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    • 3. 发明授权
    • System and method for PN correlation and symbol synchronization
    • 用于PN相关和符号同步的系统和方法
    • US07522653B2
    • 2009-04-21
    • US11046361
    • 2005-01-27
    • Dan M. GriffinRichard B. ErtelJohnny M. HarrisKenneth C. BarkZachary C. Bagley
    • Dan M. GriffinRichard B. ErtelJohnny M. HarrisKenneth C. BarkZachary C. Bagley
    • H04B1/00
    • H04B1/7077
    • A method is disclosed for PN correlation and symbol synchronization of a spread spectrum signal at a receiver when a symbol boundary of the spread spectrum signal is not on a PN epoch or is otherwise unknown. The method includes the operation of modulating the spread spectrum signal with a PN code to form a potentially despread signal. The potentially despread signal can be integrated for a plurality of symbol times at a rate of N integrations per symbol time to form N symbol energies per symbol for a plurality of symbols. Each of the N symbol energies can correspond to a different symbol time hypothesis. The N symbol energies from the plurality of symbols can be added respectively to form N summed symbol time hypotheses. The Nth summed symbol time hypothesis having maximum power can be found. The Nth summed symbol time hypothesis can relate to a location of the symbol boundary.
    • 当扩展频谱信号的符号边界不在PN纪元上时,公开了一种在接收机处的扩频信号的PN相关和符号同步的方法,或者以其他方式未知。 该方法包括利用PN码对扩展频谱信号进行调制以形成潜在的解扩信号。 潜在去扩展信号可以以每个符号时间的N个积分的速率被整合为多个符号时间,以对于多个符号形成每个符号的N个符号能量。 N个符号能量中的每一个可以对应于不同的符号时间假设。 可以分别添加来自多个符号的N个符号能量以形成N个相加的符号时间假设。 可以找到具有最大功率的第N个和符号时间假设。 第N个和符号时间假设可以与符号边界的位置有关。
    • 8. 发明授权
    • Digital timing recovery operable at very low or less than zero dB Eb/No
    • 数字定时恢复可操作在非常低或小于零dB Eb / No
    • US07486747B1
    • 2009-02-03
    • US10888280
    • 2004-07-09
    • Zachary C. BagleyChristian Schlegel
    • Zachary C. BagleyChristian Schlegel
    • H04L27/00
    • H04L27/0014H04B1/7093H04L7/0029H04L7/0054H04L25/0206H04L25/024H04L2027/003H04L2027/0053H04L2027/0067
    • A receiver (20) for performing timing recovery over at least one complex channel at low or less than zero SNR (signal power to noise power, in dB) has at least one receive element such as an antenna, an analog-to-digital converter 21 (ADC), a fractional interpolation filter 23, a matched filter 24, and a timing correction loop 26. The timing correction loop 26 selects a minimum mean square error from the output of the matched filter 24 to determine a timing signal output to the interpolation filter 23, and provides one-bit weights to the matched filter 24. Preferably, the timing correction loop 26 includes a magnitude detector 26c, a moving average filter 26b, and a timing error detector 26a that outputs an integer m and fractional μ timing factor to the interpolation filter 23. Within a phase correction loop 27 is a maximum likelihood channel estimator 27b and a phase error detector 27a that controls a phase rotator 22 disposed between the ADC 21 and the interpolation filter 23.
    • 用于在低或小于零SNR(信噪比功率,以dB为单位)的至少一个复信道上执行定时恢复的接收机(20)具有至少一个接收元件,例如天线,模数转换器 21(ADC),分数内插滤波器23,匹配滤波器24和定时校正环路​​26.定时校正回路26从匹配滤波器24的输出中选择最小均方误差,以确定输出到 内插滤波器23,并且向匹配滤波器24提供一位加权。优选地,定时校正回路26包括幅度检测器26c,移动平均滤波器26b和定时误差检测器26a,其输出整数m和分数μ定时 在相位校正环路27中,最大似然信道估计器27b和相位误差检测器27a控制设置在ADC 21和插值滤波器23之间的相位旋转器22。