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    • 91. 发明授权
    • Expandable antenna structure
    • 可扩展天线结构
    • US09203148B1
    • 2015-12-01
    • US13729219
    • 2012-12-28
    • Eric TellerClifford L. BiffleRichard Wayne DeVaul
    • Eric TellerClifford L. BiffleRichard Wayne DeVaul
    • H01Q1/24H01Q3/22H01Q3/02
    • H01Q1/244H01Q1/28H01Q3/01H01Q5/22H01Q5/30
    • This disclosure relates to the use of a mobile device in connection with a balloon network. A disclosed method includes communicating with an antenna structure coupled to the housing of a mobile device. Additionally, the antenna structure may have an omnidirectional radiation pattern when the housing in a first position. The method may also include detecting a reconfiguration the housing of the mobile device. Further, the method also includes communicating with the antenna structure with the reconfigured housing. The antenna structure may have as directional radiation pattern when the housing in a second position. When in the second position the mobile device may be configured to communicate with a balloon network and when the mobile device is in the first position the mobile device may be configured to communicate with a cellular network.
    • 本公开涉及与气球网络相关联的移动设备的使用。 所公开的方法包括与耦合到移动设备的壳体的天线结构进行通信。 另外,当壳体处于第一位置时,天线结构可以具有全向辐射图案。 该方法还可以包括检测重新配置移动设备的外壳。 此外,该方法还包括与重新配置的壳体与天线结构通信。 当壳体处于第二位置时,天线结构可以具有定向辐射图。 当处于第二位置时,移动设备可以被配置为与气球网络通信,并且当移动设备处于第一位置时,移动设备可以被配置为与蜂窝网络通信。
    • 94. 发明授权
    • Device and method for monitoring the presence of items and issuing an alert if an item is not detected
    • 用于监视项目存在的设备和方法,并且如果未检测到项目则发出警报
    • US08810392B1
    • 2014-08-19
    • US13019701
    • 2011-02-02
    • Eric TellerClaes-Fredrik MannbyMichael J. SmithCheryl Grunbeck
    • Eric TellerMartin T. KingClaes-Fredrik MannbyMichael J. Smith
    • G08B1/08
    • G08B21/24G08B21/0236G08B21/0238G08B21/0275G08B21/0277G08B21/0294
    • Disclosed herein are methods and systems that involve monitoring presence of items based on context. An exemplary method involves: (i) determining a context for a given user; (ii) determining a proximity framework between a monitoring device and one or more items, based on the determined context, wherein the proximity framework comprises (a) one or more proximity requirements, each proximity requirement indicating a required proximity between the monitoring device and at least one of the items and (b) a notification process corresponding to each proximity requirement; (iii) monitoring proximity of each of the items relative to the monitoring device, based on a presence signal from each of the items, in order to determine when one of the proximity requirements is not met; and (iv) responsive to determining that one of the proximity requirements is not met, initiating the corresponding notification process.
    • 本文公开了涉及基于上下文监视项目存在的方法和系统。 示例性方法包括:(i)确定给定用户的上下文; (ii)基于所确定的上下文来确定监控设备与一个或多个项目之间的接近度框架,其中所述邻近框架包括(a)一个或多个接近度要求,每个接近度需求指示所述监视设备和所述监视设备之间所需的接近度 至少一个项目和(b)对应于每个接近度要求的通知过程; (iii)基于来自每个项目的存在信号来监视每个项目相对于监视设备的接近度,以便确定何时不满足接近度要求之一; 以及(iv)响应于确定不满足接近度要求之一,启动相应的通知过程。
    • 100. 发明申请
    • Establishing Optical-Communication Lock with Nearby Balloon
    • 与附近气球建立光通讯锁
    • US20130177322A1
    • 2013-07-11
    • US13346645
    • 2012-01-09
    • Richard Wayne DeVaulEric TellerClifford L. BiffleJosh Weaver
    • Richard Wayne DeVaulEric TellerClifford L. BiffleJosh Weaver
    • H04B10/10
    • H04B10/1129H04B7/18504
    • A balloon may include an optical-communication component, which may have a pointing axis. A pointing mechanism could be configured to adjust the pointing axis. The optical-communication component could be operable to communicate with a correspondent balloon via a free-space optical link. For example, the optical-communication component could include an optical receiver, transmitter, or transceiver. A positioning system could be configured to acquire a first location, which could be based on the location of the balloon. A controller could be configured to acquire a second location, which could be based on a location of the correspondent balloon. The controller may determine an approximate target axis based on the first location and the second location. The controller may control the pointing axis of the optical-communication component within a scanning range based on the approximate target axis to establish the free-space optical link with the correspondent balloon.
    • 气球可以包括可以具有指向轴的光通信部件。 可以配置指示机构来调整指向轴。 光通信部件可以通过自由空间的光学链路与对应的气球通信。 例如,光通信部件可以包括光接收器,发射器或收发器。 定位系统可以被配置为获取可以基于气球的位置的第一位置。 控制器可以被配置为获取第二位置,其可以基于相应气球的位置。 控制器可以基于第一位置和第二位置来确定近似目标轴。 控制器可以基于近似目标轴来控制在扫描范围内的光通信部件的指向轴,以建立与对应气球的自由空间光学链路。