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GNSS卫星钟性能分析与预报软件设计与实现

吕传磊 雷雨 赵丹宁

全球定位系统2025,Vol.50Issue(5):51-59,9.
全球定位系统2025,Vol.50Issue(5):51-59,9.DOI:10.12265/j.gnss.2025067

GNSS卫星钟性能分析与预报软件设计与实现

Software design for performance analysis and prediction of GNSS satellite clock offset

吕传磊 1雷雨 1赵丹宁2

作者信息

  • 1. 西安邮电大学计算机学院,西安 710121
  • 2. 宝鸡文理学院电子电气工程学院,宝鸡 721016
  • 折叠

摘要

Abstract

The GNSS satellite clock directly affects the performance of positioning,navigation,and timing services.The analysis and prediction of satellite clock performance is an important task in GNSS monitoring and evaluation.According to the engineering practice requirements for performance analysis and prediction of satellite clocks,a visual satellite clock performance analysis and prediction software is designed and conducted using MATLAB language.The software provides functions such as clock offset data editing,quality control,characteristic analysis,and modeling and prediction.It can achieve batch processing of clock error data with the advantages of simple operation,strong interactivity,and data visualization.The test results show that the developed software can perform satellite clock performance analysis and prediction with just one click.The frequency drift rate,frequency stability and spectrum analysis results of GPS satellite clocks derived from this software are consistent with those from the Stable32 software.As for satellite clock prediction,the mean accuracy of the GPS satellite clock bias prediction for 24 h is 1 ns,which is higher than the 2.13 ns accuracy of the predicted clock products provided by the International GNSS Service(IGS).The prediction accuracy is improved by 53.05%.It proves that the software has high reliability and practicality.

关键词

GNSS/卫星钟差/性能分析/预报/软件设计

Key words

GNSS/satellite clock offset/performance analysis/prediction/software design

分类

测绘与仪器

引用本文复制引用

吕传磊,雷雨,赵丹宁..GNSS卫星钟性能分析与预报软件设计与实现[J].全球定位系统,2025,50(5):51-59,9.

基金项目

陕西省自然科学基础研究计划(2025JC-YBMS-049) (2025JC-YBMS-049)

教育部产学协同育人项目(2505260125,2505260322) (2505260125,2505260322)

全球定位系统

1008-9268

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