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Global Comparison of F2-Layer Peak Parameters Estimated by IRI-2016 With Ionospheric Radio Occultation Data During Solar Minimum

机译:IRI-2016估计的F2层峰值参数在太阳能最小值期间与电离层无线电枢层估计的F2层峰值参数的全局比较

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摘要

The F2-layer peak parameters of the International Reference Ionosphere (IRI) model are critical to its subsequent applications because of the vital role of the peak parameters in determining other IRI model outputs. Therefore, we analyzed the statistical deviation and ionospheric climatology of NmF2/hmF2 between the most current version of the IRI model, namely IRI-2016, and ionospheric radio occultation (IRO) data, including Constellation Observing System for Meteorology Ionosphere and Climate (COSMIC) and FengYun-3C (FY3C), during the recent solar minimum in 2017–2019. The International Union of Radio Science (URSI) model for F2-layer peak electron density (NmF2) and the Bilitza–Sheikh–Eyfrig (BSE), Altadill-Magdaleno–Torta–Blanch (AMTB), and SHUbin (SHU) models for maximum ionization height (hmF2) in IRI-2016 are compared with the IRO dataset. A statistical analysis shows a systematic offset of less than 10% in NmF2 between IRI-2016 URSI and IRO data, and the SHU option for hmF2 shows a better fit to IRO data than BSE and AMTB. A climatology comparison shows that NmF2 estimated by IRI-2016 URSI is consistent with that of the IRO dataset in terms of the general trend in the typical ionospheric characteristics; except for some discrepancies in the marine area, the IRO data may provide a feasible reference for IRI estimation in marine regions. The hmF2 options of BSE/AMTB/SHU show hemispheric asymmetry like the IRO dataset. Moreover, hmF2 of BSE/AMTB and IRO/SHU show some discrepancies in fine structures, such as the day–night reversal phenomenon.
机译:由于峰值参数在确定其他IRI模型输出中的重要作用,国际参考电离层(IRI)模型的F2层峰值参数对其随后的应用是至关重要的。因此,我们分析了IRI模型中最新版本的NMF2 / HMF2的统计偏差和电离层气候,即IRI-2016和电离层无线电掩星(IRO)数据,包括气象电离层和气候(宇宙)的星座观察系统在最近的2017 - 2019年最近的太阳能最低限度期间,丰云-3C(FY3C)。用于F2层峰值电子密度(NMF2)和Bilitza-Sheikh-Eyfrig(BSE),Altadill-Magdaleno-Torta-Blanch(AMTB)和Shubin(SHU)模型的国际无线电科学(URSI)模型将IRI-2016中的电离高度(HMF2)与IRO数据集进行比较。统计分析显示IRI-2016 URSI和IRO数据之间的NMF2中少于10%的系统偏移,HMF2的SHU选项显示比BSE和AMTB更好地拟合IRO数据。气候学比较表明,IRI-2016 URSI估计的NMF2与IRO数据集的典型电离层特征的一般趋势一致;除了海域区域的一些差异外,IRO数据可以为海域内的IRI估计提供可行的参考。 BSE / AMTB / SHU的HMF2选项显示了像IRO数据集的半球不对称。此外,BSE / AMTB和IRO / SHU的HMF2在细结构中显示出一些差异,例如日夜逆转现象。

著录项

  • 来源
    《Quality Control, Transactions》 |2021年第1期|8920-8934|共15页
  • 作者单位

    National Space Science Center Chinese Academy of Sciences (NSSC/CAS) Beijing China;

    National Space Science Center Chinese Academy of Sciences (NSSC/CAS) Beijing China;

    National Space Science Center Chinese Academy of Sciences (NSSC/CAS) Beijing China;

    National Space Science Center Chinese Academy of Sciences (NSSC/CAS) Beijing China;

    National Space Science Center Chinese Academy of Sciences (NSSC/CAS) Beijing China;

    National Space Science Center Chinese Academy of Sciences (NSSC/CAS) Beijing China;

    National Space Science Center Chinese Academy of Sciences (NSSC/CAS) Beijing China;

    National Space Science Center Chinese Academy of Sciences (NSSC/CAS) Beijing China;

    National Space Science Center Chinese Academy of Sciences (NSSC/CAS) Beijing China;

    National Space Science Center Chinese Academy of Sciences (NSSC/CAS) Beijing China;

    National Space Science Center Chinese Academy of Sciences (NSSC/CAS) Beijing China;

    National Space Science Center Chinese Academy of Sciences (NSSC/CAS) Beijing China;

    National Space Science Center Chinese Academy of Sciences (NSSC/CAS) Beijing China;

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

    Atmospheric modeling; Ionosphere; Data models; Rough surfaces; Meteorology; Satellite broadcasting; Global Positioning System;

    机译:大气模拟;电离层;数据模型;粗糙表面;气象;卫星广播;全球定位系统;
  • 入库时间 2022-08-18 22:58:57

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