• DocumentCode
    3601589
  • Title

    Asymmetrical Duty-Cycle and Phase-Shift Control of a Novel Multiport CLL Resonant Converter

  • Author

    Asa, Erdem ; Colak, Kerim ; Bojarski, Mariusz ; Czarkowski, Dariusz

  • Author_Institution
    Polytech. Sch. of Eng., New York Univ., New York, NY, USA
  • Volume
    3
  • Issue
    4
  • fYear
    2015
  • Firstpage
    1122
  • Lastpage
    1131
  • Abstract
    In this paper, a novel multiport CLL resonant converter with a phase shift and asymmetrical duty-cycle control is analyzed. The power flow can be maintained with the phase shift between ports, whereas the asymmetric duty cycle manages the output voltage at the load terminals. Series connected transformers at the secondary side enable to split the power in each port and reduce the voltage stresses on the switches compared with the parallel connected transformers. Even under the unbalanced input conditions, the power flow between ports can be managed by the central control without any need for communication devices. In order to investigate the power distribution in each port, two different isolated dc sources and a variable load are used. The converter operation is tested at 40, 80, or 120 V inputs, with the output of 200 V at a full power of 1 kW with a maximum efficiency of 97.4%. The experimental results show that the multiport CLL resonant converter with the proposed controller is an appropriate topology for sustainable energy platforms, which are supplied by different types of energy sources, such as photovoltaic, fuel cell, wind, and so on, at various power capacities.
  • Keywords
    load flow control; power distribution; power transformers; resonant power convertors; asymmetrical duty cycle control; multiport CLL resonant converter; phase shift control; power 1 kW; power distribution; power flow; series connected transformers; sustainable energy platforms; two different isolated dc sources; variable load; voltage 120 V; voltage 40 V; voltage 80 V; voltage stress; voltage switches; Bridge circuits; Inverters; Rectifiers; Switches; Topology; Voltage control; Asymmetrical duty cycle control; Asymmetrical duty-cycle control; CLL resonant converter; multi-port; multiport; phase shift;
  • fLanguage
    English
  • Journal_Title
    Emerging and Selected Topics in Power Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    2168-6777
  • Type

    jour

  • DOI
    10.1109/JESTPE.2015.2408565
  • Filename
    7060636