首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >A comparative study of ionospheric irregularity drift velocity derived from a GNSS receiver array and Poker Flat Incoherent Scatter Radar measurements during high-latitude ionospheric scintillation
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A comparative study of ionospheric irregularity drift velocity derived from a GNSS receiver array and Poker Flat Incoherent Scatter Radar measurements during high-latitude ionospheric scintillation

机译:高纬度电离层闪烁期间GNSS接收阵列和扑克扁平不相干散射雷达测量衍生的电离层不规则漂移速度的对比研究

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摘要

The conventional ionospheric scintillation-based, spaced-receiver technique uses Global Navigation Satellite Systems (GNSS) signal intensity measurements. It is not suitable, however, for high-latitude regions where phase scintillations occur much more often than amplitude scintillations. This paper demonstrates that GNSS signal carrier phase scintillations observed froma spaced-receiver array can be used to infer horizontal ionospheric drift velocities via time domain correlation. Drift velocities measured by the colocated Poker Flat incoherent scatter radar are cross compared against the estimated results from the GNSS receiver array. A comparative study is conducted based on two case studies on 20 and 31 December 2015, both accompanied by intense geomagnetic storms. Overall, the comparison results show statistical agreement between the GNSS receiver array estimation and incoherent scatter radar measurements.
机译:传统的电离层闪烁的间隔接收技术使用全球导航卫星系统(GNSS)信号强度测量。 然而,对于高纬度地区,这是不合适的,其中相闪烁通常比幅度闪烁更常见。 本文演示了从间隔接收器阵列观察到的GNSS信号载波相位闪烁可用于通过时域相关来推断水平电离层漂移速度。 通过Coolocated Poker扁平非相干散射雷达测量的漂移速度与来自GNSS接收器阵列的估计结果进行了交叉。 基于2015年12月20日和31日的两种案例研究进行了比较研究,既伴随着强烈的地磁风暴。 总体而言,比较结果显示了GNSS接收器阵列估计和非连锁散射雷达测量之间的统计协议。

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