• DocumentCode
    3150824
  • Title

    Ultracapacitor/ battery hybrid for solar energy storage

  • Author

    Glavin, M.E. ; Hurley, W.G.

  • Author_Institution
    Nat. Univ. of Ireland, Galway
  • fYear
    2007
  • fDate
    4-6 Sept. 2007
  • Firstpage
    791
  • Lastpage
    795
  • Abstract
    All stand alone photovoltaic systems require an energy buffer to bridge the mismatch between available and required energy. Battery technology, chiefly the lead acid battery, is the most popular form of energy storage utilized. Nevertheless in a photovoltaic application, the storage battery generally has the highest life time cost in the system, it has a profound effect on the systems reliability and global performance. Photovoltaic panels are not an ideal source for charging batteries as the output is unreliable and heavily dependent on weather conditions an optimum charge/discharge cycle cannot be guaranteed. Using an ultracapacitor and battery hybrid system it is aimed to prolong the lifetime of the battery, making the overall system more efficient and reliable. The ultracapacitor/battery hybrid system will be controlled by an energy management system (EMS) implemented in LabView. The EMS will implement maximum power point tracking (MPPT) and the chosen battery charging algorithm.
  • Keywords
    lead acid batteries; photovoltaic power systems; power system reliability; solar cells; supercapacitors; thermal energy storage; LabView; battery charging algorithm; battery technology; charge-discharge cycle; energy management system; lead acid battery; maximum power point tracking; photovoltaic panels; photovoltaic systems; solar energy storage; systems reliability; ultracapacitor-battery hybrid; Batteries; Bridges; Costs; Energy storage; Medical services; Photovoltaic systems; Reliability; Solar energy; Solar power generation; Supercapacitors;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Universities Power Engineering Conference, 2007. UPEC 2007. 42nd International
  • Conference_Location
    Brighton
  • Print_ISBN
    978-1-905593-36-1
  • Electronic_ISBN
    978-1-905593-34-7
  • Type

    conf

  • DOI
    10.1109/UPEC.2007.4469050
  • Filename
    4469050