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Ionospheric storm effects over the People's Republic of China on 14 May 2019: Results from multipath multi-frequency oblique radio sounding

机译:2019年5月14日中华人民共和国对中华人民共和国的电离层风暴影响:多径多频斜无线电探测的结果

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摘要

Results obtained from observations of ionospheric disturbances over the People's Republic of China during the course of the geospace storm of 14 May 2019, one of the largest storms in 2019, are presented. The Harbin Engineering University operates the multi-frequency multipath radio wave diagnostics employing software defined technology and continuously monitoring dynamic process acting in the ionosphere at oblique incidence since April 2018. The basic premise upon which this instrument operation is based is that the digital re-sampling remains coherent with radio frequency for each propagation path, which permits Doppler spectra and signal amplitudes to be calculated along each of the 14 propagation paths. UT dependences of the Doppler spectra, the main mode Doppler shifts of frequency, and signal amplitudes that were measured on the day of the ionospheric storm and on the reference days of 13 and 15 May 2019 have been analyzed. After the magnetic storm onset, the Doppler shift of frequency exhibits an abrupt -1-Hz decrease, indicating the ionospheric storm onset. In addition, quasi-periodic variations in the Doppler shift of frequency, with 5-, 15-, 20-, and 30-min periods and the amplitudes in the range from 0.05 Hz to 0.15 Hz, occur in the course of the storm. These variations are due to modulation by infrasound (5-min period oscillation) and atmospheric gravity waves (15-, 20-, and 30-min period oscillations). In the electron density, the corresponding waves have amplitudes equal to 0.7% and 4-8%, respectively.
机译:2019年5月14日的地球合区风暴期间,从中华人民共和国对中华人民共和国的远离电离层紊乱的结果提出了2019年最大的风暴之一。哈尔滨工程大学采用软件定义技术的多频多径无线电波诊断,并在2018年4月以来,在斜发射以来的倾斜发病率持续监测在电离层中作用的动态过程。本仪器操作所基础的基本前提是数字重新采样对于每个传播路径的射频保持连贯,这允许沿着14传播路径中的每一个计算的多普勒频率和信号幅度。已经分析了多普勒光谱的UT依赖性,频率的主模式多普勒偏移和在电离层风暴的日期和2019年5月13日和15日的参考日测量的信号幅度。在磁风暴发作之后,频率的多普勒偏移表现出突然-1-Hz减少,表明电离层风暴发作。此外,在风暴过程中发生了5-,15-,20-和30分钟的多普勒频率的准周期性变化,其中5-15,20-和30分钟,其范围为0.05Hz至0.15Hz。这些变化是由于基础驱动(5分钟周期振荡)和大气重力波(15-,20-和30分钟振荡)的调制。在电子密度中,相应的波分别具有等于0.7%和4-8%的幅度。

著录项

  • 来源
    《Advances in space research》 |2020年第2期|226-242|共17页
  • 作者单位

    College of Electronic and Information Engineering Qingdao University 308 Ningxia Road Qingdao 266071 China School of Radiophysics Biomedical Electronics and Computer Systems V. N. Karazin Kharkiv National University 4 Svobody Sq. Kharkiv 61022 Ukraine College of Information and Communication Engineering Harbin Engineering University 145 Nantong Street Harbin 150001 China;

    School of Radiophysics Biomedical Electronics and Computer Systems V. N. Karazin Kharkiv National University 4 Svobody Sq. Kharkiv 61022 Ukraine;

    College of Information and Communication Engineering Harbin Engineering University 145 Nantong Street Harbin 150001 China;

    School of Radiophysics Biomedical Electronics and Computer Systems V. N. Karazin Kharkiv National University 4 Svobody Sq. Kharkiv 61022 Ukraine;

    School of Radiophysics Biomedical Electronics and Computer Systems V. N. Karazin Kharkiv National University 4 Svobody Sq. Kharkiv 61022 Ukraine;

    College of Electronic and Information Engineering Qingdao University 308 Ningxia Road Qingdao 266071 China;

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

    Ionospheric storm; Multi-frequency multipath system; Doppler spectra; Signal amplitude; Electron density; Quasi-periodic perturbations;

    机译:电离层风暴;多频多径系统;多普勒光谱;信号幅度;电子密度;准周期性扰动;
  • 入库时间 2022-08-18 21:48:30

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