conf

  • DOI
    10.1109/IFEEC.2013.6687524
  • Filename
    6687524