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首页> 外文期刊>Annales Geophysicae >Signature of ionospheric irregularities under different geophysical conditions on SBAS performance in the western African low-latitude region
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Signature of ionospheric irregularities under different geophysical conditions on SBAS performance in the western African low-latitude region

机译:西非低纬地区不同地球物理条件下电离层不规则性对SBAS性能的影响

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Rate of change of TEC (ROT) and its index (ROTI) are considered a good proxy to characterize the occurrence of ionospheric plasma irregularities like those observed after sunset at low latitudes. SBASs (satellite-based augmentation systems) are civil aviation systems that provide wide-area or regional improvement to single-frequency satellite navigation using GNSS (Global Navigation Satellite System) constellations. Plasma irregularities in the path of the GNSS signal after sunset cause severe phase fluctuations and loss of locks of the signals in GNSS receiver at low-latitude regions. ROTI is used in this paper to characterize plasma density ionospheric irregularities in central-western Africa under nominal and disturbed conditions and identified some days of irregularity inhibition. A specific low-latitude algorithm is used to emulate potential possible SBAS message using real GNSS data in the western African low-latitude region. The performance of a possible SBAS operation in the region under different ionospheric conditions is analysed. These conditions include effects of geomagnetic disturbed periods when SBAS performance appears to be enhanced due to ionospheric irregularity inhibition. The results of this paper could contribute to a feasibility assessment of a European Geostationary Navigation Overlay System-based SBAS in the sub-Saharan African region.
机译:TEC(ROT)及其指数(ROTI)的变化率被认为是表征电离层等离子体不规则现象的良好代表,如在低纬度日落之后观察到的。 SBAS(基于卫星的增强系统)是民航系统,可使用GNSS(全球导航卫星系统)星座为单频卫星导航提供广域或区域性改进。日落后GNSS信号路径中的等离子体不规则会导致严重的相位波动,并导致低纬度区域GNSS接收器中的信号失锁。本文使用ROTI来表征中西部非洲在标称和扰动条件下血浆密度电离层的不规则性,并确定了几天的不规则性抑制。特定的低纬度算法用于使用西非低纬度地区中的实际GNSS数据来模拟潜在的SBAS消息。分析了在不同电离层条件下该区域可能进行的SBAS操作的性能。这些条件包括由于电离层不规则性抑制而使SBAS性能增强的地磁干扰时期的影响。本文的结果可能有助于在撒哈拉以南非洲地区基于欧洲对地静止导航叠加系统的SBAS的可行性评估。

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