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    • 4. 发明授权
    • Wide-node drive system
    • 宽节点驱动系统
    • US08840500B2
    • 2014-09-23
    • US13534460
    • 2012-06-27
    • Goro TamaiAnthony J. CorsettiAlan G. HolmesBrendan M. Conlon
    • Goro TamaiAnthony J. CorsettiAlan G. HolmesBrendan M. Conlon
    • F16H3/44F16H3/72F16H48/20
    • B60K6/365B60K1/02B60K6/445F16H2037/102Y02T10/6239
    • An electro-mechanical drive unit connectable with multiple power sources for launching and propelling a vehicle includes an output member, a stationary member, a gear-train, and a torque-transmitting device. The drive unit also includes a compound planetary gear arrangement having a first, second, third, and fourth junction points. The power sources include a first motor/generator and a second motor/generator. The second motor/generator is operatively connected to the compound planetary gear arrangement at the first junction point via the gear-train and the output member is operatively connected to the compound planetary gear arrangement at the second junction point. Additionally, the first motor/generator is operatively connected to the compound planetary gear arrangement at the fourth junction point. Furthermore, the torque-transmitting device is engageable to ground the third junction point to the stationary member.
    • 可与多个电源连接的用于发射和推进车辆的机电驱动单元包括输出构件,固定构件,齿轮系和扭矩传递装置。 驱动单元还包括具有第一,第二,第三和第四连接点的复合行星齿轮装置。 电源包括第一电动机/发电机和第二电动机/发电机。 第二电动机/发电机经由齿轮系在第一连接点处可操作地连接到复合行星齿轮装置,并且输出构件在第二连接点处可操作地连接到复合行星齿轮装置。 此外,第一电动机/发电机在第四连接点处可操作地连接到复合行星齿轮装置。 此外,转矩传递装置可接合以将第三接合点接地到固定构件。
    • 5. 发明授权
    • Method for starting an engine of a hybrid powertrain
    • 起动混合动力总成发动机的方法
    • US08733481B2
    • 2014-05-27
    • US12729276
    • 2010-03-23
    • Jy-Jen F. SahGoro Tamai
    • Jy-Jen F. SahGoro Tamai
    • B60W10/04B60L9/00
    • B60W20/10B60K6/445B60W10/06B60W10/08B60W20/00B60W30/192F02N5/04G01F19/00Y02T10/48Y02T10/6239Y02T10/6286
    • A method of operating a hybrid powertrain includes commanding an engine start of an engine configured to operate at approximately zero engine speed. A spooling phase includes accelerating the first electric machine with the first machine torque, such that the first electric machine begins rotating. The first machine speed increases in magnitude from zero to non-zero, but engine speed is maintained at approximately zero. The mechanical energy of the rotating first electric machine is stored. A transfer phase includes commanding an increase in magnitude of the first machine torque and decelerating the first electric machine, such that the first machine speed decreases. The stored mechanical energy of the first electric machine is transferred to the engine to increase the engine speed to greater than zero, such that the engine starts.
    • 一种操作混合式动力总成的方法包括命令引擎配置成在大致零发动机速度下操作的发动机起动。 假脱机阶段包括以第一机器转矩加速第一电机,使得第一电机开始转动。 第一台机器速度从零增加到非零,但发动机转速保持在零。 旋转的第一电机的机械能被储存。 传送阶段包括指令第一机器扭矩的大小增加并使第一电机减速,使得第一机器速度降低。 将第一电机的存储的机械能传递到发动机,以将发动机转速提高到大于零,使得发动机起动。
    • 9. 发明授权
    • Anti-rollback control via grade information for hybrid and conventional vehicles
    • 通过混合动力和常规车辆的等级信息进行反卷控制
    • US08090499B2
    • 2012-01-03
    • US10996095
    • 2004-11-23
    • Goro Tamai
    • Goro Tamai
    • B60G17/016
    • B60W30/18118B60W10/02B60W10/06B60W10/08B60W10/184Y10T477/23Y10T477/26Y10T477/27Y10T477/32Y10T477/648
    • A vehicle control system reduces vehicle rollback upon brake release. The control system includes a brake system, a vehicle grade measurement device and a controller that modulates applied brake pressure of the brake system based on a grade measurement of the grade measurement device. The controller actuates brake-hold device communicating with the brake system based on the grade measurement through pulse width modulation. The control system communicates with a motor generator and an engine to provide a start power to the engine upon brake release based on the grade measurement. Fuel injectors of the engine are enabled upon brake release based on the grade measurement. The control system further communicates with a transmission forward clutch to provide selective rotational communication between the transmission and the engine based on the grade measurement.
    • 车辆控制系统减少制动器释放时的车辆回退。 控制系统包括制动系统,车辆等级测量装置和基于等级测量装置的等级测量来调制制动系统的施加的制动压力的控制器。 控制器通过脉冲宽度调制,根据等级测量值来启动与制动系统通信的制动保持装置。 控制系统与电动发电机和发动机通信,以基于等级测量在制动器释放时向发动机提供起动功率。 基于等级测量,制动器释放时启动发动机的燃油喷射器。 控制系统进一步与变速器前进离合器进行通信,以根据档次测量提供变速器和发动机之间的选择性旋转通信。