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    • 3. 发明授权
    • Method and device for performing closed-loop or open-loop control of the driving stability of a vehicle
    • 用于执行车辆的驾驶稳定性的闭环或开环控制的方法和装置
    • US09108600B2
    • 2015-08-18
    • US13318952
    • 2010-04-29
    • Bernd HartmannAlfred EckertGeorg RollStefan Fritz
    • Bernd HartmannAlfred EckertGeorg RollStefan Fritz
    • B60T8/1755
    • B60T8/17558B60T8/17551B60T2201/022B60T2201/122
    • The invention relates to a method and a device for performing open-loop or closed-loop control of the driving stability of a vehicle and for avoiding collisions with an object located in the traffic lane. The invention also relates to a closed-loop driving stability controller. The method according to aspects of the invention comprises: determining based on environmental signals whether a critical situation in terms of driving dynamics, in particular an imminent collision, exists, calculating an avoidance path if a critical situation in terms of driving dynamics exists, determining based on a plurality of input variables pressures for individual brakes of the vehicle, and activating preparatory measures of the driving dynamics regulator, in particular dynamic switching over of closed-loop control parameters if the critical situation in terms of driving dynamics exists. The device and the closed-loop driving stability controller are suitable for carrying out the method.
    • 本发明涉及一种用于执行对车辆的驾驶稳定性的开环或闭环控制并且用于避免与位于行车道中的物体的碰撞的方法和装置。 本发明还涉及闭环驱动稳定性控制器。 根据本发明的方面的方法包括:基于环境信号确定是否存在关于驾驶动态特别是即将发生的碰撞的关键情况,如果存在关于驾驶动力学的关键情况,则计算回避路径,基于 对于车辆的单个制动器的多个输入变量压力,以及如果存在关于驾驶动力学的关键情况,则启动驾驶动态调节器的准备措施,特别是闭环控制参数的动态切换。 该装置和闭环驱动稳定控制器适用于执行该方法。
    • 4. 发明申请
    • Method and Device for Controlling an Electrohydraulic Braking System for Motor Vehicles
    • 用于控制汽车电液制动系统的方法和装置
    • US20130080016A1
    • 2013-03-28
    • US13703154
    • 2011-05-31
    • Jurgen BohnGeorg Roll
    • Jurgen BohnGeorg Roll
    • B60T8/176
    • B60T8/176B60T7/042B60T8/326B60T13/662B60T13/686B60T13/745B60T2270/82
    • A method for controlling an electro-hydraulic braking system for motor vehicles, including providing an antilock control function, and a further brake pressure control function which can be activated in a “brake-by-wire” mode. A pressurization device, activated by an electronic control unit can be connected to hydraulically actuated wheel brakes through at least one pressure regulating valve. The pressurization device having a cylinder-piston arrangement with a chamber, the piston of which can be displaced relative to a rest position by an electromechanical actuator. A set pressure value is determined for each wheel brake activating the cylinder-piston arrangement such that a predetermined pre-pressure, which is determined from the set pressure values, is set in the chamber by displacement of the piston.
    • 一种用于控制机动车辆的电动液压制动系统的方法,包括提供防抱死控制功能,以及可以在线控制模式下启动的另外的制动压力控制功能。 通过电子控制单元激活的加压装置可以通过至少一个压力调节阀连接到液压致动的轮式制动器。 加压装置具有气缸 - 活塞装置,其具有室,其​​活塞可通过机电致动器相对于静止位置移位。 对于启动气缸 - 活塞装置的每个车轮制动器确定设定的压力值,使得通过活塞的位移在室内设定由设定的压力值确定的预定的预压力。
    • 8. 发明申请
    • Method for Controlling an Electrohydraulic Braking System and Electrohydraulic Braking System
    • 控制电液制动系统和电液制动系统的方法
    • US20130119752A1
    • 2013-05-16
    • US13810727
    • 2011-07-13
    • Georg RollJurgen BohmJens Jager
    • Georg RollJurgen BohmJens Jager
    • B60T8/176
    • B60T8/176B60T8/326B60T8/3655B60T8/4054B60T8/4072B60T13/745
    • A method and system for controlling an electrohydraulic braking system for a motor vehicle having an antilock braking control function and an electrically controllable pressure generating device having a cylinder-piston arrangement having a hydraulic pressure chamber and a piston displaceable by an electromechanical actuator so that a predetermined pressure can be set in the chamber, and having a number of hydraulically wheel brakes connected to the hydraulic pressure chamber by an electrically actuatable inlet valve and to a pressure medium reservoir by means of an electrically actuatable outlet valve. The cylinder-piston arrangement is actuated in case of antilock controlling at all wheel brake for setting an individual wheel target pressure at each wheel brake, such that the pressure in the hydraulic pressure chamber is set to the greatest wheel target pressure.
    • 一种用于控制具有防抱死制动控制功能的机动车辆的电动液压制动系统的方法和系统,以及具有气缸活塞装置的电可控制压力发生装置,所述气缸活塞装置具有液压室和可由机电致动器移动的活塞, 可以在室中设置压力,并且具有通过可电致动的入口阀连接到液压室的多个液压轮制动器,并且借助于可电动致动的出口阀将压力介质储存器连接到压力介质储存器。 在所有车轮制动器的防抱死控制的情况下,气缸 - 活塞装置被致动以设定每个车轮制动器处的单个车轮目标压力,使得液压室中的压力被设定为最大的车轮目标压力。
    • 10. 发明授权
    • Method for operating a braking system, braking system and motor vehicle having a braking system
    • 用于操作具有制动系统的制动系统,制动系统和机动车辆的方法
    • US08746419B2
    • 2014-06-10
    • US13262532
    • 2010-03-26
    • Georg RollJochen Leideck
    • Georg RollJochen Leideck
    • F16D65/14
    • B60T7/042B60T7/085B60T7/107B60T7/12B60T13/02B60T13/746B60T17/221
    • A method for operating a braking system in a motor vehicle having at least two wheel brakes (54, 56), each of which can be activated by an electromechanical actuator of the self-locking type. Each wheel brake having a locking device for implementing a parking brake functionality, in which the locking device and respective electromechanical actuator is actuated and locked by the locking device when a parking brake function is carried out. A first method step is carried out in which the at least two actuators are actuated in succession and a second method step is carried out in which it is checked whether the at least two actuators have achieved respectively predefined brake application force. In the event of the at least two actuators having achieved the respectively predefined brake application force, the at least two actuators are locked in a third method step.
    • 一种用于操作具有至少两个车轮制动器(54,56)的机动车辆中的制动系统的方法,每个车轮制动器可以由自锁型的机电致动器来启动。 每个车轮制动器具有用于实现驻车制动功能的锁定装置,其中当执行驻车制动功能时,锁定装置和相应的机电致动器由锁定装置致动和锁定。 执行第一方法步骤,其中至少两个致动器被连续地致动,并且执行第二方法步骤,其中检查至少两个致动器是否已经实现预定的制动施加力。 在所述至少两个致动器已经实现了预定义的制动施加力的情况下,在第三方法步骤中锁定所述至少两个致动器。