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    • 1. 发明申请
    • VEHICLE DRIVE TRAIN CONTROL METHOD AND SYSTEM
    • 车辆驾驶控制方法与系统
    • US20150105992A1
    • 2015-04-16
    • US14382376
    • 2012-03-09
    • Lena LarssonJan ÖbergFilip Alm
    • Lena LarssonJan ÖbergFilip Alm
    • B60W20/00B60W30/18B60K6/12B60K28/16
    • B60W20/19B60K6/12B60K23/0808B60K28/16B60W30/18027B60W2520/26B60W2540/18B60W2550/148B60W2710/083B60W2710/207
    • A vehicle traction system includes a first traction wheel forming part of a first propulsion system including a mechanical drive train, a second traction wheel forming part of a second propulsion system including a hydraulic pump for powering a hydraulic motor, one sensor indicating a take-off condition, and a control unit for controlling the second propulsion unit. The control unit is programmed to automatically detect a take-off condition by the sensor and send an input to the control unit that a take-off condition is fulfilled, automatically provide a traction force from the second propulsion system in response to the indication that there is a take-off condition of the vehicle present and an indication that a traction is or will be provided by the first traction system, and automatically control the second propulsion unit by the control unit in dependence of the manually controlled torque from the first propulsion unit.
    • 车辆牵引系统包括形成第一推进系统的一部分的第一牵引轮,该第一牵引轮包括机械传动系,第二牵引轮形成第二推进系统的一部分,该第二牵引轮包括用于为液压马达供电的液压泵,一个传感器,指示起飞 条件和用于控制第二推进单元的控制单元。 控制单元被编程为通过传感器自动检测起飞状态,并向控制单元发送一个满足起飞条件的输入,响应于第二推进系统的指示,自动提供牵引力 是存在车辆的起飞状况,以及由第一牵引系统提供或将要提供牵引力的指示,并且根据来自第一推进单元的手动控制的扭矩自动地由控制单元控制第二推进单元 。
    • 3. 发明授权
    • Transmission control system in vehicles
    • 车辆变速箱控制系统
    • US08701807B2
    • 2014-04-22
    • US13058207
    • 2008-08-29
    • Hans StervikJan Öberg
    • Hans StervikJan Öberg
    • B60K7/00
    • B60W20/30B60K6/48B60L15/2054B60L2240/486B60L2240/507B60W10/02B60W10/06B60W10/08B60W10/11B60W20/00B60W30/18027Y02T10/6221Y02T10/6286Y02T10/645Y02T10/72Y02T10/7275
    • An Electronic Control Unit (ECU), and a method and a computer program product are provided for the control of a drive train for a hybrid vehicle, and a drive train including such a control device is also provided. The hybrid vehicle includes an upstream located Internal Combustion Engine (ICE) which is connected to an Electronic Motor/Generator (EMG) via a Master Clutch (MC). The EMG is connected to the wheels via a Mechanical Transmission (MT) including synchronization. The ECU is programmed to control the MC and the MT when shifting from a generating mode, in which the ICE is powering the EMG at or near standstill, to a driving mode in such a way that at least a part of the inertial energy liberated when retarding the EMG in order to synchronize the rotational speed of the EMG and the MT is transferred to the wheels by using the synchronization in the MT to retard the EMG and transfer of power to the wheels.
    • 提供电子控制单元(ECU)以及用于混合动力车辆的传动系的控制的方法和计算机程序产品,并且还提供包括这种控制装置的传动系。 混合动力车辆包括通过主离合器(MC)连接到电动机/发电机(EMG)的上游位置的内燃机(ICE)。 EMG通过包括同步的机械传动(MT)连接到车轮。 ECU被编程为控制MC和MT,当从其中ICE将静电或处于静止状态的EMG供电到发电模式时,控制MC和MT,使得至少一部分惯性能量释放时​​, 通过使用MT中的同步来延迟EMG以使EMG和MT的转速同步转移到车轮,以延迟EMG并将动力传递给车轮。
    • 6. 发明授权
    • Vehicle drive train control method and system
    • 车辆传动系统控制方法及系统
    • US09272703B2
    • 2016-03-01
    • US14382376
    • 2012-03-09
    • Lena LarssonJan ÖbergFilip Alm
    • Lena LarssonJan ÖbergFilip Alm
    • B60T7/12G05D1/00G06F7/00G06F17/00B60W20/00B60W30/18B60K23/08B60K6/12B60K28/16
    • B60W20/19B60K6/12B60K23/0808B60K28/16B60W30/18027B60W2520/26B60W2540/18B60W2550/148B60W2710/083B60W2710/207
    • A vehicle traction system includes a first traction wheel forming part of a first propulsion system including a mechanical drive train, a second traction wheel forming part of a second propulsion system including a hydraulic pump for powering a hydraulic motor, one sensor indicating a take-off condition, and a control unit for controlling the second propulsion unit. The control unit is programmed to automatically detect a take-off condition by the sensor and send an input to the control unit that a take-off condition is fulfilled, automatically provide a traction force from the second propulsion system in response to the indication that there is a take-off condition of the vehicle present and an indication that a traction is or will be provided by the first traction system, and automatically control the second propulsion unit by the control unit in dependence of the manually controlled torque from the first propulsion unit.
    • 车辆牵引系统包括形成第一推进系统的一部分的第一牵引轮,该第一牵引轮包括机械传动系,第二牵引轮形成第二推进系统的一部分,该第二牵引轮包括用于为液压马达供电的液压泵,一个传感器,指示起飞 条件和用于控制第二推进单元的控制单元。 控制单元被编程为通过传感器自动检测起飞状态,并向控制单元发送一个满足起飞条件的输入,响应于第二推进系统的指示,自动提供牵引力 是存在车辆的起飞状况,以及由第一牵引系统提供或将要提供牵引力的指示,并且根据来自第一推进单元的手动控制的扭矩自动地由控制单元控制第二推进单元 。
    • 8. 发明授权
    • Multi-vehicle arrangement for heavy haulage
    • 多车辆重载运输
    • US09004205B2
    • 2015-04-14
    • US14126408
    • 2011-06-14
    • Jan ÖbergNiklas Öberg
    • Jan ÖbergNiklas Öberg
    • A01B71/06B62D53/00B60K5/08B60W50/00B60W30/184
    • B62D53/00B60K5/08B60W30/1843B60W50/0098B60W2050/0006B60W2300/12B60W2300/14B60Y2200/44
    • A multi-vehicle arrangement for heavy haulage includes at least a first tractor unit mechanically connected with a second tractor unit, wherein each tractor unit forms a separately drivable tractor unit including a driver cab), a digital communication device, steering wheels, a braking system, and a power train comprising a power source, a friction clutch, and an automatic transmission, where the friction clutch is arranged to be disengaged or engaged for drive torque transmission from the power source to the automatic transmission, a digital communication link is provided between the tractor units by the digital communication devices, and a control system of the first tractor unit is arranged to control at least a clutch load of the friction clutch of each of the first and second tractor units for the purpose of reducing the risk of over-heating of any of the friction clutches during engagement or disengagement of the friction clutches.
    • 用于重运输的多车辆装置包括至少一个与第二牵引车单元机械连接的第一牵引车单元,其中每个牵引车单元形成包括驾驶室的单独驱动的拖拉机单元,数字通信装置,方向盘,制动系统 以及包括电源,摩擦离合器和自动变速器的动力传动系,其中所述摩擦离合器布置成脱离或接合以用于从所述动力源到所述自动变速器的驱动转矩传递,在所述动力传动系之间提供数字通信链路, 通过数字通信装置的牵引车单元和第一牵引车单元的控制系统被布置成用于控制第一和第二拖拉机单元中的每一个的摩擦离合器的至少离合器负载,以减少过载的风险, 在摩擦离合器的接合或分离过程中加热任何摩擦离合器。
    • 9. 发明申请
    • TRANSMISSION CONTROL SYSTEM IN VEHICLES
    • 车辆传动控制系统
    • US20110137505A1
    • 2011-06-09
    • US13058207
    • 2008-08-29
    • Hans StervikJan Öberg
    • Hans StervikJan Öberg
    • B60K6/387F16D48/06
    • B60W20/30B60K6/48B60L15/2054B60L2240/486B60L2240/507B60W10/02B60W10/06B60W10/08B60W10/11B60W20/00B60W30/18027Y02T10/6221Y02T10/6286Y02T10/645Y02T10/72Y02T10/7275
    • An Electronic Control Unit (ECU), and a method and a computer program product are provided for the control of a drive train for a hybrid vehicle, and a drive train including such a control device is also provided. The hybrid vehicle includes an upstream located Internal Combustion Engine (ICE) which is connected to an Electronic Motor/Generator (EMG) via a Master Clutch (MC). The EMG is connected to the wheels via a Mechanical Transmission (MT) including synchronization. The ECU is programmed to control the MC and the MT when shifting from a generating mode, in which the ICE is powering the EMG at or near standstill, to a driving mode in such a way that at least a part of the inertial energy liberated when retarding the EMG in order to synchronize the rotational speed of the EMG and the MT is transferred to the wheels by using the synchronization in the MT to retard the EMG and transfer of power to the wheels.
    • 提供电子控制单元(ECU)以及用于混合动力车辆的传动系的控制的方法和计算机程序产品,并且还提供包括这种控制装置的传动系。 混合动力车辆包括通过主离合器(MC)连接到电动机/发电机(EMG)的上游位置的内燃机(ICE)。 EMG通过包括同步的机械传动(MT)连接到车轮。 ECU被编程为控制MC和MT,当从其中ICE将静电或接近静止状态的EMG供电到发电模式时,控制MC和MT,使得至少一部分惯性能量在 通过使用MT中的同步来延迟EMG以使EMG和MT的转速同步转移到车轮,以延迟EMG并将动力传递给车轮。
    • 10. 发明申请
    • WHEEL-STEERED VEHICLE
    • 车轮转向车
    • US20130264136A1
    • 2013-10-10
    • US13993349
    • 2010-12-17
    • Lena LarssonJan Öberg
    • Lena LarssonJan Öberg
    • B60K6/00
    • B60K6/00B62D12/00B62D21/186B62D53/00B62D53/045
    • A wheel-steered vehicle includes a frame and steerable wheels on at least one front axle, wherein the frame includes a front frame section including the at least one front axle and a rear frame section including at least one rear axle, the front and rear frame sections being arranged along a longitudinal direction and being connected by at least a first pivot joint wherein the at least first pivot joint has a first pivot axis oriented in the longitudinal direction, and wherein the wheels on the at least one front axle include a separate drive unit for each steerable wheel on the at least one front axle.
    • 车轮转向车辆包括在至少一个前轴上的框架和可转向轮,其中所述框架包括前框架部分,所述前框架部分包括所述至少一个前轴和包括至少一个后轴的后框架部分,所述前框架和所述后框架 部分沿纵向布置并且通过至少第一枢转接头连接,其中所述至少第一枢转接头具有沿纵向方向定向的第一枢转轴线,并且其中所述至少一个前轴上的车轮包括单独的驱动 在至少一个前轴上的每个可转向轮的单元。