全球电子含量的光谱:空间天气活动的新潜在指标
Josep Maria Aroca-Farrerons1, Manuel Hernández-Pajares1,2, Haixia Lyu1,3,4
1UPC-IonSAT, 08034 Barcelona, Spain.
Sensors (Basel, Switzerland)
|January 23, 2024
概括
使用GPS数据分析了两个太阳周期的全球电子含量 (GEC) 演变. 它的光谱演变显示出作为太空天气指数的潜力.
科学领域:
- * 太空物理 太空物理
- * * 地质物理学
- * 离子体物理学
背景情况:
- *分析了全球电子含量 (GEC) 在两个太阳周期中的时间演变.
- *使用全球离子层地图 (GIMs) 来自自1996年以来的GPS测量.
- *使用UPC-IonSAT TOMION-v1软件进行VTEC估计.
研究的目的:
- *分析GEC的长期时间演变.
- * 调查GEC光谱演变作为太空天气指数的潜力.
主要方法:
- *从垂直总电子含量 (VTEC) 的全球离子层地图 (GIM) 中提取的数据.
- *使用了一种基于voxel的双层断层模型,带有前置卡尔曼标量波器.
- *双频载波GPS数据和VTEC战争插值生成了UQRG GIM.
主要成果:
- *这项研究分析了跨越两个太阳周期的GEC时间序列.
- * 在IGS中以其高性能而闻名的UQRG GIM被使用.
- *GEC的光谱演变被证明具有潜在的应用.
结论:
- * 长期GEC数据提供了对电离层动态的见解.
- *GEC演变的光谱特征是空间天气索引的有希望的候选者.
- *进一步的研究可以验证GEC频谱作为可靠的太空天气指数.
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