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Ionospheric gradient estimation using ground-based GEO observations for monitoring multi-scale ionospheric dynamics
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作者 Zhiyao Li Jiahao Zhong +8 位作者 Ningbo Wang Yongqiang Hao Xin Wan njakowski M.M.Hoque Ang Liu Zishen Li Runqing Liu Grzegorz Nykiel 《Satellite Navigation》 2025年第3期332-347,共16页
High-resolution and real-time monitoring of ionospheric dynamics is important for space weather research and satellite-based communication and navigation.However,the existing observational frameworks often face trade-... High-resolution and real-time monitoring of ionospheric dynamics is important for space weather research and satellite-based communication and navigation.However,the existing observational frameworks often face trade-ofs between spatial coverage,temporal continuity,and resolution.This study presents a novel fxed-geometry observation framework,which utilizes the ionospheric gradients derived from a network of Geostationary Earth Orbit(GEO)satellites and ground-based Global Navigation Satellite System(GNSS)receivers.The stationary geometry between GEO satellites and ground receivers enables the formation of dense,fxed Ionospheric Pierce Points(IPPs),and geometry-invariant inter-IPP baselines,which serve as fundamental sensing units.Leveraging this confguration,the proposed framework produces high-resolution ionospheric Total Electron Content(TEC)gradient felds(spatially<0.25°,temporally 30 s),without requiring satellite motion corrections.This enables multi-scale analysis of ionospheric disturbances in real time.Case studies demonstrate the framework can resolve sub-minute electron density variations during the diurnal development of Equatorial Ionization Anomalies(EIA),track the evolution of plasma irregularities associated with Equatorial Plasma Bubbles(EPBs),and characterize the propagation of Large-scale Traveling Ionospheric Disturbances(LSTIDs).The GEO-based framework provides a geometry-consistent and scalable tool that bridges the gap between sparse satellite observations and high-resolution ionospheric diagnostics,which is signifcant for both scientifc investigation and operational space weather monitoring. 展开更多
关键词 Ionospheric dynamics Geostationary earth orbit(GEO) Total electron content gradient Fixed-geometry observation network
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