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Implementation Of Code And Carrier Tracking Loops For Software GPS Receivers

机译:软件GPS接收器的代码和载波跟踪环的实现

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Abstract: GPS is playing in very important role in our modern mobile societies. Software approach is very flexible rather than the traditional hardware receivers. The soft-GPS receiver includes two portions: hardware and software. In hardware portion, an antenna, filter, down-converter from RF (Radio Frequency) to IF (Intermediate Frequency), and an ADC (Analog to Digital Converter) are included. In software portion, signal processing such as acquisition, tracking and navigation that runs on general purpose processor is included. The GPS signal is taken from N-FUELS (Full Educational Library of Signals for Navigation) signal simulator. The heart of soft-GPS receiver is the synchronization processes such as acquisition and tracking. In tracking, there are two main loops for code and carrier tracking. The objective of this paper is to analyse and find the optimum discriminator function for the code tracking loop in soft-GPS receivers. The delay lock loop (DLL) is a well-known technique to track the codes for GNSS spread spectrum systems. This paper also presents non-coherent square law DLLs and the impacts of some parameters on DLL discriminators such as number of samples per chip, early-late spacing, different C/ No values where C denotes the signal power and No is the noise spectral density, and the impact of with or without front-end device. The results of discriminator outputs are illustrated by using S-curves. Testing results with the real GPS signal are also described. This optimized discriminator functions can be implemented in any soft-GPS receivers.
机译:摘要:GPS在我们的现代移动社会中起着非常重要的作用。软件方法非常灵活,而不是传统的硬件接收器。 GPS接收器包括两部分:硬件和软件。在硬件部分,包括天线,滤波器,从RF(射频)到IF(中频)的下变频器,以及ADC(模数转换器)。在软件部分中,包括在通用处理器上运行的信号处理,例如采集,跟踪和导航。 GPS信号取自N-FUELS(用于导航的完整教育信号图书馆)信号模拟器。软GPS接收机的心脏是同步过程,例如采集和跟踪。在跟踪中,有两个主要的代码和载波跟踪循环。本文的目的是分析和找到软GPS接收机中代码跟踪环路的最佳鉴别器功能。延迟锁定环(DLL)是一种众所周知的跟踪GNSS扩频系统代码的技术。本文还介绍了非相干平方律DLL以及某些参数对DLL鉴别器的影响,例如每个芯片的样本数,早期间隔,不同的C / No值,其中C表示信号功率,No表示噪声频谱密度,以及使用或不使用前端设备的影响。鉴别器输出的结果通过使用S曲线进行说明。还描述了真实GPS信号的测试结果。这种优化的鉴别器功能可以在任何软GPS接收机中实现。

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