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Software radio global navigation satellite system (GNSS) receiver front-end design: sampling and jitter considerations

机译:软件无线电全球导航卫星系统(GNSS)接收机前端设计:采样和抖动注意事项

摘要

This thesis examines the sampling and jitter specifications and considerations for Global Navigation Satellite Systems (GNSS) software receivers. Software Radio (SWR) technologies are being used in the implementation of communication receivers in general and GNSS receivers in particular. With the advent of new GPS signals, and a range of new Galileo and GLONASS signals soon becoming available, GNSS is an application where SWR and software-defined radio (SDR) are likely to have an impact. The sampling process is critical for SWR receivers where it occurs as close to the antenna as possible. One way to achieve this is by BandPass Sampling (BPS), which is an undersampling technique that exploits aliasing to perform downconversion. In this thesis, the allowable sampling frequencies are calculated and analyzed for the multiple frequency BPS software radio GNSS receivers. The SNR degradation due to jitter is calculated and the required jitter standard deviation allowable for wach GNSS band of interest is evaluated and a basic jitter budget is calculated that could assist in the design of multiple frequency SWR GNSS receivers. Analysis shows that psec-level jitter specifications are required in order to keep jitter noise well below the thermal noise for software radio satellite navigation receivers. However, analysis of a BPSK system shows that large errors occur if the jittered sample crosses a data bit boundary. However, the signal processing techniques required to process the BOC modulation are much more challenging than those for traditional BPSK. BOC and AltBOC have more transitions per chip of spreading code and hence jitter creates greater SNR degradation. This work derives expressions for noise due to jitter taking into account the transition probability in QPSK, BOC, AltBOC systems. Both simulations and analysis are used to give a better understanding of jitter effects on Software Radio GNSS receivers.
机译:本文研究了全球导航卫星系统(GNSS)软件接收器的采样和抖动规范以及注意事项。一般在通信接收器的实现中,尤其是在GNSS接收器的实现中,使用了软件无线电(SWR)技术。随着新的GPS信号的出现以及一系列新的伽利略和GLONASS信号的出现,GNSS成为了SWR和软件无线电(SDR)可能产生影响的应用。采样过程对于SWR接收机至关重要,因为SWR接收机应尽可能靠近天线。一种实现此目的的方法是通过带通采样(BPS),这是一种欠采样技术,利用别名来执行下变频。本文对多频BPS软件无线电GNSS接收机的容许采样频率进行了计算和分析。计算由于抖动引起的SNR下降,并评估每个感兴趣的GNSS频带允许的所需抖动标准偏差,并计算基本抖动预算,该预算可以帮助设计多频SWR GNSS接收机。分析表明,为了使抖动噪声远低于软件无线电卫星导航接收器的热噪声,需要psec级抖动规范。但是,对BPSK系统的分析表明,如果抖动样本越过数据位边界,则会发生较大的错误。但是,处理BOC调制所需的信号处理技术比传统的BPSK更具挑战性。 BOC和AltBOC的每个码片扩展码具有更多的跳变,因此抖动会造成更大的SNR下降。这项工作考虑了QPSK,BOC,AltBOC系统中的跃迁概率,得出了由于抖动引起的噪声表达式。仿真和分析都可以更好地理解抖动对软件无线电GNSS接收器的影响。

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