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    • 3. 发明申请
    • PROCESS AMD CONNECTION LAYOUT FOR RECHARCHING BATTERIES HAVING ADHERENT OR SOAKED ELECTROLYTE
    • 过程AMD连接布局用于重新安装具有附加或电解电容器的电池
    • WO2009060248A3
    • 2009-06-25
    • PCT/HU2008000131
    • 2008-11-10
    • BALAZS TAMASHORVATH JOZSEFKINCSES JANOSMOHOS TAMASSZENTIVANYI JANOS
    • BALAZS TAMASHORVATH JOZSEFKINCSES JANOSMOHOS TAMASSZENTIVANYI JANOS
    • H02J7/04H01M10/44
    • H02J7/04H01M10/44
    • The inventive process and connection layout are designed for charging, especially deep- and fast-charging of batteries having adherent or soaked electrolyte on the basis of the Wronski effect. In the process according to the invention, charging of a preliminary tested battery is accomplished by a superposed alternating current that has a magnitude ranging from at least 2.5C to at most 4C. The resonance frequency of the battery is determined through a digital frequency response analysis by applying a white noise current pulse. The waveform of the superposed ac pulses is generated by a Power Factor Control circuitry that charges the resonant circuit of the battery through a power pulse modulator. The core feature of the connection layout according to the invention is that when charging is in progress, the control unit of the main circuitry sets the value of the resonance frequency fo of the battery to be charged with the accuracy of ±2% at every moment, wherein said resonance frequency is defined by a digital frequency response analysing circuitry.
    • 本发明的工艺和连接布局被设计用于基于Wronski效应对具有粘附或浸泡电解质的电池进行充电,特别是深度和快速充电。 在根据本发明的方法中,初步测试电池的充电通过具有从至少2.5℃至最多4C的幅度的叠加交流电来实现。 通过应用白噪声电流脉冲通过数字频率响应分析来确定电池的谐振频率。 叠加的交流脉冲的波形由功率因数控制电路产生,功率因数控制电路通过功率脉冲调制器对电池的谐振电路充电。 根据本发明的连接布局的核心特征是当正在进行充电时,主电路的控制单元以每时刻±2%的精度设​​定要充电的电池的谐振频率fo的值 其中所述谐振频率由数字频率响应分析电路定义。