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    • 3. 发明授权
    • Battery management system and battery simulator
    • 电池管理系统和电池模拟器
    • US6016047A
    • 2000-01-18
    • US968376
    • 1997-11-12
    • Petrus H.L. NottenHendrik J. BergveldWanda S. Kruijt
    • Petrus H.L. NottenHendrik J. BergveldWanda S. Kruijt
    • G01R31/36H01M10/48H02J7/00
    • H01M10/48G01R31/3651G01R31/3675G01R31/3624G01R31/3662
    • A battery management system 100 comprises input means 102 for receiving input signals, such as current or voltage, which represent a physical quantity of a battery. In operation, processing means 105 of the battery management system 100 calculate a physical quantity of the battery, such as the State of Charge, based on the input signals by using an electrochemical/physical model of the battery. The model includes a representation of a main electrochemical storage reaction, whose behaviour is calculated in dependence on a battery temperature. The processing means 105 calculates the battery temperature based on a temperature model of a temperature development in the battery. The battery management system 100 comprises output means 104 for outputting an output signal which is derived from a state of the electrochemical storage reaction. The battery management system 100 is, advantageously, used in a smart battery 10 or a battery charger/discharger 200. The model is, advantageously, also used in a battery simulator.
    • 电池管理系统100包括用于接收表示电池的物理量的诸如电流或电压的输入信号的输入装置102。 在操作中,电池管理系统100的处理装置105通过使用电池的电化学/物理模型,基于输入信号来计算诸如充电状态的电池的物理量。 该模型包括主要电化学储存反应的表示,其行为根据电池温度计算。 处理装置105基于电池中的温度显现的温度模型来计算电池温度。 电池管理系统100包括用于输出从电化学存储反应的状态导出的输出信号的输出装置104。 电池管理系统100有利地用于智能电池10或电池充电器/放电器200.该模型有利地还用于电池模拟器中。