Satellite Navigation Signal Processing Technology Based on the Integration of Communication and Navigation

全球导航卫星系统应用 全球导航卫星系统增强 计算机科学 通信卫星 卫星导航 传输(电信) 通信系统 卫星 信号(编程语言) 导航系统 多路复用 电信 全球定位系统 实时计算 工程类 航空航天工程 程序设计语言
作者
Zhaoliang Duan,Hongsheng Li
标识
DOI:10.1109/iccect60629.2024.10545743
摘要

This article delves deeply into the research of satellite navigation signal processing technology based on the integration of communication and navigation functions. As an innovative satellite communication technology, the integrated communication and navigation system deeply integrates satellite navigation and satellite communication functions, providing users with high-precision positioning and efficient communication services. This study fully leverages the advantages of low-Earth orbit (LEO) satellites, achieving continuous coverage and efficient services across a vast geographic area by fusing broadcast communication signals with navigation signals. To address the issues of different frequencies for communication and navigation signals and the multiplexing of multiple signal components, this article proposes an innovative scheme based on phase-optimized constant envelope transmission technology, which realizes the constant envelope multiplexing of multiple frequencies and signal components, effectively integrating communication and navigation functions. The article elaborates on the principles of the integrated communication and navigation system, the design principles of the integrated communication and navigation transmission signals based on LEO, and the signal processing process, including the working principles of GNSS receivers, satellite integrated communication and navigation signal processing methods, and specific implementation flows. Through this study, not only has the efficiency and performance of satellite communication systems been improved, but it also provides theoretical support and practical guidance for the further integration and innovation of satellite navigation and communication technologies in the future. The results of this study are of great significance for advancing the development of satellite navigation and communication fields.
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