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    • 4. 发明授权
    • Low IF receiver
    • 低IF接收机
    • US06577855B1
    • 2003-06-10
    • US09377357
    • 1999-08-19
    • Paul A. MooreMichael E. BarnardAstrid Paula Maria Schweer
    • Paul A. MooreMichael E. BarnardAstrid Paula Maria Schweer
    • H04B126
    • H04B1/1638H04B1/28
    • A low IF receiver suitable for use in cellular and cordless telephones and TV tuners, comprises input signal receiving means(10), quadrature related frequency down conversion means including first and second mixing means(14, 15) having first inputs(12, 13) coupled to the input signal receiving means and a local oscillator means(16) for generating a local oscillator signal having a frequency offset from a nominal centre frequency of the input signal coupled to second inputs(18, 19) of the first and second mixing means, a channel selectivity polyphase filtering means(20) for selecting a wanted channel signal from outputs of the first and second mixing means, means(26, 28, 30) for detecting when the quality of the frequency down converted signal becomes unacceptable due a large adjacent channel interfering component and means responsive to said detection for changing the local oscillator frequency by at least twice the low IF or one channel bandwidth to displace the large interfering component outside the bandwidth of the channel selectivity polyphase filtering means(20) and simultaneously changing the centre frequency of the polyphase filter.
    • 适用于蜂窝和无绳电话和电视调谐器的低IF接收机包括输入信号接收装置(10),正交相关频率下变频装置,包括具有第一输入端(12,13)的第一和第二混频装置(14,15) 耦合到输入信号接收装置和本地振荡器装置(16),用于产生本地振荡器信号,该本地振荡器信号具有与耦合到第一和第二混合装置的第二输入端(18,19)的输入信号的标称中心频率的偏移 ,用于从所述第一和第二混合装置的输出中选择所需信道信号的信道选择性多相滤波装置(20),用于检测所述降频转换信号的质量何时被大量接收的装置(26,28,30) 相邻信道干扰分量和响应于所述检测的装置,用于将本地振荡器频率改变至少两倍的低IF或一个信道带宽以置换大干扰化合物 在通道选择性多相滤波装置(20)的带宽之外,同时改变多相滤波器的中心频率。
    • 5. 发明授权
    • Integrated receiver
    • 集成接收机
    • US6035186A
    • 2000-03-07
    • US815099
    • 1997-03-11
    • Paul A. MooreMichael E. Barnard
    • Paul A. MooreMichael E. Barnard
    • H03D1/22H03D3/00H03H7/21H03H11/04H03H11/08H04B1/16H04B1/30H04B1/26
    • H03H7/21H03D3/008H03D3/009H04B1/30H03H2007/0192
    • An integrated receiver in which in order to permit ac-coupling between stages and to remove the effects of strong directly detected amplitude modulated interfering signals lying within the input band of the receiver, the input signal is frequency down converted using a local oscillator signal which provides an intermediate frequency (F.sub.if) which lies above the frequency of the directly detected interferer (F.sub.AMP). The outputs from the frequency down converters (14, 16, 18, 20) are ac coupled to filtering means the outputs of which are applied to an equalizer (52). The filtering means may comprise a polyphase filter (50), the frequency response of which is distorted by the ac coupling capacitors (54, 56). By applying the outputs of the filtering means to the equalizer (52) substantially all the distortion introduced by the ac coupling capacitors (54, 56) on the filter response is removed to provide an acceptable signal for detection and recovery of the modulating signal.
    • 一种集成接收机,其中为了允许级之间的交流耦合并且消除位于接收机的输入频带内的强直接检测的调幅干扰信号的影响,输入信号使用提供的本地振荡器信号进行降频转换 位于直接检测到的干扰源(FAMP)的频率之上的中频(Fif)。 来自降频转换器(14,16,18,20)的输出被耦合到滤波装置,其输出被施加到均衡器(52)。 滤波装置可以包括多相滤波器(50),其频率响应由交流耦合电容器(54,56)变形。 通过将滤波装置的输出施加到均衡器(52),消除了由交流耦合电容器(54,56)引入的滤波器响应所引起的所有失真,以提供用于调制信号的检测和恢复的可接受的信号。
    • 6. 再颁专利
    • Vehicle location system
    • 车辆定位系统
    • USRE35498E
    • 1997-04-29
    • US250782
    • 1994-05-27
    • Michael E. Barnard
    • Michael E. Barnard
    • G01C21/00G01S1/00G01S5/00G01S5/14G01S19/09G01S19/41H04Q7/34H04B7/185G01S5/02
    • G01S5/0036G01S19/09G01S19/41
    • Signals from a number of NAVSTAR global positioning system (GPS) satellites (11,12,13,14) are received by a receiver (16) in a vehicle (15) and a segment of the signals is stored in a memory (18) prior to retransmission by a transmitter (19). A base station (35) receives these transmissions from the mobile unit using a first receiver (36). The base station also receives signals directly from the NAVSTAR GPS satellites using a second receiver (38). A control and calculating apparatus (37) within the base station can determine the ephemeris (course) information for the satellites and can measure the transmission times or propagation delays of signals between the satellites and the vehicle and with this information the control and calculating apparatus can calculate the position of the vehicle unit.
    • 来自多个NAVSTAR全球定位系统(GPS)卫星(11,12,13,14)的信号由车辆(15)中的接收机(16)接收,并且一段信号被存储在存储器(18)中, 在由发射机(19)重传之前。 基站(35)使用第一接收机(36)从移动单元接收这些传输。 基站还使用第二接收机(38)从NAVSTAR GPS卫星直接接收信号。 基站内的控制和计算装置(37)可以确定卫星的星历(航线)信息,并且可以测量卫星和车辆之间的信号的传输时间或传播延迟,并且利用该信息,控制和计算装置可以 计算车辆单元的位置。