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WEAK SIGNAL GPS SYNCHRONIZATION FOR LOCATING IN-BUILDING CELLULAR TELEPHONES

机译:弱信号GPS同步用于定位内置蜂窝电话

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This paper investigates the application of a parallel noncoherentmatched filter that can allow GPS signal acquisition even for the very low SNR signals found within large buildings, Recent government regulations require technology that can supply emergency "9-1-1" dispatchers with cellular telephone location to within 50 meters and this is very difficult with current technology. With surroundings at room temperature, our simulation results show codephase acquisition at GPS signal strengths as low as -175dBW (29dBHz). Segmentation of the matched filter and non-coherent summation allows Doppler and carrier frequency offsets as large a 5 kHz. The matched filter operates at half-chip intervals and provides a correlation output for each of the 2046 codephases in the 1023 chip code sequence. These outputs are individually accumulated (or averaged) over many code cycles to improve the probability of correct codephase detection. At -175dBW signal strength, simulations indicate a mean acquisition time of 1.2 seconds. After accumulating for 10,000 cycles (10 seconds), the probability of correct detection exceeds 99percent.
机译:本文调查了一个平行的非体力散滤器的应用,即使在大型建筑物内发现的非常低的SNR信号也可以允许GPS信号采集,最近的政府法规要求提供具有蜂窝电话地点的紧急“9-1-1”调度员的技术在50米范围内,目前的技术非常困难。在室温下,我们的仿真结果显示了GPS信号强度低至-175dBW(29dbHz)的核检序列采集。匹配滤波器和非相干求和的分割允许多普勒和载波频率偏移为大于5 kHz。匹配的滤波器以半芯片间隔操作,并为1023芯片代码序列中的2046个窝颈中的每一个提供相关输出。这些输出在许多代码周期上单独累积(或平均)以提高正确的亚氏囊序列检测的概率。在-175dbw信号强度下,模拟表示平均获取时间为1.2秒。在累积10,000个循环(10秒)后,正确检测的概率超过99%。

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