Occurrence of Phase Fluctuations of GPS Signals in the High Latitude Ionosphere During Geomagnetic Storms

I. Shagimuratov, I. Efishov, I. Zakharenkova, N. Tepenitsina
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Abstract

Dual-frequency measurements of the differential carrier phase of GPS L1 (f1,= 1.575 GHz) and L2 (f2 = 1.228 GHz) signals have been used to study the development of phase fluctuations at high-latitude ionosphere during geomagnetic disturbances. The ionosphere irregularities are responsible for scintillations and phase fluctuations of GPS signals. Because of the depressive nature of the ionosphere the dual-frequency GPS phase measurements provide information about variations of the ionospheric total electron content (TEC). The paper analyses the occurrence of strong phase fluctuations of GPS observed at Antarctic stations. The fluctuations caused large scales ionospheric irregularities which were associated with occurrence of polar patches in TEC. The peculiarities of the latitude-longitudinal development of GPS signals phase fluctuations are described.
地磁暴期间高纬度电离层GPS信号相位波动的发生
利用GPS L1 (f1,= 1.575 GHz)和L2 (f2 = 1.228 GHz)信号的差分载波相位双频测量,研究了地磁扰动时高纬度电离层相位波动的发展。电离层的不规则性是造成GPS信号闪烁和相位波动的原因。由于电离层的抑制特性,双频GPS相位测量提供了电离层总电子含量(TEC)变化的信息。本文分析了南极站GPS观测的强相位波动现象。这些波动引起了大尺度的电离层不规则,这与TEC极斑的出现有关。描述了GPS信号相位波动的经纬度发展特点。
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