基于小波分析法的城市轨道交通轨面短波不平顺实测研究
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华东交通大学 山区土木工程安全与韧性全国重点实验室

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Research on short-wave irregularity of urban rail transit based on wavelet analysis method
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    摘要:

    城市轨道交通轨面短波不平顺现场实测数据常常表现出非平稳性,基于多分辨率和自适应性的小波法对上海轨道交通11号线部分区段轨面短波不平顺非平稳数据展开研究。研究表明:利用小波基函数可识别轨道短波不平顺波形局部特征;由小波分解的逼近信号和细节信号可识别出轨道在20.298 m和115.98 m波长处存在较大不平顺;将小波分解得到的逼近信号和细节信号进行功率谱分析,对不同波长范围内特征不平顺的识别,可以得到不同波形对功率谱的贡献情况。由小波变换法分别计算地下线路、高架线路直线段、曲线区段焊接接头区的小波谱,并与sato谱和铁科院短波谱进行了对比。小波分析法可对轨面短波不平顺现场实测数据中不满足平稳性要求的数据进行处理分析,为全面分析城市轨道交通轨面短波不平顺特征提供了较好的方法。

    Abstract:

    The on-site measured data of short-wave irregularities on urban rail transit track surfaces often exhibit non-stationary characteristics. A study was conducted on the non-stationary short-wave irregularity data of certain sections of Shanghai Metro Line 11 using a wavelet method based on multi-resolution and adaptability. The research demonstrates that wavelet basis functions can effectively identify local features of short-wave irregularity waveforms. Through the approximation and detail signals obtained from wavelet decomposition, significant irregularities at wavelengths of 20.298 m and 115.98 m were identified. Power spectrum analysis of these decomposed signals revealed the contributions of different waveforms to the power spectrum across various wavelength ranges. The wavelet spectra of underground lines, elevated straight sections, and curved sections with welded joints were calculated using the wavelet transform method and compared with the Sato spectrum and the short-wave spectrum from the China Academy of Railway Sciences. The results indicate that the wavelet analysis method can effectively process non-stationary data, providing a robust approach for comprehensively analyzing the characteristics of short-wave irregularities on urban rail transit track surfaces.

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  • 收稿日期:2025-06-21
  • 最后修改日期:2025-08-06
  • 录用日期:2025-09-08
  • 在线发布日期: 2026-06-05
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