• DocumentCode
    2969692
  • Title

    Differential flatness based-control of fuel cell/photovoltaic/wind turbine/supercapacitor hybrid power plant

  • Author

    Thounthong, P. ; Sikkabut, S. ; Mungporn, P. ; Sethakul, P. ; Pierfederici, S. ; Davat, B.

  • Author_Institution
    Dept. of Teacher Training in Electr. Eng., King Mongkut´s Univ. of Technol. North Bangkok (KMUTNB), Bangkok, Thailand
  • fYear
    2013
  • fDate
    11-13 June 2013
  • Firstpage
    298
  • Lastpage
    305
  • Abstract
    A renewable energy hybrid power plant, fed by photovoltaic (PV), wind turbine (WT), and fuel cell (FC) sources with a supercapacitor (SC) storage device and suitable for distributed cogeneration applications, is proposed herein. The PV, the WT, and the FC are used as the main source; and the SC functions as an auxiliary source and a short-term storage system for supplying the deficiency power (transient and steady-state) from the main sources. Based on the flatness property for dc grid voltage stabilization, we propose a simple solution to the fast response and stabilization problems in the power system. This is the innovative contribution of this paper. The prototype small-scale power plant implemented was composed of a PEMFC system (1.2 kW, 46 A), a PV array (0.8 kW), a WT (1 kW), and an SC module (100 F, 32 V). Experimental results validate the excellent control algorithm during load cycles.
  • Keywords
    cogeneration; distributed power generation; hybrid power systems; power grids; power system stability; proton exchange membrane fuel cells; renewable energy sources; solar cell arrays; supercapacitors; wind turbines; capacitance 100 F; current 46 A; dc grid voltage stabilization; distributed cogeneration applications; fuel cell source; load cycles; photovoltaic source; power 0.8 kW; power 1 kW; power 1.2 kW; renewable energy hybrid power plant; short-term storage system; supercapacitor storage device; voltage 32 V; wind turbine source; Hybrid power systems; Power conversion; Power generation; Renewable energy sources; Supercapacitors; Voltage control; Fuel cells; photovoltaic; supercapacitor; wind turbine;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Clean Electrical Power (ICCEP), 2013 International Conference on
  • Conference_Location
    Alghero
  • Print_ISBN
    978-1-4673-4429-6
  • Type

    conf

  • DOI
    10.1109/ICCEP.2013.6587005
  • Filename
    6587005