• DocumentCode
    1535059
  • Title

    Active Power Management of Multihybrid Fuel Cell/Supercapacitor Power Conversion System in a Medium Voltage Microgrid

  • Author

    Ghazanfari, Amin ; Hamzeh, M. ; Mokhtari, H. ; Karimi, Hamid Reza

  • Author_Institution
    Center of Excellence in Power Syst. Manage. & Control, Sharif Univ. of Technol., Tehran, Iran
  • Volume
    3
  • Issue
    4
  • fYear
    2012
  • Firstpage
    1903
  • Lastpage
    1910
  • Abstract
    This paper proposes a hierarchical active power management strategy for a medium voltage (MV) islanded microgrid including a multihybrid power conversion system (MHPCS). To guarantee excellent power management, a modular power conversion system is realized by parallel connection of small MHPCS units. The hybrid system includes fuel cells (FC) as main and supercapacitors (SC) as complementary power sources. The SC energy storage compensates the slow transient response of the FC stack and supports the FC to meet the grid power demand. The proposed control strategy of the MHPCS comprises three control loops; dc-link voltage controller, power management controller, and load current sharing controller. Each distributed generation (DG) unit uses an adaptive proportional resonance (PR) controller for regulating the load voltage, and a droop control strategy for average power sharing among the DG units. The performance of the proposed control strategy is verified by using digital time-domain simulation studies in the PSCAD/EMTDC software environment.
  • Keywords
    distributed power generation; energy storage; fuel cell power plants; hybrid power systems; invertors; power conversion; power distribution control; power supply quality; supercapacitors; voltage control; PSCAD/EMTDC software; active power management; adaptive proportional resonance controller; average power sharing; complementary power source; droop control strategy; load voltage regulation; medium voltage islanded microgrid; medium voltage microgrid; modular power conversion system; multihybrid fuel cell-supercapacitor power conversion system; multihybrid power conversion system; supercapacitor energy storage; time-domain simulation; Adaptation models; DC-DC power converters; Frequency control; Hybrid power systems; Transfer functions; Voltage control; Fuel cell (FC); MV microgrid; multihybrid power conversion system (MHPCS); supercapacitor (SC);
  • fLanguage
    English
  • Journal_Title
    Smart Grid, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1949-3053
  • Type

    jour

  • DOI
    10.1109/TSG.2012.2194169
  • Filename
    6213580