• DocumentCode
    1783132
  • Title

    Different purpose design strategies and techniques to improve the performance of a Dual Active Bridge with phase-shift control

  • Author

    Rodriguez, Alex ; Vazquez, A. ; Lamar, D.G. ; Hernando, M.M. ; Sebastian, J.

  • Author_Institution
    Grupo de Sist. Electron. de Alimentacion (SEA), Univ. de Oviedo, Gijon, Spain
  • fYear
    2014
  • fDate
    22-25 June 2014
  • Firstpage
    1
  • Lastpage
    10
  • Abstract
    This paper addresses the performance of the bidirectional Dual Active Bridge (DAB) converter. One of the advantages of the DAB is the possibility to achieve Zero Voltage Switching (ZVS) operation in all the switches of this converter. However, the ZVS operation range can be lost for light loads, especially if high voltage is required in at least one of the DAB ports and the phase-shift control is used to regulate the power processed by the converter. Theoretically simple averaged model is presented for the DAB converter. Using the study presented in this paper, the boundaries of ZVS operation can be easily evaluated. The proposed models and analysis of the ZVS boundaries allow the proposal and evaluation of two different design strategies with different purposes: on the one hand, increasing the ZVS operation range and, on the other, improving efficiency at full load. Moreover, some techniques are presented for increasing the ZVS operation range and improving the efficiency of the DAB at full load (both using phase-shift control) employing the aforementioned analysis to obtain certain design criteria and conclusions. Finally, the proposed models, design strategies and techniques to improve the performance of the DAB are experimentally tested using a 1kW prototype with input and output voltages of 48V and 400V, respectively.
  • Keywords
    DC-DC power convertors; phase control; switching convertors; zero voltage switching; DAB converter; DAB ports; ZVS operation range; bidirectional DC-DC power converters; bidirectional dual active bridge converter; design strategy; phase-shift control; power 1 kW; power regulation; switches; voltage 400 V; voltage 48 V; zero voltage switching; Bridge circuits; Capacitance; Equations; Inductance; Mathematical model; Transistors; Zero voltage switching;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Control and Modeling for Power Electronics (COMPEL), 2014 IEEE 15th Workshop on
  • Conference_Location
    Santander
  • Type

    conf

  • DOI
    10.1109/COMPEL.2014.6877204
  • Filename
    6877204