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    • 74. 发明申请
    • Vehicular Occupant Sensing Techniques
    • 车载乘员感知技术
    • US20080143085A1
    • 2008-06-19
    • US12036423
    • 2008-02-25
    • David S. BreedWendell C. JohnsonWilbur E. DuVall
    • David S. BreedWendell C. JohnsonWilbur E. DuVall
    • B60R21/015
    • B60R21/01516B60R21/0152B60R21/0153
    • Vehicular apparatus and method for determining a characteristic of an object that may be located on a seat of the vehicle includes emitters, each emitting a beam along a path on which the object may be located, each path being in a different direction, receivers, each receiving beams emitted from the array of emitters that are reflected from the object when present in the seat, and a processor coupled to the emitters and the receivers for determining time-of-flight of each reflected and received beam between emission of the beam from the emitters and reception of the beam at the receivers. The processor determines one or more characteristics of the object based on the determined time-of-flight of each reflected and received beam, taken either individually or in combination.
    • 用于确定可能位于车辆座椅上的物体的特性的车辆装置和方法包括发射器,每个发射器沿着可以位于其上的路径发射光束,每个路径处于不同的方向,每个路径各自接收 接收从存在于座椅中的从物体反射的发射器阵列发射的光束;以及耦合到发射器和接收器的处理器,用于确定每个反射和接收光束的发射时间 发射器和接收器处的光束的接收。 处理器基于确定的每个反射和接收波束的飞行时间单独地或组合地确定对象的一个​​或多个特性。
    • 75. 发明申请
    • System and Method for In-Vehicle Communications
    • 车载通信系统与方法
    • US20080129475A1
    • 2008-06-05
    • US11940428
    • 2007-11-15
    • David S. BreedWilbur E. DuVallWendell C. Johnson
    • David S. BreedWilbur E. DuVallWendell C. Johnson
    • B60R21/01
    • B60R21/01516B60R21/0152B60R21/01534B60R21/01536B60R21/01538B60R2021/01088G07B15/063G07C5/008G07C5/085G08G1/205
    • Method for in-vehicle communications during use of the vehicle, in which a first, data-processing component is arranged on the vehicle, at least one second component is arranged on a non-rotating part of the vehicle, each second component being a sensor arranged to measure a property of the vehicle or a component thereof or an actuator arranged to control a system, subsystem or other component of the vehicle, and the first and second components wirelessly communicate with one another. When the second component is a sensor, it wirelessly transmits data about the measured property and the first component receives the data wirelessly from the second component and processes the received data. When the first component is an actuator, it processes data relating to control of the second component and generates and wirelessly transmits signals to the second component to control the system, subsystem or other component of the vehicle.
    • 在车辆使用期间的车载通信方法,其中第一数据处理部件布置在车辆上,至少一个第二部件布置在车辆的非旋转部分上,每个第二部件是传感器 布置成测量车辆或其部件的属性或布置成控制车辆的系统,子系统或其他部件的致动器,并且第一和第二部件彼此无线地通信。 当第二组件是传感器时,它无线地传输关于测量属性的数据,并且第一组件从第二组件无线地接收数据并处理接收到的数据。 当第一部件是致动器时,它处理与第二部件的控制相关的数据,并且生成并无线地将信号发送到第二部件以控制车辆的系统,子系统或其他部件。
    • 80. 发明授权
    • Wireless sensing and communication system of roadways
    • 道路无线传感与通信系统
    • US06758089B2
    • 2004-07-06
    • US10190805
    • 2002-07-08
    • David S. BreedWilbur E. DuVallWendell C. Johnson
    • David S. BreedWilbur E. DuVallWendell C. Johnson
    • E01C2300
    • G08G1/096716G07C5/008G08G1/096758G08G1/096783
    • Wireless sensing and communication system including sensors located on the vehicle, in the roadway or in the vicinity of the vehicle or roadway and which provide information which is transmitted to one or more interrogators in the vehicle by a wireless radio frequency mechanism. Power to operate a particular sensor is supplied by the interrogator or the sensor is independently connected to either a battery, generator, vehicle power source or some source of power external to the vehicle. The sensors can provide information about the vehicle and its interior or exterior environment, about individual components, systems, vehicle occupants, subsystems, or about the roadway, ambient atmosphere, travel conditions and external objects. The sensors arranged on the roadway or ancillary structures would include pressure sensors, temperature sensors, moisture content or humidity sensors, and friction sensors.
    • 无线感测和通信系统包括位于车辆,道路中或车辆或道路附近的传感器,其提供通过无线射频机制传输到车辆中的一个或多个询问器的信息。 操作特定传感器的电源由询问器提供,或者传感器独立地连接到电池,发电机,车辆电源或车辆外部的一些电源。 传感器可以提供关于车辆及其内部或外部环境,关于各个部件,系统,车辆乘客,子系统或关于道路,环境大气,行驶条件和外部物体的信息。 布置在道路或辅助结构上的传感器将包括压力传感器,温度传感器,水分含量或湿度传感器以及摩擦传感器。