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    • 9. 发明申请
    • AC MOTOR DRIVE DEVICE
    • 交流电机驱动装置
    • US20130307462A1
    • 2013-11-21
    • US13981473
    • 2011-03-28
    • Manabu OhashiKazuya Nakamura
    • Manabu OhashiKazuya Nakamura
    • H02P27/06
    • H02P27/06H02M1/32H02P3/22H02P2201/03H02P2201/07Y02P80/116
    • A circuit disconnection element that can open or short-circuit between a power storage element and a step-up/step-down bidirectional chopper circuit is provided in a power storage system, thereby preventing a self-discharge state in a process of charging. Furthermore, at the time of occurrence of an abnormality, the power storage element is detached from other devices including the step-up/step-down bidirectional chopper circuit. Accordingly, an energy loss of the power storage element at the time of power regeneration can be reduced to improve the energy use efficiency. Further, breakage influences such that the power storage element causes breakage in other devices at the time of occurrence of the abnormality can be prevented, thereby enabling to obtain an AC motor drive device having mounted therein a highly safe power storage system.
    • 在蓄电系统中设置有能够在蓄电元件与升压/降压双向斩波电路之间断开或短路的电路断路元件,从而防止充电过程中的自放电状态。 此外,在异常发生时,蓄电元件与包括升压/降压双向斩波电路的其他装置分离。 因此,可以降低功率再生时的蓄电元件的能量损失,提高能量利用效率。 此外,可以防止在发生异常时蓄电元件导致其他装置中的断线的破损,从而能够获得安装有高度安全的蓄电系统的交流电动机驱动装置。
    • 10. 发明申请
    • INVERTER CONTROL SYSTEM
    • 逆变器控制系统
    • US20130278189A1
    • 2013-10-24
    • US13978589
    • 2012-01-11
    • Takashi YamaguchiToru Kakebayashi
    • Takashi YamaguchiToru Kakebayashi
    • H02P21/00
    • H02P21/0085H02M7/53875H02P6/182H02P23/0086H02P27/08H02P2201/07H02P2205/01
    • A LPF extracts DC component of a current detection value of an inverter input current. A subtracting section 4 calculates a difference between a current command value and the DC component of the current detection value. A current controller 5 produces two-phase PWM signals Sa and Sb complementary to each other, from the current difference. Further, an integrating circuit 7 integrates output terminal voltages Vu, Vv and Vw of the inverter to convert the output terminal voltages Vu, Vv and Vw into a magnetic-flux information Φu, Φv and Φw. A logic conversion section 8 converts the magnetic-flux information Φu, Φv and Φw into 120-degree conduction patterns S1′-S6′ to output the 120-degree conduction patterns S1′-S6′. Then, a logic circuit section 9 executes a logic synthesis between the PWM signals Sa and Sb and the 120-degree conduction patterns S1′-S6′ to output gate signals S1-S6.
    • LPF提取逆变器输入电流的电流检测值的DC分量。 减法部分4计算当前指令值与当前检测值的直流分量之差。 电流控制器5根据电流差产生彼此互补的两相PWM信号Sa和Sb。 此外,积分电路7对逆变器的输出端子电压Vu,Vv,Vw进行积分,将输出端子电压Vu,Vv,Vw变换为磁通量信息Phiu,Phiv,Phiw。 逻辑转换部分8将磁通量信息Phiu,Phiv和Phiw转换成120度的导通图案S1'-S6'以输出120度的导通图案S1'-S6'。 然后,逻辑电路部分9执行PWM信号Sa和Sb之间的逻辑合成以及120度导通图形S1'-S6'以输出门信号S1-S6。