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    • 2. 发明授权
    • Reactionary mass balloon envelope for a balloon and other balloon components
    • 用于气球和其他球囊组件的反应性质量气囊信封
    • US09266598B1
    • 2016-02-23
    • US14227559
    • 2014-03-27
    • Google Inc.
    • Richard Wayne DeVaul
    • B64B1/42
    • B64B1/42B64B1/56
    • The present disclosure provides a balloon. The balloon may include an envelope comprising a fixed component. The balloon may include a stabilizing platform positioned beneath the envelope and operatively connected to the fixed component. The stabilizing platform may be configured to rotate around an axis vertically aligned with gravity. The envelope may comprise a heavier mass than the stabilizing platform. The balloon may also include a motor configured to exert a first force on the stabilizing platform in a manner such that the stabilizing platform rotates (i) more than a rotation of the balloon and (ii) around the axis, thereby counteracting the rotation of the balloon by causing the stabilizing platform to exert a second force on the envelope of the balloon.
    • 本公开提供一种气球。 气球可以包括包括固定部件的外壳。 气囊可以包括位于封套下方并且可操作地连接到固定部件的稳定平台。 稳定平台可以被配置为围绕垂直与重力对齐的轴线旋转。 信封可以包括比稳定平台更重的质量。 球囊还可以包括电动机,其被配置为以稳定平台(i)旋转(i)超过气球的旋转和(ii)围绕轴线的方式在稳定平台上施加第一力,从而抵消 气球通过使稳定平台在气囊的信封上施加第二力。
    • 5. 发明授权
    • Valuation of and marketplace for inter-network links between balloon network and terrestrial network
    • 气球网络和地面网络之间的网络间链路的估价和市场
    • US08971274B1
    • 2015-03-03
    • US13673700
    • 2012-11-09
    • Google Inc.
    • Eric TellerRichard Wayne DeVaulClifford L. BiffleJoshua WeaverAnton Valdemar Staaf
    • H04W72/04
    • H04W16/14H04B7/18504H04L12/1428H04W4/24H04W40/02H04W84/005H04W84/22
    • Embodiments relate to a marketplace for inter-network links between a balloon network and a terrestrial data network. An example method may involve a computer-based purchasing agent: (i) determining a demand for inter-network bandwidth between a balloon network and a terrestrial data network, (ii) determining one or more offers to provide an inter-network link, wherein the inter-network link provides inter-network bandwidth between the balloon network and the terrestrial data network, and wherein each offer is associated with a corresponding client device, (iii) based at least in part on a comparison of: (a) the demand for inter-network bandwidth and (b) the one or more offers to provide an inter-network link, selecting one or more of the offers to provide an inter-network link, and (iv) initiating a process to establish an inter-network link at each client device that corresponds to one of the one or more selected offers.
    • 实施例涉及气球网络和地面数据网络之间的网络间链路的市场。 示例性方法可以涉及基于计算机的购买代理:(i)确定对气球网络和地面数据网络之间的网络间带宽的需求,(ii)确定一个或多个提供以提供网络间链路,其中 所述网络间链路提供所述气球网络和地面数据网络之间的网络间带宽,并且其中每个提供与相应的客户端设备相关联,(iii)至少部分地基于以下的比较:(a)所述需求 用于网络间带宽和(b)提供网络间链路的一个或多个提供,选择一个或多个提供以提供网络间链路,以及(iv)启动建立网络间网络的过程 在与每个客户端设备相对应的一个或多个所选择的优惠中的链接。
    • 6. 发明申请
    • Altitude Control Via Rotation of Balloon to Adjust Balloon Density
    • 通过旋转气球来调节气球密度的高度控制
    • US20140252163A1
    • 2014-09-11
    • US14286070
    • 2014-05-23
    • Google Inc.
    • Richard Wayne DeVaulEric TellerClifford L. BiffleJosh Weaver
    • B64B1/62
    • B64B1/62B64B1/60G05D1/042
    • A balloon having an envelope, a gas contained within the envelope, a payload connected to the envelope, wherein the envelope has a first portion that has a first absorptive or reflective property with respect to allowing solar energy to be transferred to the gas within the envelope, and a second portion that has a second absorptive or reflective property with respect to allowing solar energy to be transferred to the gas within the envelope where the second absorptive or reflective property is different than the first absorptive or reflective property, wherein the second portion is provided with a darkly colored surface that allows more solar energy to be transferred through the envelope to the gas within the envelope than the first portion, and wherein the envelope is rotatable to allow a preferred ratio of the first and second portions of the envelope to be positioned facing the sun.
    • 一种具有封套的气囊,包含在外壳内的气体,连接到外壳的有效载荷,其中该封套具有第一部分,该第一部分具有第一吸收性或反射性,以使太阳能转移到外壳内的气体 以及具有第二吸收或反射性质的第二部分,其相对于允许太阳能转移到第二吸收或反射性质不同于第一吸收或反射性质的封套内的气体,其中第二部分是 具有暗色表面,其允许更多的太阳能通过信封传送到封套内比第一部分的气体,并且其中信封可旋转以允许信封的第一和第二部分的优选比率为 定位面向太阳。
    • 7. 发明申请
    • Location-Aware Profiles in an Aerial Network
    • 位置感知空中网络中的配置文件
    • US20160156405A1
    • 2016-06-02
    • US15013850
    • 2016-02-02
    • Google Inc.
    • Eric TellerRichard Wayne DeVaulClifford L. BiffleJosh Weaver
    • H04B7/185
    • H04B7/18502H04B10/118H04L41/12H04L67/303H04W4/021H04W4/026H04W40/38H04W52/18
    • Disclosed embodiments may help an aerial vehicle network to provide substantially continuous service in a given geographic area. An example method may be carried out at an aerial vehicle that is at a location associated with the first geographic area in an aerial network that includes a plurality of geographic areas. The balloon may determine that it should update its vehicle-state in accordance with a vehicle-state profile for the first geographic area. Then, in response, the balloon may determine the vehicle-state profile for the first geographic area, which may include one or more state parameters for balloons operating in the first geographic area. The balloon may then operate according to the vehicle-state profile for the first geographic area.
    • 公开的实施例可以帮助空中客车网络在给定的地理区域中提供基本上连续的服务。 示例性方法可以在与包括多个地理区域的空中网络中的与第一地理区域相关联的位置处的飞行器执行。 气球可以确定它应当根据第一地理区域的车辆状态轮廓来更新其车辆状态。 然后,作为响应,气球可以确定第一地理区域的车辆状态轮廓,其可以包括在第一地理区域中操作的气球的一个或多个状态参数。 然后,球囊可以根据第一地理区域的车辆状态轮廓进行操作。
    • 8. 发明授权
    • Altitude control via adjustment to mass of air in bladder within lift-gas filled envelope
    • 通过调整提升气体填充的信封内的膀胱中的空气质量进行高度控制
    • US09340272B1
    • 2016-05-17
    • US14321374
    • 2014-07-01
    • Google Inc.
    • Richard Wayne DeVaulClifford L. Biffle
    • B64B1/58B64B1/62B64B1/70
    • B64B1/62B64B1/60B64B1/70
    • This disclosure relates to the use of a method for adjusting an altitude of variable-buoyancy vehicle, such as an aerostatic balloon. The method includes determining a target mass for a variable-buoyancy vehicle, where the target mass is based on a target altitude for the variable-buoyancy vehicle. Additionally, the method includes adding a first mass to the variable-buoyancy vehicle. The mass added is less than a difference between the target mass and a current mass. The method also includes adding a second mass to the variable-buoyancy vehicle in response to a decrease in an internal pressure of the variable-buoyancy vehicle caused by adding the first mass. Further, adding the second mass makes a current mass of the variable-buoyancy vehicle approximately equal to the target mass.
    • 本公开涉及用于调节诸如空气静力气球的可变浮力车辆的高度的方法的使用。 该方法包括确定可变浮力车辆的目标质量,其中目标质量基于可变浮力车辆的目标高度。 另外,该方法包括将第一质量添加到可变浮力车辆。 添加的质量小于目标质量和当前质量之间的差异。 该方法还包括响应于通过添加第一质量而引起的可变浮力车辆的内部压力的降低,向可变浮力车辆添加第二质量。 此外,添加第二质量使可变浮力车辆的电流质量近似等于目标质量。