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Investigation of the characteristics of geoelectric field signals prior to earthquakes using adaptive STFT techniques

机译:利用自适应STFT技术研究地震前的地电场信号特征

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An earthquake is one of the most destructive natural disasters that can occur, often killing many people and causing large material losses. Hence, the ability to predict earthquakes may reduce the catastrophic effects caused by this phenomenon. The geoelectric field is a feature that can be used to predict earthquakes (EQs) because of significant changes in the amplitude of the signal prior to an earthquake. This paper presents a detailed analysis of geoelectric field signals of earthquakes which occurred in 2008 in Greece. In 2008, 12 earthquakes occurred in Greece. Five of them were recorded with magnitudes greater than M_s =5R (5R), while seven of them were recorded with magnitudes greater thanM_s =6R (6R). In the analysis, the 1st significant changes of the geoelectric field signal are detected. Then, the signal is segmented and windowed. The adaptive shorttime Fourier transform (adaptive STFT) technique is then applied to the windowed signal, and the spectral analysis is performed thereafter. The results show that the 1st significant changes of the geoelectric field prior to an earthquake have a significant amplitude frequency spectrum compared to other conditions, i.e. normal days and the day of the earthquake, which can be used as input parameters for earthquake prediction.
机译:地震是可能发生的最具破坏力的自然灾害之一,经常造成许多人死亡,并造成大量物质损失。因此,预测地震的能力可以减少由这种现象引起的灾难性影响。由于地震前信号幅度的显着变化,地电场是一种可用于预测地震(EQ)的功能。本文对希腊在2008年发生的地震的地电场信号进行了详细分析。 2008年,希腊发生了12次地震。其中五个记录的幅度大于M_s = 5R(5R),而其中七个记录的幅度大于M_s = 6R(6R)。在分析中,检测到地电场信号的第一个显着变化。然后,将信号分段并加窗显示。然后将自适应短时傅立叶变换(自适应STFT)技术应用于加窗信号,然后进行频谱分析。结果表明,与其他条件(即正常日和地震日)相比,地震前地电场的第一次显着变化具有明显的幅度频谱,可以用作地震预测的输入参数。

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