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Automatic detection of ionospheric Alfv??n resonances using signal and image processing techniques

机译:使用信号和图像处理技术自动检测电离层Alfv ?? n共振

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Induction coils permit the measurement of small and very rapid changes of the magnetic field. A new set of induction coils in the UK (at iL/i = 3.2) record magnetic field changes over an effective frequency range of 0.1a??40 Hz, encompassing phenomena such as the Schumann resonances, magnetospheric pulsations and ionospheric Alfv??n resonances (IARs). The IARs typically manifest themselves as a series of spectral resonance structures (SRSs) within the 1a??10 Hz frequency range, usually appearing as fine bands or fringes in spectrogram plots and occurring almost daily during local night-time, disappearing during the daylight hours. The behaviour of the occurrence in frequency (if/i) and the difference in frequency between fringes (Δif/i) varies throughout the year. In order to quantify the daily, seasonal and annual changes of the SRSs, we developed a new method based on signal and image processing techniques to identify the fringes and to quantify the values of if/i, Δif/i and other relevant parameters in the data set. The technique is relatively robust to noise though requires tuning of threshold parameters. We analyse 18 months of induction coil data to demonstrate the utility of the method.
机译:感应线圈可以测量磁场的微小且非常快速的变化。英国的一组新的感应线圈(在 L = 3.2处)记录了有效频率范围0.1a ?? 40 Hz内的磁场变化,其中包括诸如舒曼共振,磁层脉动和电离层AlfvΔn共振(IAR)。 IAR通常表现为在1a ?? 10 Hz频率范围内的一系列频谱共振结构(SRS),通常在频谱图上显示为细带或条纹,并在当地夜间几乎每天都出现,在白天消失。 。频率( f )的出现和条纹之间的频率差(Δ f )的行为在全年中变化。为了量化SRS的每日,季节性和年度变化,我们开发了一种基于信号和图像处理技术的新方法来识别条纹并量化 f ,& i > f 和数据集中的其他相关参数。尽管需要调整阈值参数,但是该技术对噪声相对鲁棒。我们分析了18个月的感应线圈数据,以证明该方法的实用性。

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