Spectral analysis of IAR oscillations to determine the value and variability of the peak electron density NmF2

Pub Date : 2023-09-30 DOI:10.12737/stp-93202306
Alexander Potapov, Tatyana Polyushkina, Anatol Guglielmi, Konstantin Ratovsky, Ilya Moskalev
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Abstract

This methodical paper explores the possibility of estimating the peak electron density of the F2-region of the ionosphere (NmF2) under different conditions, using data on the frequency of spectral bands (harmonics) of the ionospheric Alfvén resonator (IAR) oscillation. We describe a simple technique for tracking the frequency of spectral bands during the day by measuring their position on the plot of the IAR daily dynamic spectrum. Through calculations within the framework of the global ionospheric model IRI-2016, we verify the correctness of the comparison of the frequencies of resonant bands, measured at one point, with data from radio sounding, performed at other points remote from IAR frequency measurement sites at a distance. We propose an algorithm for comparing NmF2, measured by a radiosonde, with frequencies of spectral lines by precalculating the evaluation factor. It is formed on the basis of a nonlinear combination of the frequencies of the three observed harmonics. Then the time series of this factor is compared with the results of radio sounding, and correlation and regression coefficients, as well as estimation errors are calculated. Using the material on rare cases of round-the-clock observation of IAR oscillations in the winter months of 2011–2012, we trace the dependence of the average error in determining the peak electron density on local time. We present the data on the most favorable local time intervals for determining NmF2 from IAR harmonic frequencies depending on season. Some additional factors are discussed which affect the accuracy of estimates and determine the frequency range of IAR oscillations.
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光谱分析IAR振荡,以确定值和变化的峰值电子密度NmF2
本文系统地探讨了利用电离层alvv谐振器(IAR)振荡的谱带(谐波)频率,在不同条件下估计电离层f2区(NmF2)峰值电子密度的可能性。我们描述了一种简单的技术,通过测量光谱带在IAR日动态光谱图上的位置来跟踪白天光谱带的频率。通过在全球电离层模型IRI-2016框架内的计算,我们验证了在一个点测量的谐振频带频率与在远离IAR频率测量站点的其他点进行的无线电探空数据的比较的正确性。我们提出了一种算法,通过预先计算评估因子,将无线电探空仪测量的NmF2与谱线频率进行比较。它是在三个观测到的谐波频率的非线性组合的基础上形成的。然后将该因子的时间序列与探空结果进行比较,计算相关系数、回归系数以及估计误差。利用2011-2012年冬季24小时IAR振荡的罕见病例资料,我们追踪了确定峰值电子密度的平均误差与当地时间的依赖关系。我们提出了根据季节从IAR谐波频率确定NmF2的最有利的局部时间间隔的数据。讨论了影响估计精度和确定IAR振荡频率范围的一些附加因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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