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Software Receiver Strategies for the Acquisition and Re-Acquisition of Weak GPS Signals

机译:弱GPS信号采集和重新采集的软件接收器策略

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The acquisition of weak GPS signals is a challenging problem. The lack of a priori information regarding the signal parameters typically necessitates a search through an uncertainty space in order to find the signal of interest. To acquire weak signals requires longer observation intervals to accumulate sufficient energy from the signal of interest. Perversely, a direct increase in the observation interval also leads to a narrowing of the Doppler bins, thereby effectively increasing the size of the uncertainty space.This paper investigates various weak signal acquisition strategies, with particular emphasis on software receivers. The acquisition problem is treated as a whole, rather than focusing solely on signal detection aspects. The effect ofresidual frequency errors and data bit transitions are considered, and various techniques for alleviating the problems associated with these signal effects are discussed. Some design rules for constructing weak signal acquisition strategies are introduced.Finally, the application of the ideas discussed is demonstrated with live satellite signals collected in a benign environment. The signals are passed through a variable attenuator which provides attenuation of up to 60 dB. The receiver antenna is in motion during the entire attenuated portion of the test. The reliable acquisition of signals with C/N_0 as low as 20 dB-Hz is demonstrated for two acquisition strategies. The first strategy treats the data modulation as a nuisance parameter, modeling it as an effective loss in C/N_0. The second strategy uses a method of alternating coherent integrations to eliminate the effect of data bit transitions from the decision variable. The first strategy is shown to provide a similar level of reliability, with a significant improvement in mean acquisition time.
机译:弱GPS信号的采集是一个具有挑战性的问题。缺乏关于信号参数的先验信息通常需要在不确定性空间中进行搜索以便找到感兴趣的信号。要获取微弱的信号,需要更长的观察间隔才能从感兴趣的信号中积累足够的能量。相反,观察间隔的直接增加也会导致多普勒波箱的变窄,从而有效地增加了不确定空间的大小。 本文研究了各种弱信号采集策略,特别是软件接收器。采集问题被视为一个整体,而不是仅仅关注信号检测方面。的效果 考虑了残余频率误差和数据位转换,并讨论了各种缓解这些信号效应相关问题的技术。介绍了一些构造微弱信号采集策略的设计规则。 最后,在良性环境中收集的实时卫星信号演示了所讨论思想的应用。信号通过可变衰减器传递,该衰减器可提供高达60 dB的衰减。在测试的整个衰减部分,接收器天线都处于运动状态。两种捕获策略都证明了C / N_0低至20 dB-Hz的信号的可靠捕获。第一种策略将数据调制作为干扰参数,将其建模为C / N_0中的有效损耗。第二种策略使用交替相干积分的方法来消除决策变量中数据位转换的影响。事实证明,第一种策略可提供相似的可靠性,并显着缩短了平均采集时间。

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