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    • 3. 发明申请
    • INSTALLATION PLATFORM FOR DEPLOYING AN EARTH-BASED SENSOR NETWORK UTILIZING A PROJECTED PATTERN FROM A HEIGHT
    • 用于采集基于地球的传感器网络的安装平台利用高度的投影图案
    • US20120001017A1
    • 2012-01-05
    • US12830183
    • 2010-07-02
    • John Paul STRACHANWei YiJianhua Yang
    • John Paul STRACHANWei YiJianhua Yang
    • B64B1/00
    • B64B1/00
    • An installation platform for deploying an earth-based sensor network utilizing a projected pattern from a height. The installation platform includes an aerostatic aircraft, at least one sensor-location projector, and a projector stabilizer. The sensor-location projector is coupled with the aerostatic aircraft, and is configurable to project the projected pattern including at least one sensor-location marker associated with a location for a sensor in the sensor network. The projector stabilizer is configurable for maintaining the sensor-location projector in a sufficiently static orientation relative to the location for the sensor to allow deployment of the sensor within a specified distance of the location on a surface of the earth from the sensor-location marker. A sensor-network-deployment system along with a method for deploying the sensor-network are also provided.
    • 一个安装平台,用于使用高度的投影图案部署基于地球的传感器网络。 安装平台包括一个空气静力飞行器,至少一个传感器位置投影机和投影机稳定器。 传感器位置投影仪与空气静力飞行器耦合,并且可配置为投射投影图案,包括与传感器网络中的传感器的位置相关联的至少一个传感器位置标记。 投影仪稳定器可配置为相对于传感器的位置使传感器位置投影仪保持足够静止的方位,以允许传感器在传感器位置标记的地球表面上的位置的指定距离内展开。 还提供了传感器网络部署系统以及部署传感器网络的方法。
    • 8. 发明申请
    • NODE PLACEMENT APPARATUS, SYSTEM AND METHOD
    • 节点放置装置,系统和方法
    • US20110289787A1
    • 2011-12-01
    • US12790970
    • 2010-05-31
    • Wei YiJohn Paul Strachan
    • Wei YiJohn Paul Strachan
    • G01B11/26G01B11/00
    • G01C15/02
    • A node placement apparatus, system and method employ an optical source to define a grid for placement of nodes. The node placement apparatus includes a structure that provides a predetermined height and the optical source positioned at the predetermined height. The optical source is configured to produce an optical beam having a predetermined declination angle. The optical beam is configured to provide illumination of a plurality of discrete points on a surface to define the grid. The system further includes the nodes. The method of node placement includes locating the optical source above a fixed point on and at the predetermined height above the surface, illuminating the plurality of discrete points with the optical beam, and positioning a node at a selected discrete point of the plurality of discrete points illuminated by the optical beam.
    • 节点放置装置,系统和方法使用光源来定义用于放置节点的网格。 节点放置装置包括提供预定高度并且光源位于预定高度的结构。 光源被配置为产生具有预定倾角的光束。 光束被配置为提供表面上的多个离散点的照明以限定网格。 该系统还包括节点。 节点放置的方法包括将光源定位在表面上方和预定高度上的固定点上方,用光束照射多个离散点,并将节点定位在多个离散点的选定离散点处 由光束照射。
    • 9. 发明授权
    • Node placement apparatus, system and method
    • 节点放置装置,系统和方法
    • US08336217B2
    • 2012-12-25
    • US12790970
    • 2010-05-31
    • Wei YiJohn Paul Strachan
    • Wei YiJohn Paul Strachan
    • G01B11/00G01B11/26
    • G01C15/02
    • A node placement apparatus, system and method employ an optical source to define a grid for placement of nodes. The node placement apparatus includes a structure that provides a predetermined height and the optical source positioned at the predetermined height. The optical source is configured to produce an optical beam having a predetermined declination angle. The optical beam is configured to provide illumination of a plurality of discrete points on a surface to define the grid. The system further includes the nodes. The method of node placement includes locating the optical source above a fixed point on and at the predetermined height above the surface, illuminating the plurality of discrete points with the optical beam, and positioning a node at a selected discrete point of the plurality of discrete points illuminated by the optical beam.
    • 节点放置装置,系统和方法使用光源来定义用于放置节点的网格。 节点放置装置包括提供预定高度并且光源位于预定高度的结构。 光源被配置为产生具有预定倾角的光束。 光束被配置为提供表面上的多个离散点的照明以限定网格。 该系统还包括节点。 节点放置的方法包括将光源定位在表面上方和预定高度上的固定点上方,用光束照射多个离散点,并将节点定位在多个离散点的选定离散点处 由光束照射。
    • 10. 发明授权
    • Memristors with an electrode metal reservoir for dopants
    • 具有用于掺杂剂的电极金属储存器的忆阻器
    • US08325507B2
    • 2012-12-04
    • US12893825
    • 2010-09-29
    • Jianhua YangWei YiMichael Josef StukeShih-Yuan Wang
    • Jianhua YangWei YiMichael Josef StukeShih-Yuan Wang
    • H01L29/8605H01L21/04G11C11/21
    • H01L45/1233H01L27/2463H01L45/08H01L45/1266H01L45/145H01L45/146H01L45/1658
    • A memristor includes a first electrode of a nanoscale width; a second electrode of a nanoscale width; and an active region disposed between the first and second electrodes. The active region has a both a non-conducting portion and a source of dopants portion induced by electric field. The non-conducting portion comprises an electronically semiconducting or nominally insulating material and a weak ionic conductor switching material capable of carrying a species of dopants and transporting the dopants under an electric field. The non-conducting portion is in contact with the first electrode and the source of dopants portion is in contact with the second electrode. The second electrode comprises a metal reservoir for the dopants. A crossbar array comprising a plurality of the nanoscale switching devices is also provided. A process for making at least one nanoscale switching device is further provided.
    • 忆阻器包括纳米级宽度的第一电极; 纳米级宽度的第二电极; 以及设置在第一和第二电极之间的有源区。 有源区域具有由电场引起的非导电部分和掺杂剂源部分。 非导电部分包括电子半导体或标称绝缘材料和能够承载一种掺杂剂并在电场下输送掺杂剂的弱离子导体开关材料。 非导电部分与第一电极接触,并且掺杂剂源部分与第二电极接触。 第二电极包括用于掺杂剂的金属储存器。 还提供了包括多个纳米级切换装置的交叉开关阵列。 还提供了制造至少一个纳米级切换装置的方法。