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    • 4. 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。
    • 6. 发明申请
    • BROADBAND ACCESS TO MOBILE PLATFORMS USING DRONE/UAV
    • 宽带接入移动平台使用DRONE / UAV
    • WO2015175057A3
    • 2016-01-07
    • PCT/US2015016116
    • 2015-02-17
    • UBIQOMM LLC
    • JALALI AHMAD
    • H04B7/185
    • H04B7/18504B64C39/024B64C2201/122H04B7/1555H04B7/18506H04B7/18528H04B7/18539H04B7/18541H04B7/18543H04B7/18554H04B7/18578H04W24/02H04W36/0005H04W36/30H04W48/16H04W84/005H04W84/06H04W88/16Y02B60/50Y02D70/00Y02D70/1242Y02D70/1262Y02D70/142Y02D70/164Y02D70/446
    • Systems and methods for providing broadband internet access to mobile platforms such as vehicles, aircraft, and portable devices, using a network of one or more entities such as drones/unmanned aerial vehicles (UAVs). In one embodiment, the drone communication system comprises an antenna sub-system, a radio sub-system and a data switching sub-system. The mobile platforms comprise antenna and radio sub-systems to communicate with the drones, detect changes in the mobile platforms azimuth and elevation changes, and adjust the mobile platform's antenna beam to compensate for the orientation changes to optimally point toward the drones. The exemplary mobile platform further comprises methods to detect the need for handoff to a different drone and to carry out the handoff. A mechanism to improve coverage to mobile platforms that may see obstruction on their path to the drone network is also disclosed, as are apparatus and methods for cost efficiently providing reliable internet access to portable devices.
    • 使用诸如无人机/无人驾驶飞行器(UAV)的一个或多个实体的网络来向诸如车辆,飞行器和便携式设备的移动平台提供宽带互联网接入的系统和方法。 在一个实施例中,无人机通信系统包括天线子系统,无线电子系统和数据交换子系统。 移动平台包括与无人机通信的天线和无线电子系统,检测移动平台方位角和高程变化的变化,并调整移动平台的天线波束以补偿朝向无人机的最佳方向变化。 该示例性移动平台还包括检测对不同无人机进行切换的需要并执行切换的方法。 还公开了一种用于提高可能看到其到无人机网络的路径上的阻​​碍的移动平台的覆盖的机制,以及用于成本有效地提供对便携式设备的可靠互联网访问的设备和方法。