Abstract

Nowadays, the accurate identification of natural frequencies and damping ratios play an important role in smart civil engineering, since they can be used for seismic design, vibration control, and condition assessment, among others. To achieve it in practical way, it is required to instrument the structure and apply techniques which are able to deal with noise-corrupted and non-linear signals, as they are common features in real-life civil structures. In this article, a two-step strategy is proposed for performing accurate modal parameters identification in an automated manner. In the first step, it is obtained and decomposed the measured signals using the natural excitation technique and the synchrosqueezed wavelet transform, respectively. Then, the second step estimates the modal parameters by solving an optimization problem employing a genetic algorithm-based approach, where the micropopulation concept is used to improve the speed convergence as well as the accuracy of the estimated values. The accuracy and effectiveness of the proposal are tested using both the simulated response of a benchmark structure and the measurements of a real eight-story building. The obtained results show that the proposed strategy can estimate the modal parameters accurately, indicating than the proposal can be considered as an alternative to perform the abovementioned task.

Highlights

  • Over the last years, retrieving information about the behavior of civil structures under different scenarios is a task of paramount importance, since an inadequate design may not be able to stand the normal vibrations produced by the operational conditions, causing economic, structural, and human catastrophes

  • The utilization of natural sources is usually preferred because: (i) they can properly excite a civil structure regardless of its size; (ii) the normal operation is not interrupted; and (iii) they are the typical vibrations that every civil structure is subjected during its service period [10]

  • 2, the natural frequency damping ratio (DR)ofofeach each individual individual component is calculated in an automatic manner using an optimization scheme solved by a genetic algorithms (GA)-based approach

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Summary

A Two-Step Strategy for System Identification of Civil

Carlos Andres Perez-Ramirez 1 , Arturo Yosimar Jaen-Cuellar 1 , Martin Valtierra-Rodriguez 1 , Aurelio Dominguez-Gonzalez 1 , Roque Alfredo Osornio-Rios 1 , Rene de Jesus Romero-Troncoso 2 and Juan Pablo Amezquita-Sanchez 1, *. Received: November 2016; Accepted: January 2017; Published: 24 January 2017

Introduction
Methodology
Free-Decay Form Estimation
Mode Extraction
Step 2
Numerical Assessment of the New Methodology Performance
Estimated damped response response in in the:
Estimated modes byby the approachininthe: the
Application an Eight-Story
11. Sensor
13. Individual
Conclusions
Findings
Methods
Full Text
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