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    • 6. 发明申请
    • MOBILE REPEATER SYSTEM AND METHOD HAVING GEOPHYSICAL LOCATION AWARENESS WITHOUT USE OF GPS
    • 具有GPS功能的移动重复系统和具有地理位置意识的方法
    • US20120309293A1
    • 2012-12-06
    • US13485207
    • 2012-05-31
    • Thomas KummetzMatthew Melester
    • Thomas KummetzMatthew Melester
    • H04B7/15
    • H04B7/15528H04B7/2606
    • A repeater system and method for implementing within a mobile platform includes repeater circuitry configured for repeating signals between devices and signal sources such as base transceiver stations. The repeater circuitry has a plurality of configurable settings for controlling operation of the repeater circuitry. Movement sensors sense the movement of the mobile platform and controller circuitry is configured to use inputs from the movement sensors to determine a current path of the mobile platform and to compare the determined current path to the known path information for the mobile platform for determining the location of the mobile platform and repeater system to vary the configurable settings of the repeater system based upon the determined location. Other information such as identification information from a signal source or information from the mobile platform are also used to vary the configuration and configurable settings of the repeater system.
    • 用于在移动平台内实现的中继器系统和方法包括配置用于重复设备和诸如基站收发信机之类的信号源之间的信号的中继器电路。 中继器电路具有用于控制中继器电路的操作的多个可配置设置。 移动传感器检测移动平台的移动,并且控制器电路被配置为使用来自运动传感器的输入来确定移动平台的当前路径,并将确定的当前路径与移动平台的已知路径信息进行比较,以确定位置 的移动平台和中继器系统,以基于确定的位置来改变中继器系统的可配置设置。 诸如来自信号源的识别信息或来自移动平台的信息的其他信息也用于改变中继器系统的配置和可配置设置。
    • 7. 发明申请
    • SYSTEM AND METHOD FOR LOCATION OF MOBILE DEVICES IN CONFINED ENVIRONMENTS
    • 用于定位环境中移动设备的系统和方法
    • US20110210843A1
    • 2011-09-01
    • US12714602
    • 2010-03-01
    • Thomas Kummetz
    • Thomas Kummetz
    • G08B23/00G08B5/22G08B17/00G08B17/10
    • G01S5/06G01S5/0289G01S19/48H04W24/00
    • The sensor network may include a location capture processing unit; and a plurality of sensors in communication with the location capture processing unit. Each sensor of the plurality of sensors includes a controller and a RF receiver configured to receive RF signals. The RF receiver is in communication with the controller. A localization engine is configured to receive beacon signals transmitted by other sensors in the sensor network. The localization engine is in communication with the controller. The controller of each of the plurality of sensors is further configured to determine a position of its respective sensor using either RF receiver or localization engine or both. The plurality of sensors communicates their position to the location capture processing unit.
    • 传感器网络可以包括位置捕获处理单元; 以及与所述位置捕获处理单元通信的多个传感器。 多个传感器中的每个传感器包括被配置为接收RF信号的控制器和RF接收器。 RF接收器与控制器通信。 定位引擎被配置为接收由传感器网络中的其他传感器传输的信标信号。 本地化引擎与控制器通信。 多个传感器中的每一个的控制器还被配置为使用RF接收器或定位引擎或两者来确定其相应传感器的位置。 多个传感器将其位置传送到位置捕获处理单元。
    • 8. 发明申请
    • GAIN MEASUREMENT AND MONITORING FOR WIRELESS COMMUNICATION SYSTEMS
    • 增强无线通信系统的测量和监测
    • US20110201269A1
    • 2011-08-18
    • US12706001
    • 2010-02-16
    • Neil T. HobbsNelson C. Schmidt, JR.Thomas KummetzFred Phillips
    • Neil T. HobbsNelson C. Schmidt, JR.Thomas KummetzFred Phillips
    • H04B17/02H04B1/38
    • H04B17/02H04B7/15535H04B17/21H04B17/23H04B17/345H04B17/40
    • A method of monitoring an element in wireless communication system is provided. An operational noise measurement is obtained by measuring a noise value outside of a bandwidth of a first device, but within a bandwidth of a second, subsequent device. The operational noise measurement is alternatively obtained by tuning an input band of the element to shift the input band partially or completely outside of a bandwidth of a first device to create an open band or by suppressing an input of the antenna and measuring noise within the open bandwidth of the element of the wireless communication network. A stored parameter is retrieved and compared to the measured operational noise. Alternatively, a leakage signal of the element may be received at a signal receiver and compared to a reference. The reference is a function of components of the wireless communication system in a leakage path of the leakage signal.
    • 提供了一种在无线通信系统中监视元件的方法。 通过测量第一设备的带宽之外但在第二后续设备的带宽内的噪声值来获得操作噪声测量。 操作噪声测量交替地通过调谐元件的输入频带来部分地或完全地在第一设备的带宽之外移动以产生开放频带或通过抑制天线的输入并测量开放内的噪声来获得 无线通信网络的元件的带宽。 检索存储的参数并将其与测量的操作噪声进行比较。 或者,元件的泄漏信号可以在信号接收器处被接收并与参考相比较。 该参考是在泄漏信号的泄漏路径中的无线通信系统的组件的功能。
    • 9. 发明授权
    • Mobile repeater system and method having geophysical location awareness without use of GPS
    • 具有地球物理定位意识的移动中继器系统和方法,不使用GPS
    • US08699943B2
    • 2014-04-15
    • US13485207
    • 2012-05-31
    • Thomas KummetzMatthew Melester
    • Thomas KummetzMatthew Melester
    • H04B7/15
    • H04B7/15528H04B7/2606
    • A repeater system and method for implementing within a mobile platform includes repeater circuitry configured for repeating signals between devices and signal sources such as base transceiver stations. The repeater circuitry has a plurality of configurable settings for controlling operation of the repeater circuitry. Movement sensors sense the movement of the mobile platform and controller circuitry is configured to use inputs from the movement sensors to determine a current path of the mobile platform and to compare the determined current path to the known path information for the mobile platform for determining the location of the mobile platform and repeater system to vary the configurable settings of the repeater system based upon the determined location. Other information such as identification information from a signal source or information from the mobile platform are also used to vary the configuration and configurable settings of the repeater system.
    • 用于在移动平台内实现的中继器系统和方法包括配置用于重复设备和诸如基站收发信机之类的信号源之间的信号的中继器电路。 中继器电路具有用于控制中继器电路的操作的多个可配置设置。 移动传感器检测移动平台的移动,并且控制器电路被配置为使用来自运动传感器的输入来确定移动平台的当前路径,并将确定的当前路径与移动平台的已知路径信息进行比较,以确定位置 的移动平台和中继器系统,以基于确定的位置来改变中继器系统的可配置设置。 诸如来自信号源的识别信息或来自移动平台的信息的其他信息也用于改变中继器系统的配置和可配置设置。
    • 10. 发明授权
    • Gain measurement and monitoring for wireless communication systems
    • 获得无线通信系统的测量和监控
    • US08634766B2
    • 2014-01-21
    • US12706001
    • 2010-02-16
    • Neil T. HobbsNelson C. Schmidt, Jr.Thomas KummetzFred Phillips
    • Neil T. HobbsNelson C. Schmidt, Jr.Thomas KummetzFred Phillips
    • H04B3/36
    • H04B17/02H04B7/15535H04B17/21H04B17/23H04B17/345H04B17/40
    • A method of monitoring an element in wireless communication system is provided. An operational noise measurement is obtained by measuring a noise value outside of a bandwidth of a first device, but within a bandwidth of a second, subsequent device. The operational noise measurement is alternatively obtained by tuning an input band of the element to shift the input band partially or completely outside of a bandwidth of a first device to create an open band or by suppressing an input of the antenna and measuring noise within the open bandwidth of the element of the wireless communication network. A stored parameter is retrieved and compared to the measured operational noise. Alternatively, a leakage signal of the element may be received at a signal receiver and compared to a reference. The reference is a function of components of the wireless communication system in a leakage path of the leakage signal.
    • 提供了一种在无线通信系统中监视元件的方法。 通过测量第一设备的带宽之外但在第二后续设备的带宽内的噪声值来获得操作噪声测量。 操作噪声测量交替地通过调谐元件的输入频带来部分地或完全地在第一设备的带宽之外移动以产生开放频带或通过抑制天线的输入并测量开放内的噪声来获得 无线通信网络的元件的带宽。 检索存储的参数并将其与测量的操作噪声进行比较。 或者,元件的泄漏信号可以在信号接收器处被接收并与参考相比较。 该参考是在泄漏信号的泄漏路径中的无线通信系统的组件的功能。