精密点定位
计算机科学
背景(考古学)
电离层
估计
点(几何)
大地测量学
单点
全球定位系统
电信
人工智能
数学
地质学
全球导航卫星系统应用
工程类
地球物理学
古生物学
几何学
系统工程
特里兹
作者
Clément Gazzino,Nicolas Lelarge,Alissa Kouraeva,M. Laymand
出处
期刊:Proceedings of the Satellite Division's International Technical Meeting
日期:2024-10-09
卷期号:: 1230-1243
摘要
Classical methods for satellite navigation build ionosphere-free combination in order to remove the delays caused by the propagation of the signal in the atmosphere, and in particular the ionosphere. Since this signal combination has been set up in the early ages of the satellites navigation systems, it only uses two frequencies. This article proposes to explore ionosphere-free combinations with all the available frequencies. Such combinations always increase the observable noise. Therefore, an exploration of a Kalman filter estimating jointly the geometric and ionospheric parts of the observable models is performed. The results are applied in cases for low and high solar activities. As the new solar cycle begins, the ionospheric effects will be of importance for the years to come.
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