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    • 1. 发明申请
    • HANDHELD DEVICES AND STRUCTURES TO DETECT STICKY DEVICES HAVING MAGNETS
    • 用于检测具有磁铁的胶带装置的手持装置和结构
    • US20140236514A1
    • 2014-08-21
    • US14062484
    • 2013-10-24
    • David J. IcoveCarl T. LysterDavid M. BanwarthSandra K. Wesson
    • David J. IcoveCarl T. LysterDavid M. BanwarthSandra K. Wesson
    • G01R33/07H04N7/18
    • G01R33/072G01V3/081G01V3/15H04N7/18
    • Apparatus and methods for detecting concealed personal security threats may comprise conventional mirrors and less conventional arrays of Hall-effect sensors and/or magnetometers, preferably at least two axis or three axis sensors or sensors mounted back-to-back. The concealed personal security threats may comprise, for example, sticky devices consisting of geographic position sensors for covertly broadcasting motor vehicle location data, of so-called Improvised Explosive Devices (IED's) which may be covertly or openly affixed to, for example, the undercarriages of motor vehicles using strong magnets and later exploded, the former giving away private location information, the latter causing damage to the motor vehicles to which they are affixed and sticky containers for hiding contraband among other “sticky devices.” Magnetic fields detected by, for example, arrays of Hall-effect sensors and the like may be quantified and stored in processor memory as a vehicle magnetic field signature. A processor receiving magnetic field data collected by the arrays may retrieve and subtract known signatures from acquired magnetic field data for a given vehicle to obtain location for a magnetic field on the vehicle that may be of potential interest as a risk and.
    • 用于检测隐藏的个人安全威胁的装置和方法可以包括传统的反射镜和不太常规的霍尔效应传感器和/或磁力计的阵列,优选地至少两个轴或三轴传感器或背靠背安装的传感器。 隐藏的个人安全威胁可以包括例如由用于隐蔽地广播机动车辆位置数据的地理位置传感器组成的粘性装置,所谓的简易爆炸装置(IED's)可以被隐蔽或公开地固定到例如底架 使用强磁体的汽车后来爆炸,前者放弃了私人位置信息,后者造成对他们所贴附的机动车辆造成损害,并将粘性容器与其他“粘性装置”中的违禁品藏起来。 例如,霍尔效应传感器等的阵列可以被量化并存储在处理器存储器中作为车辆磁场签名。 接收由阵列收集的磁场数据的处理器可以从获得的给定车辆的磁场数据中检索和减去已知的签名,以获得可能具有潜在利益的车辆上的磁场的位置作为风险。
    • 3. 发明申请
    • PASSIVE MICROWAVE SYSTEM AND METHOD FOR PROTECTING A STRUCTURE FROM FIRE THREATS
    • 被动微波系统和保护火警结构的方法
    • US20110155397A1
    • 2011-06-30
    • US12985940
    • 2011-01-06
    • David J. IcoveCarl T. LysterDavid M. Banwarth
    • David J. IcoveCarl T. LysterDavid M. Banwarth
    • A62C2/00
    • G08B17/10G01K11/006G08B13/189G08B17/12G08B19/005G08B29/183
    • An automatic fire suppression system used to provide protection of window glass and other structural elements in aircraft terminals which are exposed to exterior fires caused by natural, accidental, or intentional events comprises a directional passive microwave receiver, a central processor for processing received microwave signals over time and comparing the received signals over time with thermal event signatures stored in memory to selectively actuate a sprinkler system for protecting the window glass in the vicinity of an identified fire event. The memory may further store a model of the aircraft terminal, and the processor utilizes a fire dynamics simulator to simulate a thermal event at the terminal. A related fire suppression process involves the detection of incipient fires through an array of exterior passive microwave heat sensor fire detectors connected to an electronic control processor which identify zones such as 30 to 100 linear foot zones of exterior glass surface and automatically initiates an array of quenching sprinkler heads applying water to the exposed surfaces of glass and other structural elements in response to detection of an identified fire event by its signature.
    • 一种自动灭火系统,用于在由自然,意外或故意事件引起的暴露于外部火灾的飞机终端中提供窗玻璃和其他结构元件的保护,包括定向无源微波接收器,用于处理接收到的微波信号的中央处理器 时间,并将接收的信号随时间比较,存储在存储器中的热事件签名,以选择性地致动喷洒系统,以保护所识别的火灾事件附近的窗玻璃。 存储器可以进一步存储飞行器终端的模型,并且处理器利用火力动力学模拟器来模拟终端处的热事件。 相关的灭火过程涉及通过连接到电子控制处理器的外部无源微波热传感器火焰探测器的阵列来检测初始火焰,该电子控制处理器识别诸如外部玻璃表面的30至100个线性足部区域的区域,并自动启动淬火阵列 喷洒头响应于通过其签名检测到识别的火灾事件而将水施加到玻璃和其它结构元件的暴露表面。
    • 4. 发明申请
    • PASSIVE MICROWAVE SYSTEM AND METHOD FOR PROTECTING A STRUCTURE FROM FIRE THREATS
    • 被动微波系统和保护火警结构的方法
    • US20130278428A1
    • 2013-10-24
    • US13922532
    • 2013-06-20
    • David J. IcoveCarl T. LysterDavid M. Banwarth
    • David J. IcoveCarl T. LysterDavid M. Banwarth
    • G08B17/10
    • G08B17/10G01K11/006G08B13/189G08B17/12G08B19/005G08B29/183
    • An automatic fire suppression system used to provide protection of window glass and other structural elements in aircraft terminals which are exposed to exterior fires caused by natural, accidental, or intentional events comprises a directional passive microwave receiver, a central processor for processing received microwave signals over time and comparing the received signals over time with thermal event signatures stored in memory to selectively actuate a sprinkler system for protecting the window glass in the vicinity of an identified fire event. The memory may further store a model of the aircraft terminal, and the processor utilizes a fire dynamics simulator to simulate a thermal event at the terminal. A related fire suppression process involves the detection of incipient fires through an array of exterior passive microwave heat sensor fire detectors connected to an electronic control processor which identify zones such as 30 to 100 linear foot zones of exterior glass surface and automatically initiates an array of quenching sprinkler heads applying water to the exposed surfaces of glass and other structural elements in response to detection of an identified fire event by its signature.
    • 一种自动灭火系统,用于在由自然,意外或故意事件引起的暴露于外部火灾的飞机终端中提供窗玻璃和其他结构元件的保护,包括定向无源微波接收器,用于处理接收到的微波信号的中央处理器 时间,并将接收的信号随时间比较,存储在存储器中的热事件签名,以选择性地致动喷洒系统,以保护所识别的火灾事件附近的窗玻璃。 存储器可以进一步存储飞行器终端的模型,并且处理器利用火力动力学模拟器来模拟终端处的热事件。 相关的灭火过程涉及通过连接到电子控制处理器的外部无源微波热传感器火焰探测器的阵列来检测初始火焰,该电子控制处理器识别诸如外部玻璃表面的30至100个线性足部区域的区域,并自动启动淬火阵列 喷洒头响应于通过其签名检测到识别的火灾事件而将水施加到玻璃和其它结构元件的暴露表面。