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    • 1. 发明申请
    • SECURITY SYSTEM USING LADAR-BASED SENSORS
    • 使用基于LADAR的传感器的安全系统
    • US20100053330A1
    • 2010-03-04
    • US12198678
    • 2008-08-26
    • Dean R. HellicksonKurt HolmquistJames CookRobert BurnsAndrew W. Guyette
    • Dean R. HellicksonKurt HolmquistJames CookRobert BurnsAndrew W. Guyette
    • H04N7/18G06K9/00
    • G01S17/023G01S7/4802G01S17/42G01S17/89G01S19/13G08B13/181G08B13/19645
    • A security sensor system comprises one or more laser detection and ranging (LADAR) sensors configured for accumulation of three-dimensional image data. In one embodiment, the one or more LADAR sensors each comprise a LADAR device, such as a MEMS device, configured to transmit a plurality of laser pulses, and a microprocessor operatively coupled to the LADAR device. One or more data storage devices is operatively coupled to the microprocessor and configured to store the three-dimensional image data, as well as predetermined protected area boundary and fixed object definitions. A GPS receiver can be operatively coupled to the microprocessor and a GPS antenna. The microprocessor is configured to perform a LADAR image analysis that compares the three-dimensional image data with the protected area boundary and fixed object definitions to identify one or more potential intruders.
    • 安全传感器系统包括被配置用于累积三维图像数据的一个或多个激光检测和测距(LADAR)传感器。 在一个实施例中,一个或多个LADAR传感器各自包括被配置为传输多个激光脉冲的LADAR装置,诸如MEMS装置,以及可操作地耦合到LADAR装置的微处理器。 一个或多个数据存储设备可操作地耦合到微处理器并被配置为存储三维图像数据以及预定的保护区域边界和固定对象定义。 GPS接收机可以可操作地耦合到微处理器和GPS天线。 微处理器被配置为执行将三维图像数据与保护区边界和固定对象定义进行比较的LADAR图像分析,以识别一个或多个潜在入侵者。
    • 2. 发明授权
    • Security system using LADAR-based sensors
    • 使用基于LADAR的传感器的安全系统
    • US08294881B2
    • 2012-10-23
    • US12198678
    • 2008-08-26
    • Dean R. HellicksonKurt HolmquistJames CookAndrew W. GuyetteRobert Burns
    • Dean R. HellicksonKurt HolmquistJames CookAndrew W. GuyetteRobert Burns
    • G01C3/08
    • G01S17/023G01S7/4802G01S17/42G01S17/89G01S19/13G08B13/181G08B13/19645
    • A security sensor system comprises one or more laser detection and ranging (LADAR) sensors configured for accumulation of three-dimensional image data. In one embodiment, the one or more LADAR sensors each comprise a LADAR device, such as a MEMS device, configured to transmit a plurality of laser pulses, and a microprocessor operatively coupled to the LADAR device. One or more data storage devices is operatively coupled to the microprocessor and configured to store the three-dimensional image data, as well as predetermined protected area boundary and fixed object definitions. A GPS receiver can be operatively coupled to the microprocessor and a GPS antenna. The microprocessor is configured to perform a LADAR image analysis that compares the three-dimensional image data with the protected area boundary and fixed object definitions to identify one or more potential intruders.
    • 安全传感器系统包括被配置用于累积三维图像数据的一个或多个激光检测和测距(LADAR)传感器。 在一个实施例中,一个或多个LADAR传感器各自包括被配置为传输多个激光脉冲的LADAR装置,诸如MEMS装置,以及可操作地耦合到LADAR装置的微处理器。 一个或多个数据存储设备可操作地耦合到微处理器并被配置为存储三维图像数据以及预定的保护区域边界和固定对象定义。 GPS接收机可以可操作地耦合到微处理器和GPS天线。 微处理器被配置为执行将三维图像数据与保护区边界和固定对象定义进行比较的LADAR图像分析,以识别一个或多个潜在入侵者。
    • 4. 发明授权
    • System and method of automatically maintaining a line-of-sight communication channel
    • 自动维护视线通信通道的系统和方法
    • US08078207B2
    • 2011-12-13
    • US12506730
    • 2009-07-21
    • Robert BurnsKurt HolmquistDean R. Hellickson
    • Robert BurnsKurt HolmquistDean R. Hellickson
    • H04B7/00
    • H04W76/14H04B17/309H04W64/00H04W72/00
    • One exemplary embodiment is directed to a method of automatically maintaining a line-of-sight communication channel. The method comprises determining information about each communication resource that is accessible in a region through which a mobile system is moving. The method further comprises determining information about the mobile system. The method further comprises performing a line-of-sight (LOS) analysis for each of the communication resources based at least in part on a respective location and a respective elevation for the respective communication resource and the current location of the mobile system and a current elevation for the mobile system. The method further comprises determining if a new communication link should be established with at least one of the communication resources based at least on the LOS analyses that were performed and establishing the new communication link if it is determined that the new communication link should be established.
    • 一个示例性实施例涉及一种自动维持视线通信信道的方法。 该方法包括确定关于移动系统正在移动的区域中可访问的每个通信资源的信息。 该方法还包括确定关于移动系统的信息。 该方法还包括至少部分地基于各个通信资源的相应位置和相应高程以及移动系统的当前位置和当前的当前位置来执行每个通信资源的视距(LOS)分析 高程为移动系统。 所述方法还包括:如果确定应该建立新的通信链路,则至少基于所执行的LOS分析来确定是否应该与至少一个通信资源建立新的通信链路,并建立新的通信链路。
    • 5. 发明申请
    • SYSTEM AND METHOD OF AUTOMATICALLY MAINTAINING A LINE-OF-SIGHT COMMUNICATION CHANNEL
    • 自动维护线路通信通道的系统和方法
    • US20110021231A1
    • 2011-01-27
    • US12506730
    • 2009-07-21
    • Robert BurnsKurt HolmquistDean R. Hellickson
    • Robert BurnsKurt HolmquistDean R. Hellickson
    • H04B7/00
    • H04W76/14H04B17/309H04W64/00H04W72/00
    • One exemplary embodiment is directed to a method of automatically maintaining a line-of-sight communication channel. The method comprises determining information about each communication resource that is accessible in a region through which a mobile system is moving. The method further comprises determining information about the mobile system. The method further comprises performing a line-of-sight (LOS) analysis for each of the communication resources based at least in part on a respective location and a respective elevation for the respective communication resource and the current location of the mobile system and a current elevation for the mobile system. The method further comprises determining if a new communication link should be established with at least one of the communication resources based at least on the LOS analyses that were performed and establishing the new communication link if it is determined that the new communication link should be established.
    • 一个示例性实施例涉及一种自动维持视线通信信道的方法。 该方法包括确定关于移动系统正在移动的区域中可访问的关于每个通信资源的信息。 该方法还包括确定关于移动系统的信息。 该方法还包括至少部分地基于各个通信资源的相应位置和相应高程以及移动系统的当前位置和当前的当前位置来执行每个通信资源的视距(LOS)分析 高程为移动系统。 所述方法还包括:如果确定应该建立新的通信链路,则至少基于所执行的LOS分析来确定是否应该与至少一个通信资源建立新的通信链路,并建立新的通信链路。
    • 9. 发明申请
    • ELECTRONIC VIBRATION SENSOR
    • 电子振动传感器
    • US20070272023A1
    • 2007-11-29
    • US11419938
    • 2006-05-23
    • Michael D. DwyerDean R. Hellickson
    • Michael D. DwyerDean R. Hellickson
    • G01H11/00
    • G01H1/003
    • An electronic sensor is disclosed. The electronic sensor includes a processor, a processor memory coupled to the processor, and at least one input/output block in communication with the processor and with at least one external component monitor. The sensor further includes one or more accelerometers in communication with the processor and coupled directly to at least one component, the one or more accelerometers sensing one or more mechanical vibrations from the at least one component, and the one or more mechanical vibrations oscillating below 1 MHz. The processor compares the one or more mechanical vibrations with a plurality of vibration samples programmed into the processor memory, each vibration sample specific to at least one sensor application.
    • 公开了一种电子传感器。 电子传感器包括处理器,耦合到处理器的处理器存储器以及与处理器和至少一个外部元件监视器通信的至少一个输入/输出块。 传感器还包括与处理器通信并直接耦合到至少一个部件的一个或多个加速度计,所述一个或多个加速度计感测来自至少一个部件的一个或多个机械振动,以及一个或多个振动在1以下的机械振动 MHz。 处理器将一个或多个机械振动与编程到处理器存储器中的多个振动样本进行比较,每个振动样本特定于至少一个传感器应用。