• DocumentCode
    1108949
  • Title

    High-Efficiency Power Conversion System for Kilowatt-Level Stand-Alone Generation Unit With Low Input Voltage

  • Author

    Rong-Jong Wai ; Chung-You Lin ; Rou-Yong Duan ; Yung-Ruei Chang

  • Author_Institution
    Dept. of Electr. Eng. & Fuel Cell Center, Yuan Ze Univ., Chungli
  • Volume
    55
  • Issue
    10
  • fYear
    2008
  • Firstpage
    3702
  • Lastpage
    3714
  • Abstract
    This paper mainly focuses on the development of a high-efficiency power conversion system for kilowatt-level stand-alone generation units with a low output voltage, such as photovoltaic modules, fuel cells, and small-scale wind generators, and it aims at having the same output ac voltage, i.e., 110 Vrms/ 60 Hz as the utility power for the utilization of a stand-alone power supply. This high-efficiency power conversion system includes one high-efficiency high-step-up dc-dc converter and one soft-switching dc-ac current-source inverter. This dc-dc converter is capable of solving the voltage spike problem while the switch is turned off, and it can achieve the objectives of high efficiency and high voltage gain. Because the techniques of soft switching and voltage clamping are used in the dc-ac current-source inverter, the conversion efficiency could greatly be improved. The effectiveness of the designed circuits is verified by experimentation, and the maximum efficiency of the entire high-efficiency power conversion system is over 91% based on the experimental measurements.
  • Keywords
    DC-AC power convertors; DC-DC power convertors; electric power generation; invertors; power conversion; switching convertors; fuel cells; high voltage gain; high-efficiency power conversion system; high-step-up DC-DC converter; kilowatt-level stand-alone generation unit; low input voltage; photovoltaic modules; small-scale wind generators; soft-switching DC-AC current-source inverter; voltage clamping; voltage spike problem; Current-source inverter; current-source inverter; high step up; high step-up; soft switching; stand-alone generation units; voltage clamping;
  • fLanguage
    English
  • Journal_Title
    Industrial Electronics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0046
  • Type

    jour

  • DOI
    10.1109/TIE.2008.921251
  • Filename
    4475520