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首页> 外文期刊>Journal of Space Weather and Space Climate >Monitoring, tracking and forecasting ionospheric perturbations using GNSS techniques
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Monitoring, tracking and forecasting ionospheric perturbations using GNSS techniques

机译:使用GNSS技术监测,跟踪和预测电离层扰动

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The paper reviews the current state of GNSS-based detection, monitoring and forecasting of ionospheric perturbations in Europe in relation to the COST action ES0803 “Developing Space Weather Products and Services in Europe”. Space weather research and related ionospheric studies require broad international collaboration in sharing databases, developing analysis software and models and providing services. Reviewed is the European GNSS data basis including ionospheric services providing derived data products such as the Total Electron Content (TEC) and radio scintillation indices. Fundamental ionospheric perturbation phenomena covering quite different scales in time and space are discussed in the light of recent achievements in GNSS-based ionospheric monitoring. Thus, large-scale perturbation processes characterized by moving ionization fronts, wave-like travelling ionospheric disturbances and finally small-scale irregularities causing radio scintillations are considered. Whereas ground and space-based GNSS monitoring techniques are well developed, forecasting of ionospheric perturbations needs much more work to become attractive for users who might be interested in condensed information on the perturbation degree of the ionosphere by robust indices. Finally, we have briefly presented a few samples illustrating the space weather impact on GNSS applications thus encouraging the scientific community to enhance space weather research in upcoming years.
机译:本文回顾了与COST行动ES0803“在欧洲开发太空天气产品和服务”相关的欧洲基于GNSS的电离层扰动检测,监测和预报的现状。太空天气研究和相关的电离层研究需要广泛的国际合作,以共享数据库,开发分析软件和模型并提供服务。审查了欧洲GNSS数据基础,包括电离层服务,这些服务提供了衍生数据产品,例如总电子含量(TEC)和射电闪烁指数。根据基于GNSS的电离层监测的最新成果,讨论了涵盖时间和空间尺度完全不同的基本电离层扰动现象。因此,考虑了以移动电离锋,波状行进的电离层扰动以及最终导致无线电闪烁的小规模不规则现象为特征的大规模扰动过程。尽管地面和基于天基的GNSS监测技术已得到很好的发展,但对电离层扰动的预测需要做更多的工作才能吸引那些可能对通过健壮指标获得有关电离层扰动度的浓缩信息的用户的吸引力。最后,我们简要介绍了一些样本,这些样本说明了太空天气对GNSS应用的影响,从而鼓励科学界在未来几年中加强太空天气研究。

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