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    • 2. 发明申请
    • VEHICULAR OPTICAL COMMUNICATIONS SYSTEM
    • 车辆光通信系统
    • WO2005060467A2
    • 2005-07-07
    • PCT/US2004/038046
    • 2004-11-15
    • CLIFTON LABS, INC.WILSEY, Philip A.BEYETTE, Fred R., Jr.DIECKMAN, Darryl S.MARTIN, Dale E.
    • WILSEY, Philip A.BEYETTE, Fred R., Jr.DIECKMAN, Darryl S.MARTIN, Dale E.
    • H04B10/00H04B10/22
    • H04B10/1143
    • Described are a vehicle optical communications system and network to exchange high bandwidth optical data between vehicles or between a vehicle and a stationary host. The vehicle optical communications system includes a communications module and a sensor having pixels for detecting an image in a field of view. Each pixel can generate a pixel data signal responsive to an incident optical data signal that includes vehicle data transmitted from a remote optical transmitter. The communications module provides remote data in response to the pixel data signals. The vehicular communications system optionally includes an optical transmitter to enable bi-directional communication. Data can be transmitted through a multi-node network of vehicular communication systems deployed in vehicles or on stationary hosts located between or around the data transmitter and intended data receiver. Simultaneous data from multiple optical transmitters are processed concurrently and maintained as separate communication channels.
    • 描述了一种车辆光通信系统和网络,用于在车辆之间或车辆和固定主机之间交换高带宽光学数据。 车辆光通信系统包括通信模块和具有用于在视场中检测图像的像素的传感器。 响应于包括从远程光发射机发送的车辆数据的入射光数据信号,每个像素可以产生像素数据信号。 通信模块响应于像素数据信号提供远程数据。 车辆通信系统可选地包括能够实现双向通信的光发射机。 数据可以通过部署在车辆上的车辆通信系统的多节点网络或位于数据发射机和预期数据接收机之间或周围的固定主机上传输。 来自多个光发射机的同时数据同时处理并作为单独的通信信道进行维护。
    • 6. 发明申请
    • VEHICULAR OPTICAL COMMUNICATIONS SYSTEM
    • 车辆光通信系统
    • WO2005060467A3
    • 2006-11-23
    • PCT/US2004038046
    • 2004-11-15
    • CLIFTON LABS INCWILSEY PHILIP ABEYETTE FRED R JRDIECKMAN DARRYL SMARTIN DALE E
    • WILSEY PHILIP ABEYETTE FRED R JRDIECKMAN DARRYL SMARTIN DALE E
    • H04N7/18H04B10/00H04B10/22H04N9/47
    • H04B10/1143
    • Described are a vehicle optical communications system and network to exchange high bandwidth optical data between vehicles or between a vehicle and a stationary host. The vehicle optical communications system includes a communications module and a sensor having pixels for detecting an image in a field of view. Each pixel can generate a pixel data signal responsive to an incident optical data signal that includes vehicle data transmitted from a remote optical transmitter. The communications module provides remote data in response to the pixel data signals. The vehicular communications system optionally includes an optical transmitter to enable bi-directional communication. Data can be transmitted through a multi-node network of vehicular communication systems deployed in vehicles or on stationary hosts located between or around the data transmitter and intended data receiver. Simultaneous data from multiple optical transmitters are processed concurrently and maintained as separate communication channels.
    • 描述了一种车辆光通信系统和网络,用于在车辆之间或车辆和固定主机之间交换高带宽光学数据。 车辆光通信系统包括通信模块和具有用于在视场中检测图像的像素的传感器。 响应于包括从远程光发射机发送的车辆数据的入射光数据信号,每个像素可以产生像素数据信号。 通信模块响应于像素数据信号提供远程数据。 车辆通信系统可选地包括能够进行双向通信的光发射机。 数据可以通过部署在车辆上的车辆通信系统的多节点网络或位于数据发射机和预期数据接收机之间或周围的固定主机上传输。 来自多个光发射机的同时数据同时处理并作为单独的通信信道进行维护。
    • 7. 发明申请
    • OPTICAL ASSET TRACKING SYSTEM
    • 光学资产跟踪系统
    • WO2005055438A3
    • 2006-11-09
    • PCT/US2004038047
    • 2004-11-15
    • CLIFTON LABS INCWILSEY PHILIP ABEYETTE FRED R JRDIECKMAN DARRYL SMARTIN DALE E
    • WILSEY PHILIP ABEYETTE FRED R JRDIECKMAN DARRYL SMARTIN DALE E
    • H04N7/12G06K7/10G06K17/00
    • G06K19/0728G06K7/10079G06K7/1097G06K2017/0045
    • Described are a system and a method for optical tracking of assets (figure 1). The system includes a sensor (34) having a plurality of pixels. Each pixel is adapted to produce an electrical signal responsive to an incident optical data signal emitted by an optical tag (18) attached to an asset (14). The system also includes a sensor processor (38) in communication with the sensor (34) and configured to generate an electrical data signal based on optical data signals incident on the pixels. The sensor processor (38) also generates asset data in response to the electrical data signals from the pixels. The sensor (34) and sensor processor (38) can be implemented as an optical communications imager in which each pixel generates a communication data signal based on incident light. Alternatively, the sensor (34) can include a digital video camera or an analog video camera for lower bandwidth communications.
    • 描述了一种用于光学跟踪资产的系统和方法(图1)。 该系统包括具有多个像素的传感器(34)。 每个像素适于产生响应于附接到资产(14)的光学标签(18)发射的入射光学数据信号的电信号。 该系统还包括与传感器(34)通信的传感器处理器(38),并被配置为基于入射在像素上的光学数据信号产生电气数据信号。 传感器处理器(38)还响应于来自像素的电数据信号产生资产数据。 传感器(34)和传感器处理器(38)可以实现为光通信成像器,其中每个像素基于入射光产生通信数据信号。 或者,传感器(34)可以包括用于较低带宽通信的数字摄像机或模拟摄像机。