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    • 6. 发明授权
    • Directional spectral awareness with single antenna radio
    • 单天线无线电的定向频谱意识
    • US08514130B1
    • 2013-08-20
    • US13075645
    • 2011-03-30
    • Dana J. JensenMichael N. NewhouseRobert J. FrankJonathan P. Doane
    • Dana J. JensenMichael N. NewhouseRobert J. FrankJonathan P. Doane
    • H04B7/00
    • H04B7/0491H01Q3/446H01Q9/32H01Q19/32
    • The present disclosure is directed to a system and method for providing directional spectral awareness via an antenna system which includes a single parasitic antenna and a processor, the processor being communicatively coupled with the parasitic antenna. The antenna system allows for quick scanning of all sectors included in a plurality of sectors of an RF environment being monitored by the antenna system. The antenna system also allows for monitoring sectors of interest. The directionality of the parasitic antenna of the antenna system may reduce interference and multipath along with providing improved SNR due to antenna gain, thereby allowing for collection of signals of interest in a more favorable environment, thereby enabling analysis such as frequency and spatial use, signal detection, signal identification, and source geolocation to succeed when it may have failed if an omni-directional antenna were used.
    • 本公开涉及一种用于经由包括单个寄生天线和处理器的天线系统提供定向频谱感知的系统和方法,所述处理器与所述寄生天线通信耦合。 天线系统允许对由天线系统监控的RF环境的多个扇区中包括的所有扇区进行快速扫描。 天线系统还允许监视感兴趣的部门。 天线系统的寄生天线的方向性可以减少干扰和多路径以及由于天线增益而提供改善的SNR,从而允许在更有利的环境中收集感兴趣的信号,从而使得诸如频率和空间使用的信号 检测,信号识别和源地理位置,如果使用全向天线可能失败。
    • 10. 发明授权
    • Control of reconfigurable SIS/MAC protocols used in wireless communication devices
    • 控制无线通信设备中使用的可重新配置的SIS / MAC协议
    • US07450523B1
    • 2008-11-11
    • US11194779
    • 2005-08-01
    • Richard L. RobertsonRobert J. Frank
    • Richard L. RobertsonRobert J. Frank
    • H04L12/26
    • H04L41/082H04W8/245
    • A method, a device, and a system for reconfiguring communication transmission characteristics in response to a changing communication environment is provided. An environment at a communication device is characterized to determine if a transmission parameter associated with processing of a communication signal at a physical layer or a network interface layer should change based on current conditions at the communication device. If a need is identified, a second transmission parameter is selected based on the environment monitoring. A request identifying the second transmission parameter is sent to a manager device using an existing communication link. A response from the manager device is received indicating acceptance or rejection of use of the second transmission parameter in communicating with a second communication device. If the response indicates acceptance of use of the second transmission parameter, the physical layer and/or the network interface layer are reconfigured based on the selected second transmission parameter.
    • 提供了一种响应于不断变化的通信环境来重新配置通信传输特性的方法,设备和系统。 通信设备的环境的特征在于确定与物理层或网络接口层处的通信信号的处理相关联的传输参数是否应当改变,基于通信设备的当前状况。 如果确定需要,则基于环境监视选择第二传输参数。 使用现有通信链路将识别第二传输参数的请求发送到管理器设备。 接收到来自管理器设备的响应,指示在与第二通信设备进行通信时接受或拒绝使用第二传输参数。 如果响应指示接受使用第二传输参数,则基于所选择的第二传输参数重新配置物理层和/或网络接口层。