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Time–Frequency Analysis of Railway Bridges Forced and Free Vibrations Identified by Wavelet Transform
Time–Frequency Analysis of Railway Bridges Forced and Free Vibrations Identified by Wavelet Transform
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Time–Frequency Analysis of Railway Bridges Forced and Free Vibrations Identified by Wavelet Transform
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Time–Frequency Analysis of Railway Bridges Forced and Free Vibrations Identified by Wavelet Transform
Time–Frequency Analysis of Railway Bridges Forced and Free Vibrations Identified by Wavelet Transform

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Time–Frequency Analysis of Railway Bridges Forced and Free Vibrations Identified by Wavelet Transform
Time–Frequency Analysis of Railway Bridges Forced and Free Vibrations Identified by Wavelet Transform
Journal Article

Time–Frequency Analysis of Railway Bridges Forced and Free Vibrations Identified by Wavelet Transform

2025
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Overview
In this work, a time–frequency analysis of two railway bridges included in the InBridge4EU project database is presented. The study focuses on the identification of modal parameters from free responses after train passages and their comparison with estimations obtained from ambient vibration data. The wavelet transform is introduced as a valuable tool for detecting both free and forced bridge responses due to different train passages, as well as for conducting time–frequency analysis. This approach is particularly relevant for the identification of structural damping, given its dependence on vibration amplitude, as it enables the estimation of realistic values representative of bridge behavior under operational conditions. Additionally, the paper examines the complementary use of free vibrations for identifying natural frequencies and comparing them with results from ambient vibration tests. Wavelet analysis further reveals the predominant frequencies in the structural response before, during, and after train crossings, thereby capturing the influence of the moving vehicle on bridge dynamics.