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    • 3. 发明授权
    • Electric train control apparatus
    • 电动火车控制装置
    • US07904216B2
    • 2011-03-08
    • US12852725
    • 2010-08-09
    • Yosuke NakazawaTetsu Tone
    • Yosuke NakazawaTetsu Tone
    • B60L9/18
    • B60L9/22B60L3/0023B60L3/10B60L15/20B60L2200/26B61C15/00Y02T10/645Y02T10/646Y02T10/7275
    • According to one embodiment, an electric train control apparatus having a plurality of electric motors and a plurality of inverters configured to control electric motors, independently of one another, including shaft speed calculating units respectively, and configured to calculate shaft speeds of electric motors, reference speed calculating unit configured to calculate a reference speed from shaft speeds of electric motors, acceleration detection control units configured to calculate torque reduction values from rates at which shaft speeds calculated, slip speed control units configured to reduce torques in accordance with a difference between shaft speeds of electric motors, state monitoring units configured to monitor states of detecting shaft speeds and output state signals, and changeover unit configured to switch control of inverters, between control performed by acceleration detection control units and control performed by slip speed control units, in accordance with state signals received from state monitoring units.
    • 根据一个实施例,一种电动列车控制装置,具有多个电动机和多个逆变器,其被配置为分别彼此独立地控制电动机,包括轴速度计算单元,并且被配置为计算电动机的轴速度,参考 速度计算单元,被配置为从电动机的轴速度计算参考速度;加速度检测控制单元,被配置为从计算出的轴速度的速率计算转矩降低值;配置为根据轴速度之间的差异来减小转矩的滑差速度控制单元 电动机的状态监视单元,被配置为监视轴速度和输出状态信号的状态的状态监视单元;以及转换单元,被配置为根据加速度检测控制单元进行的控制和由滑差速度控制单元执行的控制来切换逆变器的控制, 状态信号 ls从国家监督机构收到。
    • 9. 发明授权
    • Power conversion apparatus
    • 电力转换装置
    • US08531855B2
    • 2013-09-10
    • US13368593
    • 2012-02-08
    • Kyungsoo LeeYosuke Nakazawa
    • Kyungsoo LeeYosuke Nakazawa
    • H02M7/44
    • H02J3/385G05F1/67H02M2001/007Y02E10/58
    • According to one embodiment, an apparatus includes a controller which outputs a signal for controlling ON and OFF of a switch which changes over connection between a second input terminal and the output end of a coil. The controller includes an MPPT control unit which follows a maximum power point with a period based on a zero-cross detection signal of a system voltage based on an input signal acquired by subtracting a value obtained by multiplying a droop gain simulating drooping characteristics, a control unit which outputs a direction value in such a manner that a difference between a reference output from the MPPT control unit and the input signal becomes zero, and a PWM comparator which outputs a PWM signal based on the direction value and a triangular wave voltage.
    • 根据一个实施例,一种装置包括控制器,其输出用于控制开关的ON和OFF的信号,该开关改变第二输入端子和线圈的输出端之间的连接。 该控制器包括MPPT控制单元,该MPPT控制单元基于通过减去通过乘以下垂增益模拟下垂特性而获得的值而获得的输入信号,在基于系统电压的过零检测信号的周期之后跟随最大功率点,控制 单元,其输出方向值,使得来自MPPT控制单元的基准输出与输入信号之间的差为零; PWM比较器,其基于方向值和三角波电压输出PWM信号。