联合数据导频采集和跟踪伽利略E1开放服务信号

B. A. Siddiqui, Jie Zhang, M. Z. H. Bhuiyan, E. Lohan
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引用次数: 16

摘要

全球导航卫星系统(GNSS),例如现代化的全球定位系统(GPS)和正在进行的欧洲伽利略卫星导航系统,合并了新的复合GNSS信号(例如伽利略E1开放服务(OS)信号),它由两个不同的组件组成,数据和导频信道。双通道的存在使得人们可以采用特殊的技术来获取和跟踪这些新的信号。在本文中,作者分析了三种不同的实现策略的性能,即i. Data-only, ii. Data-only。仅限飞行员,iii。联合数据导航仪,用于两种不同的接收器模式:一种是正弦二进制偏移载波(1,1)(SinBOC(1,1))参考接收器,另一种是复合BOC(CBOC)参考接收器。所有的仿真都是在TUT伽利略E1开源信号模拟器中进行的,基于最新的伽利略空间信号接口控制文件(SIS-ICD)。仿真结果表明,单通道采集并非直观预期的最佳信号采集方式。联合数据导频信道将来自数据和导频信道的所有重要功率非相干地结合在一起,最终将信号检测提高到2.8 dB左右,这一点已在本文的背景下通过仿真得到验证。联合数据导频信道在跟踪误差方差方面也比任何单独信道提供了大约3db的改进。本文还将表明,使用正弦BOC(1,1)参考接收器而不是CBOC参考接收器所引起的性能下降可以忽略不计。大多数基于数据-试验组合的结果与直觉预期一致。然而,本文的主要新颖之处在于提出了一个现实而详细的基于simulink的伽利略E1信号模拟器,该模拟器考虑了两种接收器模式,并且已经开放获取用于研究目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Joint Data-Pilot acquisition and tracking of Galileo E1 Open Service signal
Global Navigation Satellite Systems (GNSSs), such as the modernized Global Positioning System (GPS) and the ongoing European satellite navigation system Galileo, incorporate the new composite GNSS signals (e.g., Galileo E1 Open Service (OS) signal), which consist of two different components, the data and pilot channels. The existence of dual channel allows one to adopt special techniques to acquire and track these new signals. In this paper, the authors analyze the performance of three different implementation strategies, namely, i. Data-only, ii. Pilot-only, and iii. Joint Data-Pilot, for two different receiver modes: one with Sine Binary Offset Carrier (1,1) (SinBOC(1,1)) reference receiver, and the other one with Composite BOC (CBOC) reference receiver. All the simulations have been carried out in TUT Galileo E1 open source signal simulator, based on the most recent Galileo Signal-In-Space Interface Control Document (SIS-ICD). The simulation results show that acquisition with individual channel is not the best approach to acquire the signal as intuitively expected. Joint Data-Pilot channel combines all the significant power from data and pilot channels non-coherently that ultimately improves the signal detection around 2.8 dB, which has been verified via simulations in the context of the paper. Joint Data-Pilot channel also provides around 3 dB improvement over any individual channel in terms of tracking error variance. It will also be shown in the paper that the performance deterioration caused by using Sine BOC(1,1) reference receiver instead of CBOC reference receiver is negligible. Most of the findings based on data-pilot combination are as intuitively expected. However, the main novelty of the paper stays in presenting a realistic and detailed Simulink-based simulator for Galileo E1 signal that takes into account two receiver modes, and has already been made open access for research purpose.
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