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Comparison between Galileo CBOC Candidates and BOC(1,1) in Terms of Detection Performance

机译:在检测性能方面,伽利略CBOC候选对象与BOC(1,1)的比较

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Many scientific activities within the navigation field have been focused on the analysis of innovative modulations for both GPS L1C and Galileo E1 OS, after the 2004 agreement between United States and European Commission on the development of GPS and Galileo. The joint effort by scientists of both parties has been focused on the multiplexed binary offset carrier (MBOC) which is defined on the basis of its spectrum, and in this sense different time waveforms can be selected as possible modulation candidates. The goal of this paper is to present the detection performance of the composite BOC implementation of an MBOC signal in terms of detection and false alarm probabilities. A comparison among the CBOC and BOC(1,1) modulations is also presented to show how the CBOC solution, designed to have excellent tracking performance and multipath rejection capabilities, does not limit the acquisition process.
机译:在2004年美国和欧洲委员会就GPS和Galileo的开发达成协议之后,导航领域内的许多科学活动都集中于分析GPS L1C和Galileo E1 OS的创新调制。双方科学家的共同努力已集中在基于其频谱定义的多路复用二进制偏移载波(MBOC)上,在这种意义上,可以选择不同的时间波形作为可能的调制候选者。本文的目的是从检测和虚警概率方面介绍MBOC信号的复合BOC实现的检测性能。还介绍了CBOC和BOC(1,1)调制之间的比较,以显示旨在具有出色的跟踪性能和多径抑制能力的CBOC解决方案如何不限制采集过程。

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