Structural health monitoring of bridge spans using Moment Cumulative Functions of Power Spectral Density (MCF-PSD) and deep learning

Author:

Nguyen Thanh Q.12,Nguyen Hoang B.2

Affiliation:

1. Science, Research and Development Department, Ho Chi Minh City University of Transport, Ho Chi Minh City, Vietnam

2. Ho Chi Minh City University of Transport, Ho Chi Minh City, Vietnam

Abstract

This article proposes a new parameter in evaluating mechanical behaviors of defected bridge spans. It is Moment Cumulative Function of Power Spectral Density (MCF-PSD) based on changes in shape of power spectrum and trained via cumulative function of spectral moment value by deep learning model. This new parameter allows evaluating stiffness attenuation along time, thereby helps to forecast the workability of bridge span. It can identify risky positions in not only a bridge span but also various spans of the same bridge, which proves its sensitivity to the structure’s behavior change over time. This study reveals that training MCF-PSD using cumulative function algorithm has gained outstanding results in comparison with previous studies in structural quality assessment. Therefore, it fulfills criteria of evaluating the damage level in a structure and also fosters new development of defect diagnosis and forecast. Conclusions from this study show that the change of this function is the basis to evaluate difference among measurement positions in the same span or among different spans of the same bridge and behaviors at different positions in the same span. Therefore, MCF-PSD is more sensitive than other parameters in evaluating the structure’s stiffness attenuation.

Publisher

IOS Press

Subject

Building and Construction

Reference32 articles.

1. Experimental and Numerical Analysis of Transversal Open Cracked Shafts considering Beam Slenderness and Crack Depth;García-Illescas;Proceedings of the 9th IFToMM International Conference on Rotor Dynamics, Mechanisms and Machine Science,2014

2. Simplified Models for the Location of Crack in Beam Structures Using Measure Vibration Data;Sinha;Journal of Sound and Vibration,2002

3. Experimental studies on damage detection of beam structures with wavelet transform;Wu;International Journal of Engineering Science,2011

4. Evaluation Of The Non-Linear Dynamic Response To Harmonic Excitation Of A Beam With Several Breathing Cracks;Surace;Journal of Sound and Vibration,2000

5. Structural Damage Detection by Measurements of Vibration Characteristics;Khiem;International Operational Model Ananysis Conference,2009

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