频率切片小波变换在爆破振动信号时频特征精确提取中应用

郭 涛;方 向;谢全民;严中红;范 磊

振动与冲击 ›› 2013, Vol. 32 ›› Issue (22) : 73-78.

PDF(1733 KB)
PDF(1733 KB)
振动与冲击 ›› 2013, Vol. 32 ›› Issue (22) : 73-78.
论文

频率切片小波变换在爆破振动信号时频特征精确提取中应用

  • 郭 涛1,方 向1,谢全民2,严中红3,范 磊1
作者信息 +

Application of fswt in time-frequency feature accurate extraction of blasting vibration signals

  • GUO Tao1,FANG Xiang1,XIE Quan-min2,YAN Zhong-hong3,FAN Lei1
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摘要

基于频率切片小波变换(Frequency Slice Wavelet Transform, FSWT)技术研究爆破振动信号时频特征提取新方法。采用FSWT进行爆破振动信号分解,得到在全频带下的时频分布。在此基础上据其时频能量分布,选择时间、频率切片区间进行细化特征分析,通过信号特征频率切片区间信号重构,实现爆破振动时频特征分离及提取。通过与传统的STFT、WPT、WVD等算法进行对比分析表明,FSWT算法具有良好的时频聚集性、任意频带分量特征提取的灵活性及准确性。将FSWT算法引入爆破振动效应分析领域,可为爆破振动信号时频特征精确提取奠定基础,具应用前景较好。

Abstract

New time-frequency feature extraction method was researched based on frequency slice wave-let transform (FSWT). FSWT was used to decompose the blasting vibration signal and full band of time-frequency distribution was got. After that, according to its energy distribution, time and frequency inter-vals were chosen to get accurate analysis of time-frequency feature. Through the reconstruction signal under characteristic frequency slices, separation and extraction of time-frequency feature were worked out. Compara-tive analysis between FSWT and traditional algorithms such as STFT, WPT and WVD shows that, FSWT algo-rithm has good time-frequency clustering, good flexibility because any band component feature can be ex-tracted, and better accuracy. FSWT algorithm was introduced to blasting vibration effects analysis fields, and it has made some groundwork for time-frequency feature extraction accurately. So, it will have a good application prospect.


关键词

爆破振动 / 频率切片小波变换 / 时频分析 / 特征提取

Key words

blasting vibration / frequency slice wavelet transform(FSWT) / time-frequency analysis / fea-ture extraction

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郭 涛;方 向;谢全民;严中红;范 磊. 频率切片小波变换在爆破振动信号时频特征精确提取中应用[J]. 振动与冲击, 2013, 32(22): 73-78
GUO Tao;FANG Xiang;XIE Quan-min;YAN Zhong-hong;FAN Lei. Application of fswt in time-frequency feature accurate extraction of blasting vibration signals[J]. Journal of Vibration and Shock, 2013, 32(22): 73-78

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