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Assessment of IRI-2016 hmF2 model predictions with COSMIC observations over the African region

机译:非洲地区宇宙观测评估IRI-2016 HMF2模型预测

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摘要

With significant advancement in the climatological nature of the International Reference Ionosphere (IRI) through a series of editions, the ionospheric community now focuses on possible improvements in the IRI Real-Time Assimilative Model (IRTAM) for describing the real-time weather conditions in the ionosphere. In line with the focuses of the global research community, the present study intends improving the critical ionospheric electron density height (hmF2) predictions in the latest version of the IRI model (IRI-2016) through a comparative analysis with the hmF2 derived from the Constellation Observing System for Meteorology, Ionosphere and Climate (COSMIC) ionospheric occultation profiles over the African region under various solar and geomagnetic conditions. As the existing operational ionosondes (only five in number) are not evenly distributed across the African region, the dense COSMIC soundings offer an excellent opportunity for assessing the IRI hmF2 model performance over the region. The study includes a comparative study of observed COSMIC hmF2 values with IRI-2016 predictions, almost covering the whole solar cycle (2007 to 2017). The comparison is based on statistical model validation metrics for datasets under various solar and geomagnetic conditions. The average performance of the IRI hmF2 model over Africa is similar during quiet geomagnetic conditions under both low and high solar activity periods. However, the average performance declines during disturbed geomagnetic conditions and for night-time values, while the best average performance is noticed in the daytime hmF2 predictions. The SHU-2015 model option in IRI-2016 manifests the least prediction error, best model efficiency, and correlation with the COSMIC hmF2 values, justifying the use of a large number of COSMIC profiles in the development of the SHU-2015 model. Finally, the study suggests the suitability of the SHU-2015 IRI hmF2 option over the African region when and where there are no or limited COSMIC profiles. Additionally, the research work suggests further improvements in the IRI hmF2 predictions, especially for night-time values over the African region.
机译:通过一系列版本,国际参考电离层(IRI)的气候性质的显着进步,电离层社区现在侧重于IRI实时吸收模型(IRTAM)的可能改进,用于描述实时天气条件电离层。符合全球研究界的焦点,本研究旨在通过与来自星座的HMF2的比较分析来改善最新版本的IRI模型(IRI-2016)中的临界电离层电子密度高度(HMF2)预测在各种太阳能和地磁环境下非洲地区气象,电离层和气候(宇宙)电离层透析观测系统。由于现有的运营离子(数量只有五个)均匀地分布在非洲地区,因此密集的宇宙探测提供了评估该地区的IRI HMF2模型性能的绝佳机会。该研究包括与IRI-2016预测的观察到宇宙HMF2值的比较研究,几乎覆盖了整个太阳能周期(2007年至2017年)。比较基于各种太阳能和地磁条件下数据集的统计模型验证度量。 IRI HMF2模型在非洲的IRI HMF2型号的平均性能在低和高太阳能活动期间的安静地磁条件下类似。然而,在干扰的地磁条件下和夜间值期间平均性能下降,而白天HMF2预测中会发现最佳平均性能。 IRI-2016中的SHU-2015模型选项表现出最不预测的误差,最佳模型效率和与宇宙HMF2值的相关性,证明在SHU-2015模型的开发中使用大量宇宙型材的使用。最后,该研究表明SHU-2015 IRI HMF2期权在非洲地区的适用性以及没有或有限的宇宙概况。此外,研究工作表明IRI HMF2预测的进一步改进,特别是对于非洲地区的夜间价值。

著录项

  • 来源
    《Advances in space research》 |2021年第5期|2115-2123|共9页
  • 作者单位

    Department of Geomatics Ahmadu Bello University Zaria Kuduna 810282 Nigeria;

    George Mason University Department of Physics and Astronomy Faifax VAUSA 22030 VA USA Heliospherk Laboratory NASA Goddard Space Flight Center Greenbelt MD 20771 USA;

    Department of ECE KL Deemed to be University Koneru Lakshmaiah Education Foundation Guntur District - 522502 Andhra Pradesh India;

    Department of Physics Benue State University Makurdi 102119 Nigeria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    African Ionosphere; COSMIC; hmF2; IRI-2016; Radio occultation;

    机译:非洲电离层;宇宙;HMF2;IRI-2016;无线电掩护;
  • 入库时间 2022-08-19 02:34:56

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