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Equatorial ionospheric zonal drift by monitoring local GPS reference networks

机译:赤道电离层区域漂移监测当地GPS参考网络

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摘要

The propagation of electromagnetic waves through the turbulent ionosphere produces scintillations through diffraction, and understanding the physical nature of scintillations is important for engineers and technologists as well as for scientists. In recent years, the establishment of the Global Positioning System (GPS) provided a new technique that can be used to study ionospheric scintillations. The usual way of doing that is the deployment of GPS receivers closely spaced in east‐west magnetic direction and then estimating the zonal drift velocities based on the signal power observations. One of the weaknesses of this method is that high‐rate sampling such as 20 Hz is required for close‐spaced stations and generally no such data are available for studying ionospheric scintillation in the past years. In this research work, a scintillation monitoring method based on slant TEC (STEC) observations of local GPS Continuously Operating Reference Station (CORS) network is proposed. First, the past research works on the equatorial ionospheric drift velocities are summarized. Then, by comparing the scintillation pattern of the signal power and STEC observations of California local GPS reference network, we find that the STEC is a good choice for estimating the ionospheric zonal drift velocity. Then it is illustrated how to calculate the ionospheric scintillation velocity based on STEC. Finally, the proposed method is applied to Hong Kong GPS reference network and several cases of the calculated ionospheric zonal velocities are given.
机译:电磁波的传播动荡的电离层闪烁通过衍射,和理解闪烁的物理性质是很重要的为工程师和技术人员科学家。全球定位系统(GPS)提供了一个新技术,可用于研究电离层闪烁。这样做是GPS接收器的部署密集在东还是西磁方向然后估算区域漂移速度基于观测信号的力量。这种方法的缺点是,高速度需要20 Hz等抽样近间隔的电台和一般没有这样的数据可用于研究电离层闪烁在过去几年。工作,基于闪烁监测方法偏TEC (STEC)当地GPS的观测连续运行参考站(歌珥)提出了网络。适用于赤道电离层漂移速度进行了总结。权力和闪烁模式的信号加州STEC观察当地的GPS参考网络,我们发现STEC是a不错的选择估计电离层区域漂移速度。计算电离层闪烁速度基于STEC。适用于香港网络和GPS参考几例计算电离层区域速度。

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