• DocumentCode
    2292747
  • Title

    Advancements in Ni-MH batteries for high drain rate applications

  • Author

    Linck, François J.

  • Author_Institution
    Saft Rechargeable Battery Syst., Bagnolet, France
  • fYear
    2002
  • fDate
    2002
  • Firstpage
    261
  • Abstract
    Summary form only given. Saft Rechargeable Battery Systems (RBS) has been developing and enhancing battery systems for mobility applications such as electrical bikes, scooters, motor-scooters, cars and trucks. That covers the cells, the battery design, and battery intelligent electronics to monitor charge and discharge. Saft enhanced its Ni-MH technology to deliver high discharge currents of 30 A or 40 A, improved storage efficiency and improved cell design. Electrolyte composition has been improved and quantity optimized for better cycling ability. New separator provides lower internal resistance. Saft´s positive moss electrode with an innovative treatment limits irreversible loss of capacity. The negative electrodes with the edge welding process, combined with high power inner connections, both provide the high current capability for demanding mobility applications. On the battery design sided an efficient pack design, inter cell connections, wiring, proper cooling if required, are also key in delivering high performances. Efficient battery monitoring is crucial when dealing, for instance, with 30 cell batteries, or even more, to avoid cell reversal during discharge, to terminate discharge at the right voltage, to change from one charging mode to another using the right temperature gradient with added cut off backups. It´s key also to manage the different charging steps to optimize battery performances and cycle life. Saft´s proprietary Intelligent Battery Monitoring System (IBMS) provides all these functions, requiring then only a basic charger
  • Keywords
    electric vehicles; electrochemical electrodes; electrolytes; monitoring; nickel; secondary cells; Intelligent Battery Monitoring System; Ni-MH batteries; Saft Rechargeable Battery Systems; battery intelligent electronics; battery monitoring; cars; cell design; cell reversal; cooling; cycling ability; discharge termination; edge welding process; electrical bikes; electrolyte composition; high current capability; high discharge currents; high drain rate applications; high power inner connections; inter cell connections; irreversible loss of capacity; lower internal resistance; motor-scooters; negative electrodes; positive moss electrode; scooters; storage efficiency; trucks; wiring; Batteries; Bicycles; Cooling; Electrodes; Monitoring; Motorcycles; Particle separators; Voltage; Welding; Wiring;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Battery Conference on Applications and Advances, 2002. The Seventeenth Annual
  • Conference_Location
    Long Beach, CA
  • ISSN
    1089-8182
  • Print_ISBN
    0-7803-7132-1
  • Type

    conf

  • DOI
    10.1109/BCAA.2002.986410
  • Filename
    986410