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    • 1. 发明授权
    • Fuel cell vehicle system
    • 燃料电池车系统
    • US08027759B2
    • 2011-09-27
    • US12100161
    • 2008-04-09
    • Hibiki SaekiSatoshi AoyagiYoshinobu Hasuka
    • Hibiki SaekiSatoshi AoyagiYoshinobu Hasuka
    • B60L11/00
    • B60L11/1892B60L11/005B60L11/1887H01M8/04373H01M8/04388H01M8/04559H01M8/04567H01M8/04589H01M8/04626H01M8/04753H01M8/0491H01M16/003H01M2250/20Y02T10/7022Y02T90/32Y02T90/34Y10S903/903Y10S903/907
    • A fuel cell vehicle system includes: a propulsion motor capable of driving a vehicle; a fuel cell which generates electric power by supplying a reactant gas to give an electrochemical reaction; an energy storage device which is charged by a generated output of the fuel cell and regenerative electric power of the propulsion motor; an output control device which controls an output current of the fuel cell; and a control device which calculates the regenerative electric power which can be generated by a regenerative operation of the propulsion motor as well as a chargeable power which can be charged to the energy storage device, controls the output control device so that the output current of the fuel cell is restricted when the chargeable power is less than the regenerative electric power, and controls the output control device so that restriction on the output current of the fuel cell is canceled when the chargeable power is equal to or greater than the regenerative electric power.
    • 燃料电池车辆系统包括:能够驱动车辆的推进电动机; 燃料电池,其通过供给反应气体而产生电力以产生电化学反应; 由燃料电池的产生的输出和推进电动机的再生电力对蓄能装置进行充电; 控制燃料电池的输出电流的输出控制装置; 以及控制装置,其计算能够通过推进电动机的再生运行而产生的再生电力以及可以对能量存储装置充电的可充电功率,控制输出控制装置,使得输出控制装置的输出电流 当可充电功率小于再生电力时,燃料电池受到限制,并且当可充电功率等于或大于再生电力时,控制输出控制装置,使得对燃料电池的输出电流的限制被消除。
    • 5. 发明授权
    • Control apparatus for a fuel cell vehicle
    • 燃料电池车辆用控制装置
    • US06973393B2
    • 2005-12-06
    • US10723935
    • 2003-11-26
    • Yoshinobu HasukaHibiki SaekiSatoshi AoyagiShinji Kato
    • Yoshinobu HasukaHibiki SaekiSatoshi AoyagiShinji Kato
    • H01M8/00B60L11/18H01M8/04G01R31/36
    • B60L11/1892B60L11/1881B60L11/1894Y02T90/34
    • A control apparatus calculates the capacitor maximum power (PCAPU) that can be supplied to a capacitor depending on the detected value of the temperature of the capacitor, and calculates the output power (PFC) of the fuel cell, the real power of the motor (PMOT) that actually powers the drive motor, and the load power (PAC) that actually powers an electrical load, excluding the drive motor. The control apparatus calculates the motor power limiting value (PMOTU), which is the motor power that corresponds to the capacitor maximum power (PCAPU), based on the output power (PFC) of the fuel cell, the load power (PAC) that powers the electrical load, excluding the drive motor, and the capacitor maximum power (PCAPU). The control apparatus output to the output controller a control command that directs the real power of the motor (PMOT) to take the value of the motor power limiting value (PMOTU) in the case that the real power of the motor (PMOT) is larger than the motor power limiting value (PMOTU). The drivability of a fuel cell vehicle is improved while protecting the capacitor.
    • 控制装置根据电容器的温度的检测值,计算能够提供给电容器的电容器最大功率(P SUB CAPU ),并计算出输出功率(P SUB> / SUB>),实际上为驱动电动机供电的电动机的实际功率(P MOT )和实际上为负载功率(P AC ) 为电力负载供电,不包括驱动电机。 控制装置基于输出功率来计算作为与电容器最大功率(P SUB CAPU )对应的电动机功率的电动机功率限制值(P> MOTU< / SUB) (P< SUB>),负载功率(P AC ),不包括驱动电动机和电容器最大功率(P CAPU )。 所述控制装置向所述输出控制器输出用于指示所述电动机的实际功率(P MOT )的控制指令,以取得所述电动机功率限制值(P< MOTU< )在电动机的实际功率大于电动机功率限制值(P> MOTU )的情况下。 燃料电池车辆的驾驶性能得到改善,同时保护电容器。
    • 10. 发明申请
    • Control apparatus for fuel cell vehicle
    • 燃料电池车控制装置
    • US20070129859A1
    • 2007-06-07
    • US11648212
    • 2006-12-29
    • Hibiki SaekiSatoshi AoyagiYoshinobu Hasuka
    • Hibiki SaekiSatoshi AoyagiYoshinobu Hasuka
    • G06F17/00
    • H01M8/04955B60L7/10B60L15/2045B60L58/33B60L58/40H01M8/04373H01M8/04544H01M8/04559H01M8/04567H01M8/04589H01M8/0488H01M8/0491H01M16/006H01M2250/20Y02T10/645Y02T10/7283Y02T90/32Y02T90/34
    • A control apparatus 20 is provided in order to improve the energy efficiency of a vehicle during regeneration by a propulsion motor. At the time of regenerative operation of a propulsion motor 15, calculates the regenerative electric power which can be generated based on the speed of the vehicle or the like, and calculates the chargeable power which can be charged to a capacitor 13 based on the detected value of the terminal voltage of the capacitor 13 or the like. Then, the control apparatus 20, in the case where the chargeable power is greater than the regenerative electric power, sets the fuel cell 11 and the capacitor 13 to a directly connected condition, and outputs to an S/C output controller 17 a power generation command corresponding to the detection value of the terminal voltage of the capacitor 13 which has become the same value as the output voltage of the fuel cell 11, to perform supply of reactant gas in accordance with the power generation command, so that the capacitor 13 is charged by the power generation power of the fuel cell 11 and the regenerative electric power of the propulsion motor 15. In the case where the chargeable power is less than the regenerative electric power, the control apparatus 20 electrically disconnects the fuel cell 11 and the capacitor 13, and prohibits charging of the capacitor 13 by the power generation power of the fuel cell 11.
    • 提供了一种控制装置20,以便通过推进电动机来提高再生期间车辆的能量效率。 在推进电动机15的再生运转时,基于车辆的速度等计算出可以产生的再生电力,并根据检测值计算能够向电容器13充电的充电电力 的电容器13的端子电压等。 然后,控制装置20在充电电力大于再生电力的情况下,将燃料电池11和电容器13设定为直接连接状态,向S / C输出控制器17输出发电 对应于与燃料电池11的输出电压相同的电容器13的端子电压的检测值的指令,根据发电指令进行反应气体的供给,电容器13为 由燃料电池11的发电功率和推进电动机15的再生电力进行充电。 在可充电功率小于再生电力的情况下,控制装置20将燃料电池11和电容器13电断开,并且通过燃料电池11的发电功率来禁止电容器13的充电。