An unambiguous detector architecture for Galileo ES signal acquisition

N. Shivaramaiah, A. Dempster
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Abstract

Multiple peaks in autocorrelation functions of Binary Offset Carrier (BOC) modulation in the Galileo signals cause ambiguities during signal acquisition. Some techniques address this problem by compromising receiver sensitivity or acquisition time. The delay and add method addresses this problem by combining delayed versions of the correlator outputs. Types of detectors and the effect of signal filtering were not considered during the formulation of the decision statistic for that method. In this paper we analyze the effect of filtering and detector types on the unambiguous acquisition methods for Galileo E5 signals and compare the acquisition performances.
伽利略ES信号采集的一种明确的探测器结构
伽利略信号中二进制偏置载波(BOC)调制自相关函数中的多峰导致信号采集过程中存在歧义。一些技术通过降低接收机灵敏度或采集时间来解决这个问题。延迟和添加方法通过组合相关器输出的延迟版本来解决此问题。该方法在计算决策统计量时没有考虑检测器的类型和信号滤波的影响。本文分析了滤波和探测器类型对Galileo E5信号无二义采集方法的影响,并比较了两种方法的采集性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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