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联合CEEMD和改进修正能量比的高频GNSS同震位移P波震相识别方法

董龙飞 李艳艳 龙海立

全球定位系统2025,Vol.50Issue(1):25-32,59,9.
全球定位系统2025,Vol.50Issue(1):25-32,59,9.DOI:10.12265/j.gnss.2024118

联合CEEMD和改进修正能量比的高频GNSS同震位移P波震相识别方法

P-wave phase identification with combined CEEMD and improved modified energy ratio for high frequency GNSS co-seismic placements

董龙飞 1李艳艳 1龙海立1

作者信息

  • 1. 山东科技大学测绘与空间信息学院,青岛 266590
  • 折叠

摘要

Abstract

In view of the shortcomings of low accuracy,poor adaptability,and error-prone P-wave phase picking in high-rate GNSS co-seismic displacements,a method combining complete ensemble empirical mode decomposition(CEEMD)and improved modified energy ratio(IMER)for high-rate GNSS co-seismic displacement P-wave phase identification is proposed to overcome the impact of low signal-to-noise ratio(SNR)and non-stationarity on P-wave phase picking.This method first decomposes the high-rate GNSS co-seismic waveform after wavelet threshold denoising using CEEMD to obtain several intrinsic mode functions(IMFs).Then,multiscale permutation entropy(MPE)is used to group the IMF components into frequency bands,and the signal is reconstructed from the high-frequency components.Finally,the IMER method is applied to accurately pick up the first arrivals of the P-wave in the reconstructed signal.The method is tested using high-rate GNSS data from seismic stations in the Ridgecrest area of California,USA,to pick up the P-wave first arrivals from the acquired co-seismic displacement and velocity waveforms.The results show that,compared with the three traditional methods,CEEMD-IMER has the highest accuracy of P-wave first arrivals pickup and can provide technical support for the early warning of earthquakes and rapid assessment of post-earthquake disasters.

关键词

高频GNSS/同震位移/完备集合经验模态分解(CEEMD)/震相识别/地震预警

Key words

high-rate GNSS/co-seismic placements/CEEMD/seismic phese identification/earthquake early warning

分类

测绘与仪器

引用本文复制引用

董龙飞,李艳艳,龙海立..联合CEEMD和改进修正能量比的高频GNSS同震位移P波震相识别方法[J].全球定位系统,2025,50(1):25-32,59,9.

基金项目

国家自然科学基金(41804001) (41804001)

山东省自然科学基金(ZR2019BD006) (ZR2019BD006)

全球定位系统

1008-9268

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