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    • 13. 发明申请
    • TECHNOLOGIES FOR SENSOR ACTION VERIFICATION
    • 传感器动作验证技术
    • WO2016048517A1
    • 2016-03-31
    • PCT/US2015/046541
    • 2015-08-24
    • INTEL CORPORATION
    • KAPLAN, DavidTAITE, ShaharRON, AvivRIDER, Tomer
    • G06F21/70G06F21/30H04L9/30
    • H04L63/0823H04L63/126H04W12/08
    • Technologies for sensor action verification include a local computing device to receive a request for the local computing device to perform a sensor action from a remote computing device. The local computing device verifies the received request to confirm that the remote computing device is authorized to request the local computing device to perform the sensor action and performs, by a sensor controller of the local computing device, the requested sensor action in response to verification of the received request. The sensor controller manages operation of one or more sensors of the local computing device. The local computing device transmits a response message to the remote computing device indicating whether the requested sensor action has been performed by the sensor controller of the local computing device.
    • 用于传感器动作验证的技术包括本地计算设备,用于接收对本地计算设备执行来自远程计算设备的传感器动作的请求。 本地计算设备验证所接收的请求以确认远程计算设备被授权请求本地计算设备执行传感器动作,并且由本地计算设备的传感器控制器执行所请求的传感器动作以响应于 收到的请求。 传感器控制器管理本地计算设备的一个或多个传感器的操作。 本地计算设备向远程计算设备发送响应消息,指示所请求的传感器动作是否已由本地计算设备的传感器控制器执行。
    • 16. 发明申请
    • PROVIDING SECURE DATA TRANSMISSION OVER A UNIVERSAL SERIAL BUS (USB) INTERFACE
    • 通过通用串行总线(USB)接口提供安全数据传输
    • WO2018080677A1
    • 2018-05-03
    • PCT/US2017/052876
    • 2017-09-22
    • INTEL CORPORATION
    • WIELICKI, RafalSTELTER, JaroslawRIDER, Tomer
    • G06F21/85G06F21/72H04L9/08
    • H04L63/0435G06F13/4282H04L63/061
    • An example includes a computing device including a controller configured to communicably couple the computing device to a peripheral computing device. The controller includes an encryption unit configured to encrypt input data received from the peripheral computing device before sending the input data to an application running on the computing device, and a decryption unit configured to decrypt output data received from the application before sending the output data to the peripheral computing device. The computing device also includes a memory device including a data structure that directs the flow of the data between the peripheral computing device and the application. The data structure includes an encryption enable field and an encryption key field for controlling the encryption and decryption units of the controller.
    • 示例包括计算设备,该计算设备包括被配置为将计算设备可通信地耦合到外围计算设备的控制器。 该控制器包括:加密单元,被配置为在将输入数据发送到在计算设备上运行的应用之前对从外围计算设备接收到的输入数据进行加密;以及解密单元,配置为在将输出数据发送到 外围计算设备。 该计算设备还包括存储设备,该存储设备包括引导外围计算设备和应用程序之间的数据流的数据结构。 数据结构包括加密启用字段和用于控制控制器的加密和解密单元的加密密钥字段。
    • 17. 发明申请
    • ROAD CONDITION HEADS UP DISPLAY
    • 道路状况向上显示
    • WO2018004858A2
    • 2018-01-04
    • PCT/US2017/033094
    • 2017-05-17
    • INTEL CORPORATION
    • RIDER, TomerTATOURIAN, Igor
    • B60W50/14B60W30/14B60W50/08B60R11/02B60R11/00
    • Various systems and methods for providing a road condition heads up display system are provided herein. A road condition heads up display system, includes: a video display to present imagery captured by a camera system, the imagery including terrain around an autonomous vehicle, the terrain including a driving surface on which the autonomous vehicle operates; a vehicle control system coupled to the camera system and the video processor, the vehicle control system to: operate the autonomous vehicle in an autonomous mode; recognize a non-navigable portion of the terrain around the autonomous vehicle; present an augmented reality user interface on the video display, the augmented reality user interface used by an occupant of the autonomous vehicle to indicate a waypoint; and operate the autonomous vehicle in a non-autonomous mode according to the user input.
    • 这里提供了用于提供路况抬头显示系统的各种系统和方法。 路况抬头显示系统包括:视频显示器,用于呈现由相机系统捕获的图像,所述图像包括自主车辆周围的地形,所述地形包括所述自主车辆在其上操作的驾驶表面; 耦合到所述相机系统和所述视频处理器的车辆控制系统,所述车辆控制系统用于:以自主模式操作所述自主车辆; 识别自主车辆周围的地形的不可通航部分; 在所述视频显示器上呈现增强现实用户界面,所述增强现实用户界面由所述自主车辆的乘员使用以指示航点; 并根据用户输入以非自主模式操作自主车辆。