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首页> 外文期刊>Radio Science >The Limits of Empirical Electron Density Modeling: Examining the Capacity of E-CHAIM and the IRI for Modeling Intermediate (1- to 30-Day) Timescales at High Latitudes
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The Limits of Empirical Electron Density Modeling: Examining the Capacity of E-CHAIM and the IRI for Modeling Intermediate (1- to 30-Day) Timescales at High Latitudes

机译:经验电子密度建模的限制:检查高纬度地区的e-chaim和IRI的容量,用于在高纬度地区建模中间体(1至30天)时间尺度

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摘要

The Empirical Canadian High Arctic Ionospheric Model (E-CHAIM) is a new empirical 3-D electron density model intended as an alternative to the use of conventional standards, such as the International Reference Ionosphere (IRI), at high latitudes (above 50 degrees N). In this study, we have manually scaled a year of data from two Canadian High Arctic Ionospheric Network (CHAIN) ionosondes. Using this high-quality data, we examine the behavior of the polar cap ionosphere under disturbed geomagnetic conditions and assess the capacity of E-CHAIM to model polar cap F2-peak electron density variability on "weather-like," intermediate timescales (1-30 days). This is a particularly challenging environment for monthly median empirical models due to the regular occurrence of variations about the monthly mean of up to 2 MHz. We demonstrate in this study that E-CHAIM's storm model is capable of explaining 4 to 25% of polar cap foF2 variance at 1- to 30-day timescales and 5 to 50% of the amplitude of that variability, while the IRI's Storm-Time Ionospheric Correction Model (STORM) only explains 0.2 to 9% of the variance at these timescales and no more than 5% of their amplitude. While the IRI's STORM model provided no measurable improvement over the monthly median, E-CHAIM's storm parameterization was able to improve overall root-mean-square errors by 0.05 to 0.1 MHz over its quiet time model. The overall improvement through the use of storm foF2 parameterizations is found to be limited, but measurable, particularly during storm periods, where an average improvement in root-mean-square error of 20% is observed.
机译:经验丰富的加拿大高北极电离层模型(E-Chaim)是一种新的经验性三维电子密度模型,旨在使用常规标准的替代品,例如国际参考电离层(IRI),高纬度(50度以上n)。在这项研究中,我们手动缩放了来自两个加拿大高北极电离层网络(链)Ionosondes的一年数据。使用这种高质量的数据,我们在干扰的地磁条件下检查极性帽电离层的行为,并评估E-Chaim的能力,以模型极性帽F2峰值电子密度可变性在“天气状”中间时间尺寸(1- 30天)。这是一个特别具有挑战性的环境,用于每月中位数经验模型,因为定期发生了关于最多2 MHz的每月平均值的变化。我们在这项研究中证明了E-Chaim的风暴模型能够在1至30天的时间尺寸下解释4至25%的极性帽FOF2方差,而IRI的风暴时间是幅度的5至50%的幅度。电离层校正模型(Storm)仅解释这些时间尺度的差异的0.2%至9%,占幅度的不超过5%。虽然IRI的风暴模型不提供每月中位数的可衡量的改善,但在其安静的时间模型中,E-Chaim的风暴参数化能够通过0.05至0.1 MHz改善整体根均方误差。发现通过使用风暴FOF2参数化的整体改进是有限的,但特别是在风暴期间,观察到20%的根平均误差的平均改善。

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