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      First-Order Eigen-Perturbation Techniques for Real-Time Damage Detection of Vibrating Systems: Theory and Applications

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          Abstract

          This manuscript provides a detailed synopsis of the contemporary advancements in the nascent area of real-time structural damage detection for vibrating systems. The paper mainly focuses on the theoretical development and engineering applications of algorithms that are based on first-order perturbation (FOP) techniques applied to vibration responses. The importance of this work stems from the fact that recent developments in the field of online structural health monitoring (SHM) have given rise to algorithms that are computationally complex and, consequently, are not amenable to real-time implementation. In this paper, we discuss and demonstrate the FOP-based algorithms in the light of all the contemporary nonadaptive/nonrecursive techniques to establish their relevance. We review 216 papers in this regard. The efficacy, efficiency, robustness, and the applicability of the FOP family of algorithms are highlighted in light of several experimental, theoretical, and field studies.

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          The empirical mode decomposition and the Hilbert spectrum for nonlinear and non-stationary time series analysis

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            Rotation of principal components

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              A Summary Review of Vibration-Based Damage Identification Methods

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                Author and article information

                Journal
                Applied Mechanics Reviews
                ASME International
                0003-6900
                2379-0407
                November 01 2019
                November 01 2019
                September 19 2019
                : 71
                : 6
                Affiliations
                [1 ]School of Mechanical and Materials Engineering, University College Dublin, Dublin D04FX62, Ireland; Centre for Marine and Renewable Energy Ireland, University College Dublin, Dublin D04FX62, Ireland
                [2 ]Department of Civil Engineering, Indian Institute of Technology Guwahati, Guwahati, Assam 781039, India
                [3 ]Dynamical Systems and Risk Laboratory, School of Mechanical and Materials Engineering, University College Dublin, Dublin D04FX62, Ireland; Centre for Marine and Renewable Energy Ireland, University College Dublin, Dublin D04FX62, Ireland
                Article
                10.1115/1.4044287
                ee177b98-730b-4247-bda8-545365df7c4f
                © 2019
                History

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