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Modeling of HF propagation at high latitudes on the basis of IRI

机译:基于IRI的高纬度HF传播建模

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The paper presents the results of comparison between the modeling calculations and ionograms of oblique sounding for high-latitude HF radio paths of Arctic and Antarctic Research Institute (AARI), which was fulfilled for February 13-14, 2014 (quiet conditions). The International Reference Ionosphere 2012 model of the ionosphere (IRI-2012) was used for the study. The comparison results prove that without adaptation to current diagnostics the IRI model does not reflect the real state of high latitude ionosphere even for quiet conditions. It was found that in general the observed maximum usable frequency values (MUF) exceeded the same values obtained from the model. The adaptation of the model to current diagnostics makes the simulated MUF values significantly closer to the observed MUF. The following parameters were used for the study: critical frequencies foF2 measured by ionosondes located near the considered paths, frequencies calculated on the basis of observed TEC values and median values of the equivalent slab thickness of the ionosphere. The relative error of calculation of MUF values averaged for all the cases for one hop was 23.6% by the initial IRI model. This error was decreased by 4% for the calculations on the basis of observed TEC and by 6% for the adaptation to foF2. The higher the latitude of the studied radio path, the more the difference between the observed and simulated MUF values. The conclusion was made that a principal cause of this difference was the deviation of calculated maximum ionospheric height values (hmF2) from the observed hmF2. The additional model update using hmF2 values obtained from Tromso station let to better match between the calculated MUF values and the observed MUF values for all radio paths. The analysis of experimental data showed that the non-predicted events (like traveling ionospheric disturbances, M- and N-modes, lateral modes, triplets, unusual scatter effects, etc.) sometimes took place at high latitude paths even during the quiet conditions.
机译:本文介绍了北极和南极研究所(AARI)的高纬度HF无线电路径的建模计算与斜向探测的电离图的比较结果,该结果已于2014年2月13日至14日完成(安静的条件)。本研究使用了国际电离层参考电离层2012模型(IRI-2012)。比较结果证明,即使不适应当前的诊断,IRI模型也无法反映高纬度电离层的真实状态,即使在安静的条件下也是如此。发现通常观察到的最大可用频率值(MUF)超过了从模型获得的相同值。模型对当前诊断的适应性使得模拟的MUF值明显更接近于观测到的MUF。以下参数用于研究:由位于所考虑路径附近的离子探空仪测量的临界频率foF2,根据观测到的TEC值和电离层等效平板厚度的中值计算的频率。初始IRI模型计算的所有情况下,一跳的所有情况的MUF值平均计算的相对误差为23.6%。对于基于观察到的TEC的计算,此错误减少了4%,对于foF2的适应性减少了6%。研究的无线电路径的纬度越高,观察到的和模拟的MUF值之间的差异就越大。结论是,造成这种差异的主要原因是计算出的最大电离层高度值(hmF2)与观测到的hmF2的偏差。使用从Tromso站获得的hmF2值进行的附加模型更新可以更好地匹配所有无线电路径的计算出的MUF值和观测到的MUF值。对实验数据的分析表明,即使在安静的条件下,有时也会在高纬度路径上发生不可预测的事件(例如电离层扰动,M和N模式,横向模式,三重态,异常散射效应等)。

著录项

  • 来源
    《Advances in space research》 |2016年第3期|821-834|共14页
  • 作者单位

    Saint-Petersburg State University of Aerospace Instrumentation, 67, Bolshaya Morskaya Street, Saint-Petersburg 190000, Russia;

    Institute for Physics, Southern Federal University, Stachki, 194, Rostov-on-Don 344090, Russia;

    Physical Department, Southern Federal University, Sorge, 5, Rostov-on-Don 344090, Russia;

    Arctic and Antarctic Research Institute, 38 Bering Street, Saint-Petersburg 199397, Russia;

    Saint-Petersburg State University of Aerospace Instrumentation, 67, Bolshaya Morskaya Street, Saint-Petersburg 190000, Russia;

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

    Ionosphere; High latitude; Radio propagation; Modeling; IRI; TEC;

    机译:电离层;高纬度;无线电传播;造型;IRI;泰科;

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