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Mitigating satellite motion in GPS monitoring of traveling ionospheric disturbances

机译:在GPS监测电离层扰动中减轻卫星运动

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We discuss the impact of satellite motion on the use of compact arrays of GPS receivers for estimating the velocity of traveling ionospheric disturbances (TIDs). It is shown that satellite motion has subtle effects upon standard techniques of waveform cross correlation, or time difference of arrival, which can easily lead to spurious TID velocity estimates. We present some improved techniques for cross-correlating TID waveforms while taking account of the Doppler shifts created by satellite motion. In addition, we discuss some improved techniques for separating TID waveforms from background ionospheric trends, such as diurnal variation, based on high-order polynomial fitting with well-defined frequency selectivity. The application of these techniques to a sensor array in the UK is discussed.
机译:我们讨论了卫星运动对GPS接收器紧凑阵列用于估算电离层扰动(TID)速度的影响。结果表明,卫星运动对波形互相关或到达时间差的标准技术有微妙的影响,这很容易导致虚假的TID速度估计。考虑到卫星运动产生的多普勒频移,我们提出了一些用于TID波形互相关的改进技术。此外,我们讨论了基于具有明确定义的频率选择性的高阶多项式拟合,从背景电离层趋势(如日变化)中分离TID波形的一些改进技术。讨论了这些技术在英国传感器阵列中的应用。

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