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    • 3. 发明授权
    • Regulation method for a controllable energy absorber
    • 可控能量吸收器的调节方法
    • US08615348B2
    • 2013-12-24
    • US13696233
    • 2011-04-01
    • Gernot ElsensohnStefan BattloggJürgen Pösel
    • Gernot ElsensohnStefan BattloggJürgen Pösel
    • B60R21/00B60R21/05B60R21/203B60R25/21B62D1/10B62D1/16B62D1/18B62D1/184B62D1/189B62D1/19B62D1/20B60R16/027
    • B62D1/192
    • The invention relates to a method for regulating the current flow of a coil that controls the viscosity of a magnetorheological fluid of a controllable energy absorber in a steering system for a motor vehicle, wherein during an accident the energy absorber acts as a hydraulic damper between two parts movable with respect to one another, whose damping force is determined by the current flow through the magnetic coil, wherein the following steps are provided: the relative velocity between a first part of the steering column movable with the steering wheel and a second part of the steering column fixed to the vehicle body is determined continuously or at intervals, the acceleration required for the braking from the measured relative velocity at standstill up to the end of the travel path is calculated, the current flow is calculated from the calculated acceleration in such a way that the value of the acceleration is approximately reached during the further travel of the parts movable with respect to one another.
    • 本发明涉及一种用于调节线圈的电流的方法,该线圈控制用于机动车辆的转向系统中的可控能量吸收器的磁流变流体的粘度,其中在事故期间,能量吸收器用作两个 相对于彼此可移动的部件,其阻尼力由通过电磁线圈的电流流量确定,其中提供以下步骤:转向柱的第一部分与方向盘可移动的相对速度和第二部分 固定在车体上的转向柱是连续地或间隔地确定的,从停止直到行进路径终点的测量相对速度计算制动所需的加速度,根据计算的加速度计算出当前流量 在可移动部件的进一步行进期间大致达到加速度值的方式 相互尊重
    • 4. 发明授权
    • Vehicle security system
    • 车辆安全系统
    • US5539377A
    • 1996-07-23
    • US28660
    • 1993-03-09
    • John A. Dillon
    • John A. Dillon
    • B60R25/04B60R25/20B60R25/21B60R25/10
    • B60R25/21B60R25/04B60R25/2009
    • Vehicle security protection system provides anti-theft security system for the voluntary vehicle vacate situation, regardless of whether the engine is running. When a thief trips the armed system, the engine ignition circuit is instantaneously and continuously broken at the vehicle's engine ignition module. The system is difficult to hot-wire or to reset. An anti-hijack security protection system is also provided which can interface with the anti-theft system. Either system can be "armed" regardless of engine status. However, the user must be in the vehicle before arming the anti-hijack system because the door/courtesy light circuit is used as the trigger circuit for engine kill. A time delay is provided in the anti-hijack mode to cause the thief to commit to public actions and to give the owner time to escape from the hijack scene. In either mode, when the system is tripped, the fuel gauge indicates an empty tank condition.
    • 车辆安全保护系统为自动车辆空置情况提供防盗安全系统,无论发动机是否运行。 当小偷跳闸时,发动机点火电路在车辆的发动机点火模块上瞬间断续。 系统难以热线或重置。 还提供了可与防盗系统连接的防劫持安全防护系统。 无论发动机状态如何,任一系统都可以“布防”。 然而,用户必须在装备反劫持系统之前在车辆中,因为门/礼貌灯电路被用作用于发动机被击毙的触发电路。 在反劫持模式下提供时间延迟,使小偷承诺采取公开行动,并让拥有者有时间逃离劫机场景。 在任一模式下,当系统跳闸时,燃油表指示空箱状态。
    • 6. 发明授权
    • Unattended-vehicle engine-idling system
    • 无人值守车辆发动机空转系统
    • US09132805B1
    • 2015-09-15
    • US14263351
    • 2014-04-28
    • FORD GLOBAL TECHNOLOGIES, LLC
    • Daniel M. KingThomas L. MillerKevin T. HilleScott A. WatkinsJames E. Kaminske
    • B60R25/04B60R25/23B60R25/06B60R25/21B60R25/10
    • B60R25/04B60R25/06B60R25/1001B60R25/21B60R25/23B60R2025/0415
    • An unattended-vehicle engine-idling system controls a vehicle powertrain in a non-motive mode with the engine running. An ignition switch operables with a removable ignition key. A control circuit has multiple states including a PREARMED state which is entered when the powertrain is in the motive mode and the user generates a manual activation signal. An ARMED state is entered when the transmission is in Park and holds an ignition switch status signal at RUN. An ACTIVE state is entered when the ignition switch is moved to the Accessory or Off positions or the key is removed. The powertrain is switched to non-motive mode and the switch status signal stays at RUN. A DISARMED state is entered in response to a manual deactivation signal generated independently of the ignition switch. In the DISARMED state, the ignition switch status signal corresponds with the ignition switch position, thereby turning off the engine.
    • 无人值守车辆发动机怠速系统以发动机运转的非动力模式控制车辆动力系。 点火开关可用可拆卸的点火钥匙进行操作。 控制电路具有多个状态,包括当动力系处于动力模式时输入的PREARMED状态,并且用户产生手动启动信号。 当变速器处于停车状态时,进入ARMED状态,并在点火开关状态信号处于RUN状态。 当点火开关移动到附件或关闭位置或钥匙被移除时,进入ACTIVE状态。 动力总成切换到非动力模式,开关状态信号保持在RUN状态。 响应于独立于点火开关产生的手动去激活信号而输入DISARMED状态。 在DISARMED状态下,点火开关状态信号与点火开关位置对应,从而关闭发动机。
    • 9. 发明授权
    • Vehicle inhibitor with override system and method
    • US10766457B2
    • 2020-09-08
    • US16158291
    • 2018-10-11
    • Reinhold Mueller
    • Reinhold Mueller
    • B60R25/22B60R25/21
    • Aspects of the present disclosure generally pertain to a system and method for overriding a vehicle inhibitor. This disclosure may be useful for providing an emergency override function for vehicle loan repayment enforcement systems that have wireless user interface modules, and that have become lost or inoperable when needed to generate an emergency override signal. Further, the present disclosure addresses this problem while mitigating additional system cost and additional components. This disclosure includes a method of providing an emergency override function for vehicle loan repayment enforcement systems that have wireless user interface modules, and that have become lost or inoperable when needed to generate an emergency override signal. Further this disclosure includes a method of providing a disablement override function for vehicle loan repayment enforcement systems, wired or wireless, that allows vehicle operation past the grace period in those locations where complete disablement may be limited.