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    • 4. 发明授权
    • Multi-battery system for high voltage applications with proportional power sharing
    • 用于具有比例功率共享的高压应用的多电池系统
    • US07944662B2
    • 2011-05-17
    • US12259781
    • 2008-10-28
    • Steve CarknerAhmed Abdelsamie
    • Steve CarknerAhmed Abdelsamie
    • H02H3/20H02H3/24H02J7/00
    • H02J7/0013H02J7/0021H02J2007/0067
    • A multi-battery system comprises a circuit having a circuit positive terminal and a circuit negative terminal. At least two batteries are provided to combine to deliver required system power. The batteries are connected to a protection circuit, an energy storage device, a system output voltage sensor and a logic gate. The protection circuit generates a protection signal and the voltage sensor generates an enabling signal that are fed into the logic gate as true signals to generate a true control signal. The true control signal causes the energy storage device to discharge. The digital enabling signal for each of the circuits is time-shifted by a time “t” so that at any time one of the circuits is discharging and one of the at least two circuits is charging during said time “t”.
    • 多电池系统包括具有电路正极端子和电路负极端子的电路。 提供至少两个电池组合以提供所需的系统功率。 电池连接到保护电路,储能装置,系统输出电压传感器和逻辑门。 保护电路产生保护信号,并且电压传感器产生馈送到逻辑门中的使能信号作为真实信号以产生真实的控制信号。 真正的控制信号使能量存储装置放电。 每个电路的数字使能信号被时移“t”,使得在任何时候,其中一个电路正在放电,并且至少两个电路中的一个在所述时间“t”期间正在充电。
    • 5. 发明申请
    • MULTI-BATTERY SYSTEM FOR HIGH VOLTAGE APPLICATIONS WITH PROPORTIONAL POWER SHARING
    • 用于具有比例功率共享的高电压应用的多电池系统
    • US20100103579A1
    • 2010-04-29
    • US12259781
    • 2008-10-28
    • Steve CarknerAhmed Abdelsamie
    • Steve CarknerAhmed Abdelsamie
    • H02H3/20
    • H02J7/0013H02J7/0021H02J2007/0067
    • A multi-battery system for high-voltage applications with proportional power sharing comprises a circuit having a circuit positive and a circuit negative terminal. At least two batteries are provided to combine to deliver required system power. The batteries are connected to a protection circuit, energy storage means, system output voltage sensing means and a logic gate. Protection means generates a protection signal and the voltage sensing means generates an enabling signal that are fed into the logic gate as true signals to generate a true control signal. The true control signal causes the energy storage means to discharge. The digital enabling signal for each of the circuits is time-shifted by a time “t” so that at any time one of the circuits is discharging and one of the at least two circuits is charging during said time “t”.
    • 用于具有比例功率共享的高压应用的多电池系统包括具有电路正极和电路负极端子的电路。 提供至少两个电池组合以提供所需的系统功率。 电池连接到保护电路,能量存储装置,系统输出电压检测装置和逻辑门。 保护装置产生保护信号,并且电压感测装置产生馈送到逻辑门中的使能信号作为真实信号以产生真实的控制信号。 真正的控制信号使能量存储装置放电。 每个电路的数字使能信号被时移“t”,使得在任何时候,其中一个电路正在放电,并且至少两个电路中的一个在所述时间“t”期间正在充电。