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首页> 外文期刊>International Journal of Space Science and Engineering >GNSS signals ionospheric propagation characteristics in space service volume
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GNSS signals ionospheric propagation characteristics in space service volume

机译:GNSS信号在空间业务量中的电离层传播特性

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摘要

In recent years, Global Navigation Satellite System (GNSS) showed a remarkable capability to serve for medium and high earth orbit spacecraft, called space service volume (SSV). However, SSV users face a critical problem of insufficient GNSS signal visibility. In previous studies, the ionospheric signals are usually discarded, which results in a large discrepancy in mission design and system optimisation. In this paper, a three-dimensional ray-tracing method is adopted to analyse signal propagation through the ionosphere. Taking GPS constellation and a GEO user as an example, the principles are validated with a careful simulation. The results show an interesting phenomenon that the bending angle of the signal path and the ionospheric attenuation are very small, and the ionospheric delay is large but eliminable. If the ionospheric signals are considered, the signal visibility and availability will significantly increase, which leads to a shortened maximum outage time for SSV users.
机译:近年来,全球导航卫星系统(GNSS)表现出了卓越的能力,可服务于中高地球轨道航天器,称为太空服务量(SSV)。但是,SSV用户面临着GNSS信号可见度不足的严重问题。在以前的研究中,电离层信号通常被丢弃,这导致任务设计和系统优化方面存在很大差异。本文采用三维射线追踪方法来分析通过电离层的信号传播。以GPS星座和GEO用户为例,通过仔细的仿真验证了原理。结果显示了一个有趣的现象,即信号路径的弯曲角度和电离层衰减很小,电离层延迟大但可以消除。如果考虑电离层信号,则信号的可见度和可用性将显着提高,这将缩短SSV用户的最大中断时间。

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