• DocumentCode
    1896354
  • Title

    Thermodynamic testing of nickel metal hydride batteries

  • Author

    Tan, Allen ; Goolsby, Michael ; Rennels, Ken

  • Author_Institution
    Sch. of Eng. & Technol., Purdue Univ., West Lafayette, IN, USA
  • fYear
    2001
  • fDate
    2001
  • Firstpage
    473
  • Lastpage
    477
  • Abstract
    Nickel metal hydride (Ni-MH) batteries can be exothermic in both charge and discharge operating regimes. When considering Ni-MH batteries for application in severe operating environments, such as those requiring high-current, rapid discharge operations, the battery temperature is the limiting factor. Battery temperature control during charging can be accomplished by utilizing proper charging algorithms and/or charging systems that incorporate temperature measurement as a control factor. However, during discharge in severe operating conditions where limiting current draw in not possible, a temperature control system must be developed. For electric and hybrid vehicle applications, the temperature control system must have operating characteristics including lightweight and little or no power consumption required. To fully evaluate Ni-MH batteries in high-current discharge operating regimes, researchers at IUPUI first modeled the battery using Inertia(R), a finite element analysis (FEA) software package. Using the FEA results as a basis, a temperature control strategy was developed and a battery pack cooling system designed. As a validation method of the FEA model, bench testing of Ni-MH modules was conducted. This paper reports on the FEA modeling along with the results of the bench testing of the batteries in this severe operating regime
  • Keywords
    cooling; electric vehicles; finite element analysis; nickel; power engineering computing; secondary cells; temperature control; temperature measurement; testing; thermodynamics; Inertia; Ni-MH batteries; battery pack cooling system; battery temperature control; charge operating regimes; discharge operating regimes; electric vehicle applications; finite element analysis software; high-current; high-current discharge operating regimes; hybrid vehicle applications; nickel metal hydride batteries; rapid discharge operations; severe operating environments; severe operating regime; temperature measurement; thermal management; Application software; Batteries; Control systems; Energy consumption; Hybrid electric vehicles; Nickel; Temperature control; Temperature measurement; Testing; Thermodynamics;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electrical Insulation Conference and Electrical Manufacturing & Coil Winding Conference, 2001. Proceedings
  • Conference_Location
    Cincinnati, OH
  • ISSN
    0362-2479
  • Print_ISBN
    0-7803-7180-1
  • Type

    conf

  • DOI
    10.1109/EEIC.2001.965741
  • Filename
    965741