• DocumentCode
    1153610
  • Title

    Model-Based Control of an Integrated Fuel Cell and Fuel Processor With Exhaust Heat Recirculation

  • Author

    Tsourapas, Vasilis ; Stefanopoulou, Anna G. ; Sun, Jing

  • Author_Institution
    Dept. of Naval Archit. & Marine Eng., Michigan Univ., Ann Arbor, MI
  • Volume
    15
  • Issue
    2
  • fYear
    2007
  • fDate
    3/1/2007 12:00:00 AM
  • Firstpage
    233
  • Lastpage
    245
  • Abstract
    In this paper, we consider the dynamic and controlled operation of an integrated natural gas fuel processor system (FPS), a proton exchange membrane fuel cell (PEM-FC), and a catalytic burner (CB). The FC provides power based on the electrochemical reaction of hydrogen. The FPS generates the hydrogen from natural gas through catalytic partial oxidation (CPOX) and the CB provides the energy for preheating the FPS inlet flows by burning any excess hydrogen from the FC exhaust. The coupling of these three systems poses a challenging optimization and control problem. Optimization is performed to generate the air and fuel flow intake setpoints to the FPS for various load levels. The optimal flow setpoints are used in a static feedforward map that ensures maximum efficiency at steady state. Linear quadratic techniques are then used to develop a controller to mitigate hydrogen starvation in the fuel cell and regulate CPOX reactor temperatures. We show in simulations that the designed observer-based feedback controller, which relies on temperature measurements of two reactors, speeds up the transient response fourfold, as compared to the baseline when the static feedforward controller is employed
  • Keywords
    catalysis; electrochemistry; exhaust systems; feedback; feedforward; fuel processing industries; hydrogen; linear quadratic control; natural gas technology; observers; proton exchange membrane fuel cells; transient response; catalytic burner; catalytic partial oxidation; electrochemical reaction; exhaust heat recirculation; hydrogen; integrated natural gas fuel processor system; linear quadratic techniques; model-based control; observer-based feedback control; optimal flow setpoints; proton exchange membrane fuel cell; static feedforward control; transient response; Biomembranes; Control systems; Fuel cells; Hydrogen; Inductors; Natural gas; Oxidation; Power system modeling; Protons; Temperature control; Dynamics; feedback control; fuel cells (FCs); fuel processor; modeling;
  • fLanguage
    English
  • Journal_Title
    Control Systems Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1063-6536
  • Type

    jour

  • DOI
    10.1109/TCST.2006.886431
  • Filename
    4105950