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    • 3. 发明授权
    • Long lifespan wireless sensors and sensor network
    • 长寿命无线传感器和传感器网络
    • US09257036B2
    • 2016-02-09
    • US13891894
    • 2013-05-10
    • University of Alaska Anchorage
    • John LundTodd Petersen
    • G08C19/16G08C17/02H04Q9/00
    • H04Q9/00G08C17/02H04Q2209/40H04W4/70
    • Methods, systems, and apparatuses for managing sensor information are disclosed. An example apparatus can comprise a power unit configured to collect energy, a sensor unit configured to receive sensor data from a sensor, a memory unit configured to store the sensor data, a communication unit configured to wirelessly broadcast the sensor data to one or more sensor nodes in a network of sensor nodes, and a processing unit. The processing unit can be configured to operate at least one of the sensor unit, the memory unit, and the communication unit after the energy collected in the power unit reaches a threshold value.
    • 公开了用于管理传感器信息的方法,系统和装置。 示例性设备可以包括被配置为收集能量的功率单元,被配置为从传感器接收传感器数据的传感器单元,被配置为存储传感器数据的存储单元,配置成将传感器数据无线地广播到一个或多个传感器 传感器节点网络中的节点和处理单元。 处理单元可以被配置为在收集在功率单元中的能量达到阈值之后操作传感器单元,存储器单元和通信单元中的至少一个。
    • 4. 发明申请
    • Solid chemical hydride dispenser for generating hydrogen gas
    • 用于产生氢气的固体化学氢化物分配器
    • US20070020172A1
    • 2007-01-25
    • US11348282
    • 2006-02-06
    • Sandra Withers-KirbyJohn LundBrad Fiebig
    • Sandra Withers-KirbyJohn LundBrad Fiebig
    • C01B3/02
    • C01B3/065Y02E60/362Y10T442/2574
    • A device for generating hydrogen gas is provided. The device (101) comprises a first hydrogen-containing composition (107) that reacts with a second composition to evolve hydrogen gas; a dispenser (105) adapted to apply the first composition to a first porous member (109); and a conduit (111) adapted to supply the second composition to the first porous member. In a preferred embodiment, the first composition is selected from the group consisting of hydrides, borohydrides and boranes, the second composition is water, and the dispenser is spring-loaded and is charged with the first composition. As the first composition reacts with water at the interface to evolve hydrogen gas, the dispenser forces the reaction product across the interface and out of the dispenser, where it will not interfere with the progress of the hydrogen evolution reaction.
    • 提供了一种产生氢气的装置。 装置(101)包括与第二组合物反应以释放氢气的第一含氢组合物(107) 适于将第一组合物施加到第一多孔构件(109)的分配器(105); 以及适于将第二组合物供应到第一多孔构件的导管(111)。 在优选的实施方案中,第一组合物选自氢化物,硼氢化物和硼烷,第二组合物是水,并且分配器是弹簧加载的并带有第一组合物。 当第一种组合物与界面处的水反应以产生氢气时,分配器迫使反应产物穿过界面并进入分配器,其中它不会干扰析氢反应的进行。
    • 5. 发明授权
    • Autonomous electro-optical framing camera system with constant ground
resolution, unmanned airborne vehicle therefor, and methods of use
    • 具有恒定地面分辨率的自动电光框架摄像机系统,无人机载机及其使用方法
    • US06130705A
    • 2000-10-10
    • US113392
    • 1998-07-10
    • Andre G. LareauStephen R. BeranBrian JamesJames P. QuinnJohn Lund
    • Andre G. LareauStephen R. BeranBrian JamesJames P. QuinnJohn Lund
    • G01C3/08G01C11/02H04N5/232H04N13/00
    • H04N5/23264G01C11/02G01C3/08H04N5/23248H04N5/23254H04N5/23287
    • An aerial reconnaissance system generates imagery of a scene that meets resolution or field of view objectives automatically and autonomously. In one embodiment, a passive method of automatically calculating range to the target from a sequence of airborne reconnaissance camera images is used. Range information is use for controlling the adjustment of a zoom lens to yield frame-to-frame target imagery that has a desired, e.g., constant, ground resolution or field of view at the center of the image despite rapid and significant aircraft altitude and attitude changes. Image to image digital correlation is used to determine the displacement of the target at the focal plane. Camera frame rate and aircraft INS/GPS information is used to accurately determine the frame to frame distance (baseline). The calculated range to target is then used to drive a zoom lens servo mechanism to the proper focal length to yield the desired resolution or field of view for the next image. The method may be performed based on parameters other than range, such as aircraft height and stand off distance.
    • 空中侦察系统自动和自主地生成满足解决方案或视野目标的场景的图像。 在一个实施例中,使用从空中侦察摄像机图像序列自动地计算到目标的范围的被动方法。 范围信息用于控制变焦镜头的调节,以产生在图像中心具有期望的,例如恒定的地面分辨率或视场的帧到目标图像,尽管飞行器的高度和姿态快速且显着 变化。 图像到图像数字相关用于确定目标在焦平面处的位移。 摄像机帧率和飞机INS / GPS信息用于准确确定帧到帧距离(基线)。 然后将计算出的目标范围用于将变焦镜头伺服机构驱动到适当的焦距,以产生下一图像的期望分辨率或视场。 该方法可以基于除了范围之外的参数,例如飞行器高度和离开距离来执行。
    • 9. 发明申请
    • Long Lifespan Wireless Sensors And Sensor Network
    • 长寿命无线传感器和传感器网络
    • US20130342355A1
    • 2013-12-26
    • US13891894
    • 2013-05-10
    • University of Alaska Anchorage
    • John LundTodd Petersen
    • G08C17/02
    • H04Q9/00G08C17/02H04Q2209/40H04W4/70
    • Methods, systems, and apparatuses for managing sensor information are disclosed. An example apparatus can comprise a power unit configured to collect energy, a sensor unit configured to receive sensor data from a sensor, a memory unit configured to store the sensor data, a communication unit configured to wirelessly broadcast the sensor data to one or more sensor nodes in a network of sensor nodes, and a processing unit. The processing unit can be configured to operate at least one of the sensor unit, the memory unit, and the communication unit after the energy collected in the power unit reaches a threshold value.
    • 公开了用于管理传感器信息的方法,系统和装置。 示例性设备可以包括被配置为收集能量的功率单元,被配置为从传感器接收传感器数据的传感器单元,被配置为存储传感器数据的存储单元,配置成将传感器数据无线地广播到一个或多个传感器 传感器节点网络中的节点和处理单元。 处理单元可以被配置为在收集在功率单元中的能量达到阈值之后操作传感器单元,存储器单元和通信单元中的至少一个。