Model evaluation of accuracy of obtaining total electron content by the method of spaced reception of low Earth orbit satellite signals

S. Cherniakov
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Abstract

A model-based technique to estimate the accuracy of the ionospheric total electron content (TEC) based on the data from spaced receivers of low Earth orbit satellite signals has been suggested. That allows us to estimate the total electron content errors for both quiet ionosphere conditions and under the presence of a plasma ring. To estimate the error, the dynamic model of the electron concentration of the Earth's ionosphere has been used. For the selected input parameters (day of the year, time of day, etc.), a model two-dimensional electron density distribution has been calculated using this model. When calculating this two-dimensional distribution of the electron density, changes have been made that transformed it into a distribution that most closely matches the real ionosphere, for example, the presence of a plasma ring, a trough, etc. Using the obtained distribution, some model quantities (differential phase and total electron content) have been calculated. Then they are used for model estimation of errors in the calculation of the TEC by the spaced reception method. For quite conditions in the ionosphere, the relative error of determining the initial phase constant does not exceed 3 %, and in the case of the plasma ring - 13 %. For the vertical total electron content, the relative error in quite conditions does not exceed 7 %, and in the case of a plasma ring - 60 %. Large values of the relative error are in areas of sharp change of the vertical total electron content.
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近地轨道卫星信号间隔接收法获取总电子含量精度的模型评价
提出了一种基于模型的方法,利用近地轨道卫星信号间隔接收机的数据估算电离层总电子含量(TEC)的精度。这使我们能够估计在安静的电离层条件下和等离子环存在下的总电子含量误差。为了估计误差,使用了地球电离层电子浓度的动态模型。对于所选择的输入参数(一年中的日期、一天中的时间等),利用该模型计算了模型二维电子密度分布。在计算电子密度的二维分布时,已经做了一些改变,将其转化为最接近真实电离层的分布,例如,等离子环、槽等的存在。利用得到的分布,计算了一些模型量(差相和总电子含量)。然后将它们用于间隔接收法计算TEC时误差的模型估计。在电离层的相当条件下,确定初始相位常数的相对误差不超过3%,在等离子体环的情况下- 13%。对于垂直总电子含量,在相当条件下的相对误差不超过7%,在等离子体环的情况下- 60%。在垂直总电子含量变化剧烈的区域,相对误差值较大。
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发文量
27
审稿时长
5 weeks
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