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The Second-Order Synchrosqueezing Continuous Wavelet Transform and Its Application in the High-Speed-Train Induced Seismic Signal

机译:连续小波变换的二阶同步调节及其在高速串起地震信号中的应用

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摘要

Thousands of high-speed trains (HSTs) run on over 30000-km high-speed railway every day in China. These running trains not only cause vibrations but also stimulate all kinds of seismic waves. The receiver seismic signal's spectrum has one special equal-interval, multinarrowband feature. Some commonly used time-frequency (TF) analyzing methods, such as the short-time Fourier transform, continuous wavelet transform, and the Stockwell transform, can capture a signal's TF features and reconstruct signal without loss. However, their TF resolution is limited by the uncertainty principle. In this letter, we apply the second-order synchrosqueezing continuous wavelet transform (SSCWT), which is one improved SSCWT, to the HST induced seismic signal and capture its TF spectrum features. The synthetic data example and real data example have proved the second-order SSCWT can provide a more concentrated TF spectrum than the commonly used SSCWT.
机译:数千家高速列车(HSTS)在中国每天超过30000公里的高速铁路运行。 这些跑火车不仅导致振动,而且刺激各种地震波。 接收器地震信号的频谱具有一个特殊的相等间隔,多个载波功能。 一些常用的时频(TF)分析方法,例如短时傅里叶变换,连续小波变换和岸上变换,可以捕获信号的TF特征并没有损失重建信号。 但是,他们的TF分辨率受到不确定性原则的限制。 在这封信中,我们应用了二阶同步速度连续小波变换(SSCWT),它是一个改进的SSCWT,对HST引起的地震信号并捕获其TF频谱特征。 已证明合成数据示例和实际数据示例已经证明了二阶SSCWT可以提供比常用的SSCWT更集中的TF频谱。

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