Method for managing back-up power source
    3.
    发明公开
    Method for managing back-up power source 有权
    Verfahren zumtemperaturabhängigenLaden einer Hilfsstromquelle welche einer Selbstentladung unterliegt

    公开(公告)号:EP0921620A2

    公开(公告)日:1999-06-09

    申请号:EP98122541.0

    申请日:1998-12-01

    IPC分类号: H02J7/00

    摘要: A method for managing a back-up power source capable of maintaining the discharge capacity of a nickel metal-hydride storage battery for a long-term at a low cost, and is suitable for the management of the back-up power source for the guidance lights, the emergency lights, the information telecommunication systems, and the like is disclosed. The present invention provides a method for managing the back-up power source which uses a nickel metal-hydride storage battery including a positive electrode mainly consisting of nickel oxide, a negative electrode mainly consisting of a hydrogen storage alloy, a separator and an alkaline electrolyte, wherein an intermittent charge is performed on the nickel-metal hydride storage battery, comprising: calculating a self-discharge quantity of the nickel-metal hydride storage battery during idle period of the intermittent charge on the basis of a temperature of the nickel-metal hydride storage battery at the idling; and controlling the charging of the nickel-metal hydride storage battery on the basis of the obtained self-discharge quantities.

    摘要翻译: 一种用于管理能够以低成本长期保持镍氢蓄电池的放电容量的备用电源的方法,并且适合于用于引导的备用电源的管理 灯,应急灯,信息通信系统等。 本发明提供一种管理备用电源的方法,该备用电源使用包括主要由氧化镍构成的正电极的镍氢蓄电池,主要由储氢合金构成的负极,隔板和碱性电解液 其特征在于,对所述镍氢蓄电池进行间歇充电,包括:基于所述镍 - 金属的温度计算所述间歇充电的空闲期间所述镍氢蓄电池的自放电量 氢化物蓄电池处于空转状态; 并根据获得的自放电量控制镍氢蓄电池的充电。

    Nickel-metal hydride secondary battery
    5.
    发明公开
    Nickel-metal hydride secondary battery 有权
    镍金属网Sekundärbatterie

    公开(公告)号:EP1069638A1

    公开(公告)日:2001-01-17

    申请号:EP00112904.8

    申请日:2000-06-19

    IPC分类号: H01M10/34 H01M4/62

    摘要: A nickel-metal hydride secondary battery which comprises positive electrode comprising nickel hydroxide, negative electrodes comprising a hydrogen-absorbing alloy, separators and an alkaline electrolyte, which further comprises a compound silicate. By employing the above construction, the compound silicate reacts with Mn or Al which dissolves out from the negative electrode to inhibit deterioration of electrochemical characteristics of the battery, and thus the life of the battery can be prolonged.

    摘要翻译: 一种镍 - 金属氢化物二次电池,其包含氢氧化镍的正极,包含吸氢合金的负极,隔板和碱性电解质,其还包含复合硅酸盐。 通过采用上述结构,复合硅酸盐与从负极析出的Mn或Al反应,抑制电池的电化学特性的劣化,能够延长电池的使用寿命。

    Method for managing back-up power source
    6.
    发明公开
    Method for managing back-up power source 有权
    Verfahren zur Steuerung einer Hilfsstromquelle

    公开(公告)号:EP0921620A3

    公开(公告)日:2000-03-15

    申请号:EP98122541.0

    申请日:1998-12-01

    IPC分类号: H02J7/00

    摘要: A method for managing a back-up power source capable of maintaining the discharge capacity of a nickel metal-hydride storage battery for a long-term at a low cost, and is suitable for the management of the back-up power source for the guidance lights, the emergency lights, the information telecommunication systems, and the like is disclosed. The present invention provides a method for managing the back-up power source which uses a nickel metal-hydride storage battery including a positive electrode mainly consisting of nickel oxide, a negative electrode mainly consisting of a hydrogen storage alloy, a separator and an alkaline electrolyte, wherein an intermittent charge is performed on the nickel-metal hydride storage battery, comprising: calculating a self-discharge quantity of the nickel-metal hydride storage battery during idle period of the intermittent charge on the basis of a temperature of the nickel-metal hydride storage battery at the idling; and controlling the charging of the nickel-metal hydride storage battery on the basis of the obtained self-discharge quantities.

    摘要翻译: 一种用于管理能够以低成本长期保持镍氢蓄电池的放电容量的备用电源的方法,并且适合于用于引导的备用电源的管理 灯,应急灯,信息通信系统等。 本发明提供一种管理备用电源的方法,该备用电源使用包括主要由氧化镍构成的正电极的镍氢蓄电池,主要由储氢合金构成的负极,隔板和碱性电解液 其特征在于,对所述镍氢蓄电池进行间歇充电,包括:基于所述镍 - 金属的温度计算所述间歇充电的空闲期间所述镍氢蓄电池的自放电量 氢化物蓄电池处于空转状态; 并根据获得的自放电量控制镍氢蓄电池的充电。