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Ambient Vibration Data Analysis for Structural Identification and Global Condition Assessment
Authors:Mustafa Gul  F Necati Catbas
Affiliation:1Ph.D. Candidate, Civil and Environmental Engineering Dept., Univ. of Central Florida, Orlando, FL 32816.
2Associate Professor, Civil and Environmental Engineering Dept., Univ. of Central Florida, Orlando, FL 32816 (corresponding author). E-mail: catbas@mail.ucf.edu
Abstract:System identification is an area which deals with developing mathematical models to characterize the input-output behavior of an unknown system by means of experimental data. Structural health monitoring (SHM) provides the tools and technologies to collect and analyze input and output data to track the structural behavior. One of the most commonly used SHM technologies is dynamic testing. Ambient vibration testing is a practical dynamic testing method especially for large civil structures where input excitation cannot be directly measured. This paper presents a conceptual and reliable methodology for system identification and structural condition assessment using ambient vibration data where input data are not available. The system identification methodology presented in this study is based on the use of complex mode indicator functions (CMIFs) coupled with the random decrement (RD) method to identify the modal parameters from the output only data sets. CMIF is employed for parameter identification from the unscaled multiple-input multiple-output data sets generated using the RD method. For condition assessment, unscaled flexibility and the deflection profiles obtained from the dynamic tests are presented as a conceptual indicator. Laboratory tests on a steel grid and field tests on a long-span bridge were conducted and the dynamic properties identified from these tests are presented. For demonstrating condition assessment, deflected shapes obtained from unscaled flexibility are compared for undamaged and damaged laboratory grid structures. It is shown that structural changes on the steel grid structure are identified by using the unscaled deflected shapes.
Keywords:Structural dynamics  Vibration  Impact tests  Modal analysis  Damage assessment  Flexibility  
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