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    • 5. 发明申请
    • Propulsion System for All-Wheel Drive Motor Vehicles
    • 全轮驱动机动车推进系统
    • US20100170737A1
    • 2010-07-08
    • US12729343
    • 2010-03-23
    • Tim Christopher MeissnerJohann FuchsRalf SchwarzJohann MaerklChristian Meixner
    • Tim Christopher MeissnerJohann FuchsRalf SchwarzJohann MaerklChristian Meixner
    • B60K17/348
    • B60K23/04B60K17/3462B60K17/3465B60K17/35B60K23/0808
    • The invention relates to a propulsion system for all-wheel drive motor vehicles, having a device for propulsion distribution to the front and the rear differential which transmit the drive output to the wheels assigned at the time, and with a device for coupled, variable distribution of the propulsion forces in the transverse and longitudinal directions of the vehicle depending on the operating situation of the vehicle for influencing the driving behavior, especially for improving the driving agility and driving stability. In the process the rear differential (18) is combined with an overriding drive (22), by means of which the drive torques can be shifted to the rear wheels (20) in alternation in the transverse direction of the vehicle, the rpm ratio or rpm error being dictated by means of the overriding drive (22) at the design point so that at a given curve radius which is assigned to the design point and which does not correspond to the narrowest curve, a reversal of the direction of the rotational speed difference takes place and thus the torque is not shifted to the wheel on the outside of the curve. By means of the propulsion distribution device (24, 26; 44, 46; 52) the drive torques can be shifted in alternation between the front differential (14) and rear differential (18) in the longitudinal direction of the vehicle.
    • 本发明涉及一种用于全轮驱动机动车辆的推进系统,其具有用于推进分配到前和后差速器的装置,该装置将驱动输出传递到当时分配的车轮,并且具有用于耦合的可变分配的装置 取决于车辆的运行状况,特别是为了提高驾驶敏捷性和行驶稳定性,车辆的横向和纵向方向上的推进力。 在该过程中,后差速器(18)与超控驱动器(22)组合,借助于此,驱动扭矩可以在车辆的横向方向上交替地移动到后轮(20),转速比或 rpm误差是由设计点上的超控驱动器(22)所规定的,使得在给定的设计点的给定曲线半径处,不符合最窄曲线的旋转速度的方向反转 发生差异,因此扭矩不会转移到曲线外侧的车轮上。 通过推进分配装置(24,26; 44,46; 52),驱动扭矩可以在车辆的纵向方向上在前差速器(14)和后差速器(18)之间交替地移动。
    • 6. 发明申请
    • Propulsion system for all-wheel drive motor vehicles
    • 全轮驱动汽车推进系统
    • US20070221425A1
    • 2007-09-27
    • US11727088
    • 2007-03-23
    • Tim Christopher MeissnerJohann FuchsRalf SchwarzJohann MarklChristian Meixner
    • Tim Christopher MeissnerJohann FuchsRalf SchwarzJohann MarklChristian Meixner
    • B60K17/34
    • B60K23/04B60K17/3462B60K17/3465B60K17/35B60K23/0808
    • The invention relates to a propulsion system for all-wheel drive motor vehicles, having a device for propulsion distribution to the front and the rear differential which transmit the drive output to the wheels assigned at the time, and with a device for coupled, variable distribution of the propulsion forces in the transverse and longitudinal directions of the vehicle depending on the operating situation of the vehicle for influencing the driving behavior, especially for improving the driving agility and driving stability. In the process the rear differential (18) is combined with an overriding drive (22), by means of which the drive torques can be shifted to the rear wheels (20) in alternation in the transverse direction of the vehicle, the rpm ratio or rpm error being dictated by means of the overriding drive (22) at the design point so that at a given curve radius which is assigned to the design point and which does not correspond to the narrowest curve, a reversal of the direction of the rotational speed difference takes place and thus the torque is not shifted to the wheel on the outside of the curve. By means of the propulsion distribution device (24, 26; 44, 46; 52) the drive torques can be shifted in alternation between the front differential (14) and rear differential (18) in the longitudinal direction of the vehicle.
    • 本发明涉及一种用于全轮驱动机动车辆的推进系统,其具有用于推进分配到前和后差速器的装置,该装置将驱动输出传递到当时分配的车轮,并且具有用于耦合的可变分配的装置 取决于车辆的运行状况,特别是为了提高驾驶敏捷性和行驶稳定性,车辆的横向和纵向方向上的推进力。 在该过程中,后差速器(18)与超控驱动器(22)组合,借助于此,驱动扭矩可以在车辆的横向方向上交替地移动到后轮(20),转速比或 rpm误差是由设计点上的超控驱动器(22)所规定的,使得在给定的设计点的给定曲线半径处,不符合最窄曲线的旋转速度的方向反转 发生差异,因此扭矩不会转移到曲线外侧的车轮上。 通过推进分配装置(24,26; 44,46; 52),驱动扭矩可以在车辆的纵向方向上在前差速器(14)和后差速器(18)之间交替地移动。
    • 8. 发明授权
    • Method for compensating variations of a wheel speed sensor
    • 补偿车轮速度传感器变化的方法
    • US06446018B1
    • 2002-09-03
    • US09424310
    • 2000-05-12
    • Rolf IsermannPeter ScheererOliver NellesRalf Schwarz
    • Rolf IsermannPeter ScheererOliver NellesRalf Schwarz
    • G01P1100
    • G01P3/489
    • A method of compensating inaccuracies in a wheel speed sensor wherein signal-forming elements are arranged on a sensor wheel and wherein a determined angle is allocated to a given number of signal-forming elements to determine a wheel speed, and wherein the wheel speed is determined by evaluating the time during which the wheel rotates around the angle, wherein a correction factor which is included in the determination of the wheel rotational speed is memorized with respect to each element to compensate for variations of the signal-forming elements and/or the positioning of the elements, and the correction factors are updated during the driving operation, wherein updating is performed so that the non-corrected wheel speed measured by the sensor is compared with a reference value of the wheel speed established by means of a calculating model, and the correction factor is updated in dependence of this comparison.
    • 一种用于补偿车轮速度传感器中的不准确度的方法,其中信号形成元件布置在传感器轮上,并且其中将确定的角度分配给给定数量的信号形成元件以确定车轮速度,并且其中确定车轮速度 通过评估车轮围绕角度旋转的时间,其中包括在确定车轮转速的校正因子相对于每个元件被存储以补偿信号形成元件的变化和/或定位 并且在驾驶操作期间更新校正因子,其中执行更新以使得由传感器测量的非校正车轮速度与通过计算模型建立的车轮速度的参考值进行比较,以及 根据该比较更新校正因子。
    • 9. 发明授权
    • Method for applying defined operating forces
    • 施加定义的操作力的方法
    • US06435625B1
    • 2002-08-20
    • US09509727
    • 2000-08-23
    • Ralf SchwarzRolf Isermann
    • Ralf SchwarzRolf Isermann
    • B60T1366
    • B60T13/74
    • The invention relates to a process and control circuits for generating defined actuating forces for a brake that is actuated electrically by means of an actuator or electric motor, wherein a first relationship exists between the actuator position and the torque generated by the actuator when the brake is applied and a second relationship exists between the actuator position and the torque generated by the actuator when the brake is released, defining such relationships make it possible to determine the actuating forces occurring during operation without any additional sensors. For this purpose, the present invention proposes that the actuator torques resulting from the first and second relationships be evaluated for determining the efficiency.
    • 本发明涉及一种用于产生通过致动器或电动机电动致动的制动器的限定致动力的过程和控制电路,其中当制动器为制动器时致动器位置和由致动器产生的转矩之间存在第一关系 并且当制动器被释放时,致动器位置和由致动器产生的扭矩之间存在第二关系,限定这种关系使得可以确定在操作期间发生的致动力而没有任何附加的传感器。 为此,本发明提出了评估由第一和第二关系产生的致动器扭矩以确定效率。
    • 10. 发明授权
    • Propulsion system for all-wheel drive motor vehicles
    • 全轮驱动汽车推进系统
    • US08419577B2
    • 2013-04-16
    • US12729343
    • 2010-03-23
    • Tim Christopher MeissnerJohann FuchsRalf SchwarzJohann MaerklChristian Meixner
    • Tim Christopher MeissnerJohann FuchsRalf SchwarzJohann MaerklChristian Meixner
    • B62D11/06
    • B60K23/04B60K17/3462B60K17/3465B60K17/35B60K23/0808
    • The invention relates to a propulsion system for all-wheel drive motor vehicles, having a device for propulsion distribution to the front and the rear differential which transmit the drive output to the wheels assigned at the time, and with a device for coupled, variable distribution of the propulsion forces in the transverse and longitudinal directions of the vehicle depending on the operating situation of the vehicle for influencing the driving behavior, especially for improving the driving agility and driving stability. In the process the rear differential (18) is combined with an overriding drive (22), by means of which the drive torques can be shifted to the rear wheels (20) in alternation in the transverse direction of the vehicle, the rpm ratio or rpm error being dictated by means of the overriding drive (22) at the design point so that at a given curve radius which is assigned to the design point and which does not correspond to the narrowest curve, a reversal of the direction of the rotational speed difference takes place and thus the torque is not shifted to the wheel on the outside of the curve. By means of the propulsion distribution device (24, 26; 44, 46; 52) the drive torques can be shifted in alternation between the front differential (14) and rear differential (18) in the longitudinal direction of the vehicle.
    • 本发明涉及一种用于全轮驱动机动车辆的推进系统,其具有用于推进分配到前和后差速器的装置,该装置将驱动输出传递到当时分配的车轮,并且具有用于耦合的可变分配的装置 取决于车辆的运行状况,特别是为了提高驾驶敏捷性和行驶稳定性,车辆的横向和纵向方向上的推进力。 在该过程中,后差速器(18)与超控驱动器(22)组合,借助于此,驱动扭矩可以在车辆的横向方向上交替地移动到后轮(20),转速比或 rpm误差是由设计点上的超控驱动器(22)所规定的,使得在给定的设计点的给定曲线半径处,不符合最窄曲线的旋转速度的方向反转 发生差异,因此扭矩不会转移到曲线外侧的车轮上。 通过推进分配装置(24,26; 44,46; 52),驱动扭矩可以在车辆的纵向方向上在前差速器(14)和后差速器(18)之间交替地移动。