低纬度地区GNSS衰落和闪烁的空间特征

IF 7.1 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
Victor Di Santis, Alison Moraes, Emanoel Costa, Jonas Sousasantos, Paulo Renato Pereira Silva, Ana Lucia Christovam
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引用次数: 0

摘要

以往的研究评估了电离层衰落事件和振幅闪烁的几个特征。但是,还需要对衰落分布和闪烁概率随倾角的变化进行详细的分析。本文对4个地面闪烁监测仪的数据进行了统计分析,以评估α系数(“α -μ”概率分布模型的第一个参数);最深的褪色发生;每分钟衰落事件数;衰落事件的持续时间随穿越层传播路径的电离层穿透点(ipp)的倾角而变化。结果表明,在赤道电离异常(EIA)南波峰内,振幅闪烁具有细微的空间变化,从而导致严重衰落事件的概率明显增加。与赤道地区的结果相比,α衰减系数在更偏极的低纬度地区呈增加趋势,表明前者区域内的不对称性倾向于更严重的衰减事件。在EIA峰值区域的平均衰落发生率明显较大,特别是在闪烁水平增加时。互补累积分布函数(CCDF)曲线显示,在−14.5°至−10.5°的倾角范围内,闪烁水平较高,峰值概率也在EIA边界周围呈现不对称模式。该研究为闪烁和衰落剖面的空间动力学提供了重要见解,增强了对全球卫星网络系统(GNSS)信号的低纬度电离层效应的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatial Characteristics of GNSS Fading and Scintillation in Low Latitudes

Previous studies evaluated several characteristics of ionospheric fading events and amplitude scintillation. However, a detailed analysis on how the fading profiles and scintillation probabilities vary according to the dip latitude is still required. In this work, a statistical analysis of data from four ground-based scintillation monitors was performed to evaluate how the α coefficient (first parameter of the “αμ” probability distribution model); the deepest fading occurrence; the number of fading events per minute; and the duration of fading events change according to the dip latitudes of the ionospheric pierce points (IPPs) of transionospheric propagation paths. The results reveal a nuanced spatial variation in amplitude scintillation, emphasizing an enhanced severity within the equatorial ionization anomaly (EIA) southern crest, resulting in a clear increase in the probability of severe fading events. An increasing trend in the α fading coefficient at more poleward dip latitudes was found, in comparison with results from equatorward locations, suggesting an asymmetry favoring more severe fading events within the former region. The average fading occurrences are significantly larger over the EIA peak region, especially for increasing scintillation levels. Complementary Cumulative Distribution Function (CCDF) curves demonstrate peak probabilities between dip latitudes from − 14.5° to − 10.5° for higher scintillation levels, also displaying an asymmetrical pattern around the EIA boundaries. This study provides important insights on the spatial dynamics of scintillation and fading profiles, enhancing the understanding of low-latitude ionospheric effects on global network satellite system (GNSS) signals.

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来源期刊
Surveys in Geophysics
Surveys in Geophysics 地学-地球化学与地球物理
CiteScore
10.00
自引率
10.90%
发文量
64
审稿时长
4.5 months
期刊介绍: Surveys in Geophysics publishes refereed review articles on the physical, chemical and biological processes occurring within the Earth, on its surface, in its atmosphere and in the near-Earth space environment, including relations with other bodies in the solar system. Observations, their interpretation, theory and modelling are covered in papers dealing with any of the Earth and space sciences.
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