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低轨增强全球导航卫星系统接收机中信号采集与多普勒跟踪的结构与性能分析

Structure and Performance Analysis of Signal Acquisition and Doppler Tracking in LEO Augmented GNSS Receiver.

作者信息

Cheng Li, Dai Yonghong, Guo Wenfei, Zheng Jiansheng

机构信息

School of Electronic Information, Wuhan University, Wuhan 430079, China.

GNSS Research Center, Wuhan University, Wuhan 430079, China.

出版信息

Sensors (Basel). 2021 Jan 13;21(2):525. doi: 10.3390/s21020525.

Abstract

Due to the low signal power, the Global Navigation Satellite System (GNSS) signal is vulnerable to interference and even cannot be captured or tracked in harsh environments. As an alternative, the Low Earth Orbit (LEO) satellite has been widely used in the navigation field due to the advantages of low cost and strong signals. It is becoming a significant component of the new combined navigation system with GNSS. The combination of an LEO Doppler signal and GNSS observables can improve the positioning accuracy and high-precision positioning convergence time of the GNSS receiver. However, the GNSS signal receiving capability cannot be improved from this data fusion level. We propose a novel assisted structure where GNSS signal acquisition and Doppler tracking are assisted by LEO Doppler positioning. The receiver uses the LEO signal to achieve Doppler positioning firstly. Then, the coarse position with the GNSS navigation messages received from LEO, as well as the estimated clock information, is used to assist in the acquisition and tracking of GNSS. In this way, the GNSS receiver's sensitivity can get the benefit from this integrated system. The paper presents the structure of the assisted receiver and analyzes the assisted GNSS signal acquisition and carrier tracking performance in detail. Simulation experiments of this assisted structure are carried out to verify its superiority of acquisition and tracking sensitivity in comparison with standalone GNSS receivers. Theoretical analysis and experimental results show that the proposed acquisition method can achieve 90% detection probability at a carrier-to-noise ratio (C/N) of 15 dB-Hz, which is about 8 dB higher than the conventional acquisition method without assistance; the proposed tracking method can track weak signals of dB-Hz, which is about 4 dB higher than the conventional method. Therefore, this novel LEO-assisted receiver has significantly improved weak signal acquisition and tracking sensitivity.

摘要

由于信号功率较低,全球导航卫星系统(GNSS)信号容易受到干扰,在恶劣环境中甚至无法被捕获或跟踪。作为一种替代方案,低地球轨道(LEO)卫星因其低成本和强信号的优势,已在导航领域得到广泛应用。它正成为与GNSS组成的新型组合导航系统的重要组成部分。LEO多普勒信号与GNSS观测值相结合,可以提高GNSS接收机的定位精度和高精度定位收敛时间。然而,从这种数据融合层面无法提高GNSS信号接收能力。我们提出一种新颖的辅助结构,利用LEO多普勒定位辅助GNSS信号捕获和多普勒跟踪。接收机首先利用LEO信号实现多普勒定位。然后,利用从LEO接收到的GNSS导航消息得到的粗略位置以及估计的时钟信息,辅助GNSS的捕获和跟踪。通过这种方式,GNSS接收机的灵敏度可以从这个集成系统中受益。本文介绍了辅助接收机的结构,并详细分析了辅助GNSS信号捕获和载波跟踪性能。针对这种辅助结构进行了仿真实验,以验证其与独立GNSS接收机相比在捕获和跟踪灵敏度方面的优越性。理论分析和实验结果表明,所提出的捕获方法在载波噪声比(C/N)为15 dB-Hz时能实现90%的检测概率,比无辅助的传统捕获方法高出约8 dB;所提出的跟踪方法能够跟踪-16 dB-Hz 的弱信号,比传统方法高出约4 dB。因此,这种新型的LEO辅助接收机显著提高了弱信号捕获和跟踪灵敏度。

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本文引用的文献

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