• DocumentCode
    1371577
  • Title

    Voltage Control and Active Power Management of Hybrid Fuel-Cell/Energy-Storage Power Conversion System Under Unbalanced Voltage Sag Conditions

  • Author

    Hajizadeh, Amin ; Golkar, Masoud Aliakbar ; Feliachi, Ali

  • Author_Institution
    Dept. of Electr. & Comput. Eng., K.N. Toosi Univ. of Technol., Tehran, Iran
  • Volume
    25
  • Issue
    4
  • fYear
    2010
  • Firstpage
    1195
  • Lastpage
    1208
  • Abstract
    This paper concentrates on the control of hybrid fuel-cell (FC)/energy-storage distributed generation (DG) systems under voltage sag in distribution systems. The proposed control strategy makes hybrid DG system work properly when a voltage disturbance occurs in distribution system, and it stays connected to the main grid. To distribute the power between dc power sources and stabilize the dc-link power, a Lyapunov-based neuro-fuzzy control strategy has been developed. This controller determines the supercapacitor power that should be generated according to the amount of available energy in dc-link. Also, current control strategies for the FC converter (boost) and supercapacitor converter (buck-boost converter) are designed by proportional-integral and sliding-mode control consequently. Moreover, a complementary control strategy for voltage source converter based on positive and negative symmetrical components is presented to investigate the voltage sag ride-through and voltage control capability. The hybrid system is studied under unbalance voltage sag condition. Simulation results are given to show the overall system performance including active power control and voltage sag ride-through capability of the hybrid DG system.
  • Keywords
    distributed power generation; electric current control; energy storage; fuel cell power plants; hybrid power systems; power control; power conversion; power distribution control; power supply quality; supercapacitors; voltage control; active power control; active power management; buck boost converter; current control; distributed generation systems; hybrid fuel cell-energy storage power conversion system; supercapacitor converter; unbalanced voltage sag conditions; voltage control capability; Batteries; Converters; Mathematical model; Supercapacitors; Voltage control; Voltage fluctuations; Control; energy storage; fuel cell (FC); hybrid system; smart grid; voltage sag;
  • fLanguage
    English
  • Journal_Title
    Energy Conversion, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-8969
  • Type

    jour

  • DOI
    10.1109/TEC.2010.2062516
  • Filename
    5623336