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Investigation of GPS-measured Ionospheric Total Electron Content Variations Generated by HF-heating at Mid-latitudes

机译:GPS测量的中纬度HF加热产生的电离层总电子含量变化的研究

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The aim of this work is to present experimental results of the influence of electron density perturbations caused by HF-heating of ionospheric F2 layer on GNSS navigational signals at mid-latitudes. The experiments were carried out on the Sura heater near N. Novgorod, Russia with radiating frequency 4.3 MHz (during all series of experiments the plasma frequency of F2 layer was greater then the heating frequency) and effective power 40 MW and 80 MW. During the heating series with different time modulation of radiative power, the ionospheric penetration points for several navigational satellites and GNSS-receiver installed near the Sura facility crossed the heated area. For these satellites we investigated variations of total electron content (TEC), proportional to the differential carrier phase of navigational signals. It is shown that for square heating pulses, perturbations with main heating period appeared in the spectrum of TEC variations. The amplitudes of such perturbations were of the order of 0.07 TECU. These TEC oscillations support the presence of electron density irregularities caused by such modes of HF-heating in the heated region.
机译:这项工作的目的是介绍由电离层F2层的HF加热引起的电子密度摄动对中纬度GNSS导航信号的影响的实验结果。实验是在俄罗斯诺夫哥罗德附近的Sura加热器上进行的,辐射频率为4.3 MHz(在所有系列实验中,F2层的等离子体频率大于加热频率),有效功率为40 MW和80 MW。在对辐射功率进行不同时间调制的加热系列中,安装在苏拉设施附近的几颗导航卫星和GNSS接收器的电离层穿透点越过了加热区域。对于这些卫星,我们研究了总电子含量(TEC)的变化,该变化与导航信号的差分载波相位成比例。结果表明,对于方形加热脉冲,在TEC变化谱中出现了主加热周期的扰动。这种扰动的幅度约为0.07 TECU。这些TEC振荡支持由在加热区域中的这种HF加热模式引起的电子密度不规则性的存在。

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