TY - JOUR
T1 - The operation modal analysis of the structure crack fault diagnosis based on pseudo-successive data
AU - Chen, Xiaoguang
AU - Yang, Jinpeng
AU - Sheng, Xi
AU - An, Zhengang
AU - Li, Bing
N1 - Publisher Copyright:
© JVE INTERNATIONAL LTD.
PY - 2017/10/1
Y1 - 2017/10/1
N2 - In order to monitor the crack propagation of the structure in the working state for a long time, an operation modal analysis method based on pseudo-successive data is proposed. The vibration response signals of the cantilever beam under white noise excitation are collected and the modal parameters are extracted by the time-frequency operation modal analysis method based on the complex Morlet wavelet. In comparison with the experimental modal analysis results of hammering method, it is revealed that the error of the time-frequency operation modal analysis method is less than 10 %. By setting cracks of different lengths on the cantilever beam, the vibration response signals are extracted, and the modal parameters are extracted by the operation modal analysis method separately. By comparing those modal parameters above, it is found that the natural frequencies of the second, the fourth and the sixth orders decrease with the increase of the crack depth, and the changes of natural frequencies show the monotonicity. So, it can be used as an index for quantitative identification of crack damage. The pseudo continuous data monitoring signals of crack propagation can be constructed by means of "first discrete, then continuous". The modal parameters changes of the whole crack propagation can be observed in one time plane by means of the operation modal analysis method. Therefore, the effective monitoring and diagnosis of the structure can be completed in case of excessive data of long-time vibration monitoring signals.
AB - In order to monitor the crack propagation of the structure in the working state for a long time, an operation modal analysis method based on pseudo-successive data is proposed. The vibration response signals of the cantilever beam under white noise excitation are collected and the modal parameters are extracted by the time-frequency operation modal analysis method based on the complex Morlet wavelet. In comparison with the experimental modal analysis results of hammering method, it is revealed that the error of the time-frequency operation modal analysis method is less than 10 %. By setting cracks of different lengths on the cantilever beam, the vibration response signals are extracted, and the modal parameters are extracted by the operation modal analysis method separately. By comparing those modal parameters above, it is found that the natural frequencies of the second, the fourth and the sixth orders decrease with the increase of the crack depth, and the changes of natural frequencies show the monotonicity. So, it can be used as an index for quantitative identification of crack damage. The pseudo continuous data monitoring signals of crack propagation can be constructed by means of "first discrete, then continuous". The modal parameters changes of the whole crack propagation can be observed in one time plane by means of the operation modal analysis method. Therefore, the effective monitoring and diagnosis of the structure can be completed in case of excessive data of long-time vibration monitoring signals.
KW - Crack propagation
KW - Damage identification
KW - Operation modal analysis
KW - Pseudo-successive data
UR - https://www.scopus.com/pages/publications/85037375822
U2 - 10.21595/vp.2017.19213
DO - 10.21595/vp.2017.19213
M3 - 会议文章
AN - SCOPUS:85037375822
SN - 2345-0533
VL - 14
SP - 108
EP - 114
JO - Vibroengineering Procedia
JF - Vibroengineering Procedia
T2 - 28th International Conference on Vibroengineering
Y2 - 19 October 2017 through 21 October 2017
ER -