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Journal ArticleDOI

Power Spectral Density of Defect Beams Under a Moving Load

TLDR
In this paper, the authors investigated changes in the power spectral density caused by beam damage and proposed a parameter to monitor a structure's deteriorating conditions based on the shape of the damaged beam.
Abstract
Using the vibration signals of damaged beams under the act of a moving load, this article investigates changes in the power spectral density caused by beam damage. Based on the results, the authors have proposed a parameter to monitor a structure’s deteriorating conditions. Cracks were created in beams that changed the stiffness of the structure, and simulations of deterioration were conducted. The features proposed in this article are based on the changing shapes of power spectral density from which deterioration in a damaged beam structure can be detected. The experiment was designed to achieve the simulation that best corresponds to a realistic flow of traffic along bridges. Acceleration sensors installed along the beams received the vibration signals that were used to establish the power spectral density. The results of this article show that for a damaged beam, changes in the shapes of power spectral density are much more prominent than changes in the fundamental frequency value. In other words, when compared to using fundamental frequency changes, using shape changes in power spectral density will increase the likelihood of detecting damage for a variety of beam structures.

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ReportDOI

Damage identification and health monitoring of structural and mechanical systems from changes in their vibration characteristics: A literature review

TL;DR: A review of the technical literature concerning the detection, location, and characterization of structural damage via techniques that examine changes in measured structural vibration response is presented in this article, where the authors categorize the methods according to required measured data and analysis technique.
Book

Vibration of solids and structures under moving loads

TL;DR: In this paper, one-dimensional solids, two-dimensional and three-dimensional (3D) solids have been studied in the context of special problems, where the problem is to solve a special problem.
Journal ArticleDOI

Development in vibration-based structural damage detection technique

TL;DR: In this article, a general summary and review of state-of-the-art and development of vibration-based structural damage detection methods is presented, and the principle of intelligent damage diagnosis and its application prospects in structural damage detecting are introduced.
Book

Random Vibrations: Analysis of Structural and Mechanical Systems

TL;DR: Table of Contents Chapter 1 Introduction Chapter 2 Fundamentals of Probability and Random Variables Chapter 3 Expected Values of Random Variable Values Chapter 4 Analysis of Stochastic Processes Chapter 5 Time Domain Linear Vibration Analysis Chapter 6 Frequency Domain Analysis Chapter 7 Frequency, bandwith, and Amplitude Chapter 8 Matrix Analysis of Linear Systems.
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