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    • 1. 发明授权
    • Voltage control on a train system
    • 火车系统的电压控制
    • US06681161B1
    • 2004-01-20
    • US09975121
    • 2001-10-09
    • Susanna P. GordonJohn A. Evans
    • Susanna P. GordonJohn A. Evans
    • G05D100
    • B61L3/006
    • The present invention provides methods for preventing low train voltages and managing interference, thereby improving the efficiency, reliability, and passenger comfort associated with commuter trains. An algorithm implementing neural network technology is used to predict low voltages before they occur. Once voltages are predicted, then multiple trains can be controlled to prevent low voltage events. Further, algorithms for managing inference are presented in the present invention. Different types of interference problems are addressed in the present invention such as “Interference During Acceleration”, “Interference Near Station Stops”, and “Interference During Delay Recovery.” Managing such interference avoids unnecessary brake/acceleration cycles during acceleration, immediately before station stops, and after substantial delays. Algorithms are demonstrated to avoid oscillatory brake/acceleration cycles due to interference and to smooth the trajectories of closely following trains. This is achieved by maintaining sufficient following distances to avoid unnecessary braking/accelerating. These methods generate smooth train trajectories, making for a more comfortable ride, and improve train motor reliability by avoiding unnecessary mode-changes between propulsion and braking. These algorithms can also have a favorable impact on traction power system requirements and energy consumption.
    • 本发明提供了防止低列车电压和管理干扰的方法,从而提高与通勤列车相关联的效率,可靠性和乘客舒适性。 使用实现神经网络技术的算法来预测低电压发生之前。 一旦预测了电压,则可以控制多列以防止低电压事件。 此外,在本发明中给出了用于管理推理的算法。 在本发明中解决了不同类型的干扰问题,例如“加速时干扰”,“干扰近站停止”和“延迟恢复期间的干扰”。 管理此类干扰可避免在加速期间,车站停止之前,以及在实质性延迟之后不必要的制动/加速循环。 证明算法可以避免由于干扰而引起的振荡制动/加速周期,并使紧随其后的列车的轨迹平滑。 这通过保持足够的后续距离来实现,以避免不必要的制动/加速。 这些方法产生平稳的列车轨迹,使乘坐更舒适,并通过避免推进和制动之间的不必要的模式变化来提高列车的运行可靠性。 这些算法也可以对牵引力系统要求和能量消耗产生有利的影响。
    • 2. 发明授权
    • Network hub for a reconfigurable data network having physical transmission media
    • 具有物理传输介质的可重​​新配置数据网络的网络集线器
    • US06666400B2
    • 2003-12-23
    • US10392406
    • 2003-03-19
    • Orland Kermit White, III
    • Orland Kermit White, III
    • G05D100
    • H04B7/18506
    • A data network includes a plurality of network devices spaced apart from one another and distributed at multiple locations, a plurality of cables each coupled to a respective one of said plurality of network devices by a respective one of a plurality of first connectors, and a network hub including a second connector coupled to each of said plurality of cables. The network hub also includes a removable and replaceable termination element that mates with the second connector to provide signal connectivity between selected ones of said plurality of cables. The removable and replaceable termination element couples each of the plurality of cables to another of the plurality of cables such that any signal transmitted on the plurality of cables by the plurality of network devices both enters and exits said network hub at said second connector.
    • 数据网络包括彼此间隔开并分布在多个位置处的多个网络设备,多个电缆,每个电缆通过多个第一连接器中的相应一个耦合到所述多个网络设备中的相应一个网络设备,并且网络 毂包括耦合到所述多个电缆中的每一个的第二连接器。 网络集线器还包括可移除和可替换的终端元件,其与第二连接器配合,以在所述多个电缆中的所选择的电缆之间提供信号连接。 可移动和可替换的终端元件将多个电缆中的每一个耦合到多个电缆中的另一个,使得由多个网络设备在多根电缆上传输的任何信号都在所述第二连接器处进入和离开所述网络集线器。
    • 3. 发明授权
    • Vehicle rollover detection having variable sensitivity
    • 具有灵敏度变化的车辆翻转检测
    • US06654671B2
    • 2003-11-25
    • US10075664
    • 2002-02-15
    • Peter J. Schubert
    • Peter J. Schubert
    • G05D100
    • B60R21/01336B60R21/0132B60R21/0133B60R2021/0018B60R2021/01327
    • A vehicle rollover sensing apparatus and method are provided for detecting a rollover condition of the vehicle. The rollover sensing apparatus includes an angular rate sensor for sensing attitude rate of change of a vehicle and a lateral accelerometer for sensing lateral dynamics of the vehicle. The rollover sensing apparatus also has an integrator for integrating the sensed attitude rate of change signal over a variable time window and producing an attitude angle. The rollover sensing apparatus further includes deployment logic for comparing the attitude angle and attitude rate of change to a pair of variable threshold values with a gray-zone that varies based on time, and for deploying a vehicle overturn condition signal based on the comparison. Sensitivity of the deployment logic is adjusted as a function of the sensed lateral dynamics to enhance rollover deployment during certain driving events.
    • 提供了一种用于检测车辆的翻转状态的车辆翻车传感装置和方法。 翻转感测装置包括用于感测车辆的姿态变化率的角速度传感器和用于感测车辆的横向动力学的横向加速度计。 翻转感测装置还具有积分器,用于将感测到的变化信号姿态变化率在可变时间窗上进行积分并产生姿态角。 翻转感测装置还包括展开逻辑,用于将姿态角和姿态变化率与一对可变阈值进行比较,灰度区域基于时间而变化,并且用于基于该比较部署车辆翻转状态信号。 根据感测到的横向动力学调整部署逻辑的灵敏度,以增强某些驾驶事件期间的翻车部署。
    • 9. 发明授权
    • Network hub for a reconfigurable data network having physical transmission media
    • 具有物理传输介质的可重​​新配置数据网络的网络集线器
    • US06561454B1
    • 2003-05-13
    • US10141024
    • 2002-05-08
    • Orland Kermit White, III
    • Orland Kermit White, III
    • G05D100
    • H04B7/18506
    • A data network includes a plurality of network devices, a plurality of physical. transmission lines each coupled to a respective one of said plurality of network devices, and a network hub coupled to each of said plurality of physical transmission lines. The network hub has a removable and replaceable termination element providing signal connectivity between selected ones of said plurality of transmission lines. In one embodiment, the data network is installed within an aircraft including a fuselage, an empennage connected to the fuselage, a lift-generating surface coupled to the fuselage, and at least one engine for propelling the aircraft.
    • 数据网络包括多个网络设备,多个物理的。 每个耦合到所述多个网络设备中的相应一个网络设备的传输线以及耦合到所述多个物理传输线路中的每一个的网络集线器。 所述网络集线器具有提供所述多个传输线路中所选择的传输线路之间的信号连接性的可拆卸和可替换的终端元件。 在一个实施例中,数据网络被安装在飞机内,包括机身,连接到机身的尾翼,连接到机身的起重机表面以及用于推进飞机的至少一个发动机。
    • 10. 发明授权
    • Railway train control and communication system
    • 铁路列车控制和通信系统
    • US06546318B2
    • 2003-04-08
    • US09804392
    • 2001-03-13
    • Dario BarberisRoberto TioneEric BirotChristian CoulangeDaniel GallavardinDionisios Ouzounis
    • Dario BarberisRoberto TioneEric BirotChristian CoulangeDaniel GallavardinDionisios Ouzounis
    • G05D100
    • B61L15/0036B60T13/665B61L15/0081
    • The communication and control system is for use in a railway train with at least one engine and a plurality of wagons or carriages. This system comprises first and second bi-directional transmission lines which extend along the train; a main control unit installed on the main engine and connected, in this engine, to both the transmission lines and to brake control devices or systems of the train; and a plurality of slave control units, each of which is installed on a respective wagon or carriage and is connected, in the respective carriage or wagon, to both transmission lines, to solenoid valve units associated with pneumatic brake actuators, as well as two sensor devices associated with the wagon or carriage. The main control unit and the slave control units are arranged to talk to one another through the transmission lines according to a serial protocol. The main unit is arranged to transmit brake control signals to the slave units and to receive and acquire information and state signals coming from the slave control units via the transmission lines. The main control unit and the slave control units are arranged to talk to one another at one working frequency on one of the transmission lines and at a second and different working frequency on the other of the transmission lines.
    • 通信和控制系统用于具有至少一个发动机和多个货车或车厢的铁路列车。 该系统包括沿列车延伸的第一和第二双向传输线; 主控制单元安装在主机上并在该发动机中连接到传动线路和列车的制动控制装置或系统; 以及多个从控制单元,每个从控制单元安装在相应的货车或托架上,并且在相应的托架或货车中连接到两个传输线,与与气动制动致动器相关联的电磁阀单元以及两个传感器 与货车或托架相关的设备。 主控制单元和从控制单元被布置成根据串行协议通过传输线相互通信。 主单元布置成将制动控制信号传送到从单元,并通过传输线接收和获取来自从控制单元的信息和状态信号。 主控制单元和从控制单元被布置为在一个传输线上以一个工作频率彼此通信,并且在另一个传输线上以第二和不同的工作频率进行通话。