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    • 22. 发明申请
    • RADAR DETECTION ALGORITHM
    • 雷达检测算法
    • US20100022213A1
    • 2010-01-28
    • US12573361
    • 2009-10-05
    • Milind KopikareHui Yao LinJames YeeChuong Vu
    • Milind KopikareHui Yao LinJames YeeChuong Vu
    • H04B1/06
    • G01S7/021H04K3/226H04K3/822H04K2203/36
    • A system includes a radio frequency transceiver. A baseband processor includes an automatic gain control module. The automatic gain control module has a gain that changes from and subsequently returns to a predetermined value each time the radio frequency transceiver receives a radio frequency signal. The baseband processor is configured to selectively generate an interrupt signal each time a radio frequency signal is received based on a magnitude of the change in the gain of the automatic gain control module and a length of time in which the gain returns to the predetermined value. A control module is configured to identify a radio frequency signal received by the radio frequency transceiver as a radar signal in response to the baseband processor having generated a plurality of interrupt signals at substantially equal time intervals.
    • 系统包括射频收发器。 基带处理器包括自动增益控制模块。 自动增益控制模块具有在每次射频收发器接收到射频信号时变化并随后返回到预定值的增益。 基带处理器被配置为基于自动增益控制模块的增益的变化的大小和增益返回到预定值的时间长度来每当接收到射频信号时选择性地产生中断信号。 控制模块被配置为响应于基带处理器以基本相等的时间间隔产生多个中断信号,将由射频收发机接收的射频信号识别为雷达信号。
    • 27. 发明授权
    • Antenna diversity system and method
    • 天线分集系统及方法
    • US08351888B1
    • 2013-01-08
    • US13225078
    • 2011-09-02
    • Milind KopikareBrian BossoPartho Mishra
    • Milind KopikareBrian BossoPartho Mishra
    • H04B7/00
    • H04B7/061H04B7/0608H04B7/0814H04B17/336
    • A wireless network device including a signal-to-noise ratio (SNR) module, an error rate module, and an antenna selection module. The signal-to-noise ratio measures i) a first average SNR while utilizing a first antenna, and ii) a second average sNR while utilizing a second antenna. The error rate module measures i) a first error rate while utilizing the first antenna, and ii) a second error rate while utilizing the second antenna. The antenna selection module selects the first antenna or the second antenna based on i) a first comparison of the first average signal-to-noise ratio to the second average signal-to-noise ratio, and ii) a second comparison of the first error rate to the second error rate. The second comparison is selectively performed depending on the first comparison.
    • 一种包括信噪比(SNR)模块,错误率模块和天线选择模块的无线网络设备。 信噪比测量i)利用第一天线的第一平均SNR,以及ii)第二平均sNR,同时利用第二天线。 错误率模块在利用第一天线时测量i)第一错误率,以及ii)利用第二天线时的第二错误率。 天线选择模块基于i)第一平均信噪比与第二平均信噪比的第一比较来选择第一天线或第二天线,以及ii)第一误差的第二比较 率达到第二个错误率。 根据第一比较选择性地执行第二比较。
    • 29. 发明授权
    • Radar detection algorithm
    • 雷达检测算法
    • US08041317B2
    • 2011-10-18
    • US12573361
    • 2009-10-05
    • Milind KopikareHui Yao LinJames YeeChuong Vu
    • Milind KopikareHui Yao LinJames YeeChuong Vu
    • H04K3/00H04B17/00H04B1/06H04B7/00
    • G01S7/021H04K3/226H04K3/822H04K2203/36
    • A system includes a radio frequency transceiver. A baseband processor includes an automatic gain control module. The automatic gain control module has a gain that changes from and subsequently returns to a predetermined value each time the radio frequency transceiver receives a radio frequency signal. The baseband processor is configured to selectively generate an interrupt signal each time a radio frequency signal is received based on a magnitude of the change in the gain of the automatic gain control module and a length of time in which the gain returns to the predetermined value. A control module is configured to identify a radio frequency signal received by the radio frequency transceiver as a radar signal in response to the baseband processor having generated a plurality of interrupt signals at substantially equal time intervals.
    • 系统包括射频收发器。 基带处理器包括自动增益控制模块。 自动增益控制模块具有在每次射频收发器接收到射频信号时变化并随后返回到预定值的增益。 基带处理器被配置为基于自动增益控制模块的增益的变化的大小和增益返回到预定值的时间长度来每当接收到射频信号时选择性地产生中断信号。 控制模块被配置为响应于基带处理器以基本相等的时间间隔产生多个中断信号,将由射频收发机接收的射频信号识别为雷达信号。