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    • 31. 发明授权
    • Structure health monitoring system and method
    • 结构健康监测系统及方法
    • US07379845B2
    • 2008-05-27
    • US11486632
    • 2006-07-14
    • Dimitry GorinevskyGrant A. GordonJoseph Nutaro
    • Dimitry GorinevskyGrant A. GordonJoseph Nutaro
    • G06F11/30G01B3/44
    • G05B23/0213G05B23/0283
    • A structure health monitoring (“SHM”) system according to the invention can be deployed in an onboard environment, such as an aircraft, to provide an ongoing damage assessment of structural components on the aircraft. The SHM system reduces or eliminates time consuming and costly manual inspections of aircraft. The SHM system can leverage known sensor technologies to collect sensor data indicative of the structural health of the monitored components. The sensor data is processed and baselined with sensor feature baselines and damage estimate baselines to provide an accurate final damage estimate for the monitored component. The final damage estimate can be further processed or formatted for compatibility with aircraft maintenance systems.
    • 根据本发明的结构健康监测(“SHM”)系统可以部署在诸如飞行器的车载环境中,以对飞机上的结构部件进行持续的损坏评估。 SHM系统减少或消除飞机耗时和昂贵的手动检查。 SHM系统可以利用已知的传感器技术来收集指示被监测部件的结构健康的传感器数据。 对传感器数据进行处理,并使用传感器特征基线和损伤估计基线进行基准测量,以便为受监视部件提供准确的最终损伤估计。 可以对飞机维修系统进行进一步处理或格式化最终的损坏估计。
    • 33. 发明授权
    • System to monitor the health of a structure, sensor nodes, program product, and related methods
    • 系统监控结构的健康状况,传感器节点,程序产品及相关方法
    • US07343265B2
    • 2008-03-11
    • US11286792
    • 2005-11-23
    • Emad Andarawis AndarawisErtugrul BerkcanEladio Clemente DelgadoSamantha Rao
    • Emad Andarawis AndarawisErtugrul BerkcanEladio Clemente DelgadoSamantha Rao
    • G06F19/00
    • G01M5/00G01M5/0041G01M5/0066G01M5/0091G05B23/0213H04Q2209/10
    • A system to monitor the health of a structure, health monitoring sensor nodes, program product, and associated methods are provided. The system includes an array of health monitoring sensor nodes connected to or embedded within a structure to monitor the health of the structure. Each health monitoring sensor node includes sensor elements positioned to sense parameters of the structure and to provide data related to the parameters to a health monitoring sensor node interrogator. Each health monitoring sensor node has a tunable antenna arrangement individually tunable to minimize data collisions between each other of the health monitoring sensor nodes. Each health monitoring sensor node also includes a processor and memory in communication with the processor storing a parameter processing program product adapted to control tuning the antenna arrangement and providing data to the health monitoring sensor node interrogator.
    • 提供了一种监测结构健康的体系,健康监测传感器节点,程序产品和相关方法。 该系统包括连接到或嵌入结构内的健康监测传感器节点阵列,以监测结构的健康状况。 每个健康监测传感器节点包括传感器元件,其定位成感测结构的参数,并将与参数有关的数据提供给健康监测传感器节点询问器。 每个健康监测传感器节点具有单独可调谐的可调谐天线布置,以最小化健康监测传感器节点的彼此之间的数据冲突。 每个健康监测传感器节点还包括处理器和与处理器通信的存储器,存储参数处理程序产品,该参数处理程序产品适于控制调谐天线装置并向健康监测传感器节点询问器提供数据。
    • 34. 发明授权
    • Computer-aided warehouse
    • 计算机辅助仓库
    • US07324854B1
    • 2008-01-29
    • US11527635
    • 2006-09-27
    • Tzu-Chung Yenn
    • Tzu-Chung Yenn
    • G05B11/01G05B15/00G05B23/02
    • G05B23/0213
    • A monitor system is disclosed for use in a warehouse. The monitor system includes a server, a database stage, an operation stage, a monitor stage and a display stage. The database stage is connected to the server for storing various types of data related to access control over stuff. The operation stage includes a plurality of operation units connected to the server for taking actions related to the access control over the stuff. The monitor stage includes a plurality of monitor platforms connected to the server for monitoring scenes of the operation units. The display stage is connected to the server for showing various combinations of the scenes of the operation units.
    • 公开了一种在仓库中使用的监视器系统。 监视器系统包括服务器,数据库级,操作级,监视级和显示级。 数据库阶段连接到服务器,用于存储与访问控制有关的各种类型的数据。 操作阶段包括连接到服务器的多个操作单元,用于采取与所述东西上的访问控制有关的动作。 监视器级包括连接到服务器的多个监视器平台,用于监视操作单元的场景。 显示阶段连接到服务器,用于显示操作单元的场景的各种组合。
    • 35. 发明授权
    • Method for siting detectors within a facility
    • 在设施内选址检测器的方法
    • US07308374B2
    • 2007-12-11
    • US11136077
    • 2005-05-24
    • Nathaniel Jeremy Meyer Gleason
    • Nathaniel Jeremy Meyer Gleason
    • G06F19/00
    • G05B23/0213
    • A method, system and article of manufacture of siting one or more detectors in a facility represented with zones are provided. Signals Si,j representing an effect in zone j in response to a release of contaminant in zone i for one or more flow conditions are provided. A candidate architecture has one or more candidate zones. A limiting case signal is determined for each flow condition for multiple candidate architectures. The limiting case signal is a smallest system signal of multiple system signals associated with a release in a zone. Each system signal is a maximum one of the signals representing the effect in the candidate zones from the release in one zone for the flow condition. For each candidate architecture, a robust limiting case signal is determined based on a minimum of the limiting case signals. One candidate architecture is selected based on the robust limiting case signals.
    • 提供了以区域表示的设施中选择一个或多个检测器的方法,系统和制品。 提供了表示响应于区域i中的污染物对于一个或多个流动条件的释放而在区域j中的影响的信号S i,j i。 候选架构具有一个或多个候选区域。 针对多个候选架构的每个流条件确定限制情况信号。 限制情况信号是与区域中的释放相关联的多个系统信号的最小系统信号。 每个系统信号是表示在一个区域中对于流动条件的释放在候选区域中的影响的最大信号之一。 对于每个候选架构,基于极限情况信号的最小值来确定鲁棒的限制情况信号。 基于鲁棒的限制情况信号选择一个候选架构。