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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Signal separation and correction with multiple Doppler acoustic sources for wayside fault diagnosis of train bearings
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Signal separation and correction with multiple Doppler acoustic sources for wayside fault diagnosis of train bearings

机译:用多种多湾声学来源的信号分离和校正,用于列车轴承的路边故障诊断

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The extraction of single train signal is necessary in wayside fault diagnosis because the acoustic signal acquired by a microphone is composed of multiple train bearing signals and noises. However, the Doppler distortion in the signal acquired by a microphone effectively hinders the signal separation and fault diagnosis. To address this issue, we propose a novel method based on the generalized S-transform, morphological filtering, and time-frequency amplitude matching-based resampling time series for multiple-Doppler-acoustic-source signal separation and correction. First, the original time-frequency distribution is constructed by applying generalized S-transform to the raw signal acquired by a microphone. Based on a morphological filter, several time-frequency distributions corresponding to different single source Doppler fault signals are extracted from the original time-frequency distribution. Subsequently, the time-frequency distributions are reverted to time signals by inverse generalized S-transform. Then, a resampling time series is built by time-frequency amplitude matching to obtain the correct signals without Doppler distortion. Finally, the bearing fault is diagnosed by the envelope spectrum of the correction signal. The effectiveness of this method is verified by simulated and practical signals.
机译:由于麦克风获取的声学信号由多个列车轴承信号和噪声组成,因此在WideSide故障诊断中提取单列火车信号是必要的。然而,通过麦克风获取的信号中的多普勒失真有效地阻碍了信号分离和故障诊断。为了解决这个问题,我们提出了一种基于广义S变换,形态过滤和基于时间频率幅度匹配的重采样时间序列的新方法,用于多多普勒 - 声源信号分离和校正。首先,通过将广义的S转换应用于由麦克风获取的原始信号来构造原始的时频分布。基于形态滤波器,从原始时频分布中提取对应于不同单源多普勒故障信号的若干时频分布。随后,通过逆广泛的S转换将时频分布恢复到时间信号。然后,通过时频幅度匹配构建重采样时间序列,以获得没有多普勒失真的正确信号。最后,轴承故障被校正信号的包络谱诊断出来。通过模拟和实际信号验证该方法的有效性。

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