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    • 1. 发明申请
    • FACILITATING MULTIMEDIA INFORMATION DELIVERY THROUGH UAV NETWORK
    • 通过无人机网络促进多媒体信息传递
    • WO2017114506A1
    • 2017-07-06
    • PCT/CN2016/113728
    • 2016-12-30
    • SHAM, Wellen
    • SHAM, Wellen
    • H04N5/232H04N7/18
    • B64C39/024B64C2201/027B64C2201/12B64C2201/122B64C2201/123
    • Embodiments are provided for deliver multimedia information to a transportation apparatus through a UAV network. After the transportation apparatus enters an area, one or more UAVs may be configured to capture one or more images of an interior of the transportation apparatus. Geographical location of the transportation apparatus can be obtained. Image analysis may be employed to analyze the images to obtain passenger. Based on the geographical information regarding the transportation apparatus, and passenger, specific multimedia information can be determined for presentation to the passenger (s) in the transportation apparatus. The determined multimedia information may include media contents of interest to the passenger (s) and available in the geographical location the transportation apparatus is currently traveling in. The determined multimedia information can be transmitted to transportation apparatus for presentation to the passenger.
    • 提供了用于通过无人机网络将多媒体信息传送到运输设备的实施例。 在运输设备进入区域之后,一个或多个UAV可以被配置为捕获运输设备的内部的一个或多个图像。 运输设备的地理位置可以得到。 可以采用图像分析来分析图像以获得乘客。 基于关于运输设备和乘客的地理信息,可以确定特定的多媒体信息以呈现给运输设备中的乘客。 所确定的多媒体信息可以包括对乘客感兴趣并且在运输设备当前正在旅行的地理位置中可用的媒体内容。所确定的多媒体信息可以被传送到运输设备以便呈现给乘客。
    • 2. 发明申请
    • FACILITATING TARGETED INFORMATION DELIVERY THROUGH A UAV NETWORK
    • 通过无人机网络促进目标信息的传递
    • WO2017114505A1
    • 2017-07-06
    • PCT/CN2016/113726
    • 2016-12-30
    • SHAM, Wellen
    • SHAM, Wellen
    • G08G1/01G01S3/786
    • B64C39/024B64C2201/027B64C2201/12B64C2201/122B64C2201/123
    • Embodiments are provided for deliver information to a transportation apparatus via a UAV network. After the transportation apparatus enters an area, one or more UAVs may be configured to capture one or more images of an interior of the transportation apparatus. Information regarding the transportation apparatus can be collected by the UAV (s), such as the make and multimedia presentation capability of the transportation apparatus, in response to the images being received. Image analysis may be employed to analyze the images to obtain passenger and/or driver information. Based on the information regard the transportation apparatus, and passenger and/or driver information, one or more items can be determined for presentation to the passenger (s) and/or driver (s) in the transportation apparatus. The one or more items may include local information of interest to the passenger (s) and driver (s). The one or more items can be transmitted to transportation apparatus for presentation.
    • 提供了用于经由无人机网络向运输设备传递信息的实施例。 在运输设备进入区域之后,一个或多个UAV可以被配置为捕获运输设备的内部的一个或多个图像。 响应于图像被接收,可以由UAV收集关于运输设备的信息,诸如运输设备的制造和多媒体呈现能力。 可以采用图像分析来分析图像以获得乘客和/或驾驶员信息。 基于关于运输设备以及乘客和/或驾驶员信息的信息,可以确定一个或多个项目以呈现给运输设备中的乘客和/或驾驶员。 一个或多个项目可以包括乘客和驾驶员感兴趣的本地信息。 一件或多件物品可以传送到运输设备进行展示。
    • 3. 发明申请
    • FACILITATING LOCATION POSITIONING SERVICE THROUGH A UAV NETWORK
    • 通过无人机网络促进定位服务
    • WO2017114496A1
    • 2017-07-06
    • PCT/CN2016/113592
    • 2016-12-30
    • SHAM, Wellen
    • SHAM, Wellen
    • B64C39/02
    • B64C39/024B64C2201/027B64C2201/12B64C2201/122B64C2201/123
    • A method for providing location positioning service for locating a transportation apparatus through a UAV network (100) is provided. A location center (202) may be employed to receive a location service request for locating a specific transportation apparatus. After receiving such a request, the location center (202) may inquire a location database for last known location of the requested transportation apparatus. Based on the last known location of the requested transportation apparatus, the location center (202) may predict one or more areas in which the requested transportation apparatus may be currently in. Based on the prediction, the location center (202) may be configured to generate one or more control instructions to one or more UAVs (102) in the UAV network (100) to locate the requested transportation apparatus in those areas. The method can locate a moving transportation apparatus without requiring the transportation apparatus be near a beacon such as a cell tower, or requiring the moving transportation apparatus to be trackable through GPS.
    • 提供了一种通过无人机网络(100)提供用于定位运输设备的位置定位服务的方法。 位置中心(202)可以用于接收用于定位特定运输设备的位置服务请求。 在接收到这样的请求之后,位置中心(202)可以向位置数据库查询所请求的运输设备的最后已知位置。 基于所请求的运输设备的最后已知位置,位置中心(202)可以预测所请求的运输设备可能当前所处的一个或多个区域。基于预测,位置中心(202)可以被配置为 向UAV网络(100)中的一个或多个UAV(102)生成一个或多个控制指令以将所请求的运输设备定位在这些区域中。 该方法可以定位移动的运输设备,而不需要运输设备靠近诸如蜂窝塔的信标,或者需要通过GPS追踪移动的运输设备。
    • 4. 发明申请
    • FACILITATING WIDE-VIEW VIDEO CONFERENCING THROUGH A UAV NETWORK
    • 通过无人机网络促进广视角视频会议
    • WO2017114504A1
    • 2017-07-06
    • PCT/CN2016/113725
    • 2016-12-30
    • SHAM, Wellen
    • SHAM, Wellen
    • B64D47/08H04N7/15
    • B64C39/024B64C2201/027B64C2201/12B64C2201/122B64C2201/123
    • Embodiments are provided for facilitating a wide-view video conference through a UAV network. For facilitating the wide-view video conference, UAVs can be employed to capture and transmit video data at locations of parties involved in the wide-view video conference. One or more UAVs in the UAV network can be instructed to locate the party's location and zoom-in onto the party's location. In some examples, the UAV (s) can be equipped with a 360 degree video camera such that a wide-area covered by the 360 degree video can be captured. The video data can be transmitted to a video data processing center in real-time or substantially in re al-time. The video data transmission by the given UAV to the video data processing center can be through a UAV network. The video stream can be output at a location of a given party in the video conference.
    • 提供了用于通过无人机网络促进宽视角视频会议的实施例。 为了方便广视角视频会议,可以采用无人机在广视角视频会议所涉及的各方的位置采集和传输视频数据。 可以指示无人机网络中的一个或多个无人机找到派对的位置并放大派对的位置。 在一些示例中,无人飞行器可以配备有360度视频摄像机,使得可以捕捉360度视频覆盖的广域。 视频数据可以实时或基本上以实时的形式传输到视频数据处理中心。 由给定的UAV到视频数据处理中心的视频数据传输可以通过无人机网络。 视频流可以输出到视频会议中给定参与方的位置。
    • 5. 发明申请
    • FACILITATING COMMUNICATION WITH A VEHICLE VIA A UAV
    • 通过无人机实现与车辆的通信
    • WO2017114503A1
    • 2017-07-06
    • PCT/CN2016/113724
    • 2016-12-30
    • SHAM, Wellen
    • SHAM, Wellen
    • H04W4/00H04B7/14
    • B64C39/024B64C2201/027B64C2201/12B64C2201/122B64C2201/123
    • Embodiments are provided for facilitating communications with a vehicle through an unmanned aerial vehicle (UAV). The UAV can be configured to track vehicles traveling in an area covered by the UAV. An identification of the vehicle can be acquired after the vehicle is tracked by the UAV. The vehicle identification can be used to determine communication capability of the vehicle. Based on the determined communication capability of the vehicle, a communication request can be initiated by the UAV. The vehicle can determine either accept the communication request from the UAV or turn it down. If the vehicle accepts the communication request from the UAV, information intended for the vehicle, for example from another vehicle, can be forwarded to the vehicle by the UAV.
    • 提供了用于促进通过无人驾驶飞行器(UAV)与车辆进行通信的实施例。 无人机可以配置为跟踪在无人机覆盖的区域行驶的车辆。 在无人机跟踪车辆后,可以获取车辆的标识。 车辆识别可以用于确定车辆的通信能力。 基于确定的车辆的通信能力,通信请求可以由UAV发起。 车辆可以确定接受来自无人机的通讯请求或将其关闭。 如果车辆接受来自无人机的通信请求,则可以由该无人机将用于该车辆的信息(例如来自另一车辆的信息)发送给该车辆。
    • 6. 发明申请
    • UAV NETWORK
    • 无人机网络
    • WO2017114501A1
    • 2017-07-06
    • PCT/CN2016/113718
    • 2016-12-30
    • SHAM, Wellen
    • SHAM, Wellen
    • H04B7/26
    • B64C39/024B64C2201/027B64C2201/12B64C2201/122B64C2201/123
    • Embodiments are provided for facilitating an unmanned aerial vehicle (UAV) network. The UAV network in accordance with the disclosure can comprise multiple UAVs, ground processing stations, and/or any other components. A particular UAV in the network can carry payloads consisting of optical image sensors, processing devices, communication systems, and/or any other components. An individual UAV in the network can comprise photovoltaic cells capable of absorbing solar energy. Embodiments are provided for converting the solar energy to electricity for providing power to payloads aboard the UAV and as well as charging a battery aboard the UAV. In certain embodiments, the UAV can fly up to 65,000 feet and can cover as much as 500 km in range. One motivation of the present disclosure is to "outsource" some or entire information processing by an UAV to existing infrastructure, such as the ground processing station.
    • 提供用于促进无人驾驶飞行器(UAV)网络的实施例。 根据本公开的UAV网络可以包括多个UAV,地面处理站和/或任何其他组件。 网络中的特定UAV可以携带由光学图像传感器,处理设备,通信系统和/或任何其他组件组成的有效载荷。 网络中的单个无人机可以包括能够吸收太阳能的光伏电池。 提供了用于将太阳能转换为电力的实施例,用于向无人机上的有效载荷提供电力,并且还为无人飞行器上的电池充电。 在某些实施例中,UAV可以飞行高达65,000英尺并且可以覆盖范围多达500千米。 本公开的一个动机是“外包” 一些无人机处理现有基础设施(如地面处理站)的一些或全部信息。