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On the Mutual Coherence Function for Transionospheric Waves and its Utility for Characterizing Ionospheric Irregularities with a GNSS Scintillation Monitor

机译:转基地波浪的相互相干功能及其具有GNSS闪烁监测器的电离层畸形的实用性

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摘要

When interpreting GNSS observations of ionospheric scintillation, it is instructive to distinguish between the separate goals of characterizing the GNSS signal fluctuations and characterizing the disturbed ionospheric medium that produces the scintillations. The statistics of GNSS signal fluctuations are of primary interest for GNSS tracking loop analysis and design studies intended to quantify and model the impacts of ionospheric scintillation on navigation accuracy. Conversely, from an ionospheric physics standpoint, of primary interest are the statistical characteristics of the random ionospheric medium itself, and how these relate to the physical processes that structure the plasma. When the scintillation is weak, receiver diagnostics can serve both applications because the spectra of signal fluctuations at the ground are simply related to the spectra of variations in the ionospheric density.
机译:在解释GNSSSS闪烁的观察时,在表征GNSS信号波动的单独目标和表征产生闪烁的干扰电离层介质的单独目标方面是有效的。 GNSS信号波动的统计数据对GNSS跟踪环路分析和设计研究旨在量化和模拟电离层闪烁对导航精度的影响的主要兴趣。相反,从电离层物理观点来看,主要兴趣是随机电离层介质本身的统计特征,以及这些统计学特性以及这些统计特征以及这些统计特征以及这些统计特征以及这些统计学特性以及这些统计学特性以及这些涉及结构的物理过程的结构。当闪烁较弱时,接收器诊断可以用于两个应用,因为地面的信号波动的光谱与电离层密度的变化的光谱有关。

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