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    • 3. 发明申请
    • VEHICLE HEIGHT ADJUSTMENT APPARATUS
    • 车高调整装置
    • US20150151602A1
    • 2015-06-04
    • US14548762
    • 2014-11-20
    • Aisin Seiki Kabushiki Kaisha
    • Takanori SUZUKIAtsuto OGINO
    • B60G17/056
    • B60G17/056B60G17/017B60G17/0525B60G17/0565B60G2202/152B60G2400/204B60G2400/252B60G2400/952B60G2500/202B60G2500/2021B60G2500/326B60G2800/202
    • A vehicle height adjustment apparatus includes: vehicle height adjustment units respectively provided to correspond to wheels of a vehicle body, and adjusting a vehicle height in response to the supply and discharge of a working fluid; a supply source of the working fluid; opening and closing valves interposed between the vehicle height adjustment units and the supply source; and a control unit adjusting a vehicle height for each of the vehicle height adjustment units to at least one of a first vehicle height suitable for at least one of boarding and deboarding, and a second vehicle height suitable for travelling, wherein when the control unit acquires preparation information indicative of the transition of a preparation state to at least one of boarding and deboarding preparation states, the control unit adjusts the vehicle height adjustment units from the second vehicle height to the first vehicle height.
    • 车辆高度调节装置包括:车辆高度调节单元,其分别设置成对应于车体的车轮,并且响应于工作流体的供给和排出来调整车辆高度; 工作流体的供应源; 插入在车辆高度调节单元和供应源之间的开闭阀; 以及控制单元,将每个所述车辆高度调节单元的车辆高度调整为适合于登机和下车中的至少一个的第一车辆高度和适于行驶的第二车辆高度中的至少一个,其中当所述控制单元获取 指示准备状态转变为登机和脱机准备状态中的至少一个的准备信息,所述控制单元将车高调整单元从第二车高调整到第一车高。
    • 8. 发明授权
    • Kneeling omnibus
    • KNEELING OMNIBUS
    • US5193849A
    • 1993-03-16
    • US677585
    • 1991-03-29
    • Stefan Holzmann
    • Stefan Holzmann
    • B60G17/015B60G17/017B60G17/033B60G17/052
    • B60G17/0523B60G17/0155B60G17/017B60G2202/152B60G2202/412B60G2300/14B60G2400/202B60G2400/252B60G2400/952B60G2500/20B60G2500/2012B60G2500/30B60G2800/20
    • A level control system for an omnibus, especially a low-loading omnibus, having an omnibus body supported on axles and wheel suspension, is comprised of a compressed air system that is self-contained for each axle. The following vertical adjustments are possible: during a stop of the omnibus at a bus stop, the omnibus body is pivoted about a longitudinal median floor level axis for lowering the omnibus body at a passenger boarding side and the opposite side is raised by internally pumping the compressed air from the pneumatic springs of the boarding side to the pneumatic springs on the opposite side at each axle. After the completion of the stop at the bus stop, the compressed air is returned to the pneumatic springs on the boarding side so that the omnibus resumes its normal position. In this manner, the compressed air is kept in a self-contained system and is not lost to the atmosphere. Accordingly, there is no need to provide further compressed air to the system, thus reducing the amount of energy required for operating such a system; the power necessary for the internal pumping or transfer of the compressed air is small in comparison.
    • 一个综合的液位控制系统,特别是一个低负载综合,具有支撑在车轴和车轮悬架上的综合车体,由一个独立的压缩空气系统组成。 以下垂直调整是可能的:在公共汽车站的综合停车期间,综合车身围绕纵向中间楼层轴线枢转,用于降低乘客登机侧的综合车身,并通过内部泵送 压缩空气从登机侧的气动弹簧到各轴上相对侧的气动弹簧。 在公交车站停止完成后,压缩空气返回到登机侧的气动弹簧,使总括恢复正常位置。 以这种方式,压缩空气保持在独立的系统中并且不会损失到大气中。 因此,不需要向系统提供进一步的压缩空气,因此减少了操作这种系统所需的能量的量; 相比之下,压缩空气的内部泵送或传递所需的功率较小。