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

Идентификация повреждений и мониторинг состояния конструктивных и механических систем по изменениям их вибрационных характеристик: обзор литературы
Charles R. Farrar, Scott W. Doebling, Michael B. Prime, Daniel Shevitz
1996-05-01

damage identificationmodal frequency changesmode shape changesstiffness matrix updatingvibration-based health monitoring
This report contains 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. The report first categorizes the methods according to required measured data and analysis technique. The analysis categories include changes in modal frequencies, changes in measured mode shapes (and their derivatives), and changes in measured flexibility coefficients. Methods that use property (stiffness, mass, damping) matrix updating, detection of nonlinear response, and damage detection via neural networks are also summarized. The applications of the various methods to different types of engineering problems are categorized by type of structure and are summarized. The types of structures include beams, trusses, plates, shells, bridges, offshore platforms, other large civil structures, aerospace structures, and composite structures. The report describes the development of the damage-identification methods and applications and summarizes the current state-of-the-art of the technology. The critical issues for future research in the area of damage identification are also discussed.
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Additional summarized approaches include property (stiffness, mass, damping) matrix updating, detection of nonlinear response, and neural-network-based damage detection.
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Applications of these methods are organized and summarized across structure types: beams, trusses, plates, shells, bridges, offshore platforms, large civil structures, aerospace structures, and composite structures.
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Damage identification methods are categorized by required measured data and analysis technique, including modal frequencies, mode shapes (and derivatives), and flexibility coefficients.
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The report traces development of damage-identification methods, summarizes the state-of-the-art, and identifies critical issues and research needs for future work in the field.

Structural and mechanical systems whose vibration characteristics are measured for damage identification and health monitoring

Detection, localization, and characterization of damage (health monitoring) through changes in measured vibration characteristics (modal frequencies, mode shapes and derivatives, flexibility coefficients), including matrix-updating, nonlinear-response detection, and neural-network methods

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1996-05-01
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Authors
Charles R. Farrar
Scott W. Doebling
Michael B. Prime
Daniel Shevitz
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