Structural Damage Identification through an Optimal Sensor Placement Approach and the Modal Strain Energy Based Index

In this study, an efficient method for determining the accurate location of damage to structures is introduced using an optimal sensor placement (OSP) and modal strain energy-based index (MSEBI). The research is implemented in two main stages. In the first stage, a correlation function between the r...

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Main Authors: Seyed Mohammad Seyedpoor, Reza Yahyapour, Ali Asghar Mofdi, Saeed Fallahian
Format: Article
Language:English
Published: Semnan University 2024-02-01
Series:Journal of Rehabilitation in Civil Engineering
Subjects:
Online Access:https://civiljournal.semnan.ac.ir/article_7936_ae52bb46d2720deeba8b0768bb3a4b2a.pdf
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author Seyed Mohammad Seyedpoor
Reza Yahyapour
Ali Asghar Mofdi
Saeed Fallahian
author_facet Seyed Mohammad Seyedpoor
Reza Yahyapour
Ali Asghar Mofdi
Saeed Fallahian
author_sort Seyed Mohammad Seyedpoor
collection DOAJ
description In this study, an efficient method for determining the accurate location of damage to structures is introduced using an optimal sensor placement (OSP) and modal strain energy-based index (MSEBI). The research is implemented in two main stages. In the first stage, a correlation function between the reconstructed mode shapes using the iterated improved reduced system (IRS) method and the complete mode shapes of a structure is defined and then the function is minimized via the binary differential evolution (BDE) algorithm to find the optimal sensor placement of the structure. In the second stage, the location of damage is determined using MSEBI based on the optimum place of sensors obtained already. In order to assess the efficiency of the proposed method, two standard examples, including a two-dimensional (2-D) frame structure with 45 elements and a 2-D truss with 47 elements, are examined. Numerical results, considering different conditions, demonstrate that the integration of OSP method and MSEBI can provide an efficient tool for accurate and rapid identification of the damage location. The parametric study shows that the proposed method has a low sensitivity to the number of modes and noise level, and it can properly identify damage by considering a few modes and the high level of noise.
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issn 2345-4415
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publishDate 2024-02-01
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series Journal of Rehabilitation in Civil Engineering
spelling doaj-art-2bae71051a6640d8a2322fbc28b68bbc2025-01-21T20:47:25ZengSemnan UniversityJournal of Rehabilitation in Civil Engineering2345-44152345-44232024-02-0112112714410.22075/jrce.2023.29823.18057936Structural Damage Identification through an Optimal Sensor Placement Approach and the Modal Strain Energy Based IndexSeyed Mohammad Seyedpoor0Reza Yahyapour1Ali Asghar Mofdi2Saeed Fallahian3Associate Professor of Structural Engineering, Shomal University, Amol, Mazandaran, IranM.Sc. Graduated, Department of Civil Engineering, Shomal University, Amol, Mazandaran, IranM.Sc. Graduated, Department of Civil Engineering, Shomal University, Amol, Mazandaran, IranAssistant Professor of Structural Engineering, Shomal University, Amol, Mazandaran, IranIn this study, an efficient method for determining the accurate location of damage to structures is introduced using an optimal sensor placement (OSP) and modal strain energy-based index (MSEBI). The research is implemented in two main stages. In the first stage, a correlation function between the reconstructed mode shapes using the iterated improved reduced system (IRS) method and the complete mode shapes of a structure is defined and then the function is minimized via the binary differential evolution (BDE) algorithm to find the optimal sensor placement of the structure. In the second stage, the location of damage is determined using MSEBI based on the optimum place of sensors obtained already. In order to assess the efficiency of the proposed method, two standard examples, including a two-dimensional (2-D) frame structure with 45 elements and a 2-D truss with 47 elements, are examined. Numerical results, considering different conditions, demonstrate that the integration of OSP method and MSEBI can provide an efficient tool for accurate and rapid identification of the damage location. The parametric study shows that the proposed method has a low sensitivity to the number of modes and noise level, and it can properly identify damage by considering a few modes and the high level of noise.https://civiljournal.semnan.ac.ir/article_7936_ae52bb46d2720deeba8b0768bb3a4b2a.pdfdamage identificationoptimal sensor placementmodal strain energyiterated improved reduced system
spellingShingle Seyed Mohammad Seyedpoor
Reza Yahyapour
Ali Asghar Mofdi
Saeed Fallahian
Structural Damage Identification through an Optimal Sensor Placement Approach and the Modal Strain Energy Based Index
Journal of Rehabilitation in Civil Engineering
damage identification
optimal sensor placement
modal strain energy
iterated improved reduced system
title Structural Damage Identification through an Optimal Sensor Placement Approach and the Modal Strain Energy Based Index
title_full Structural Damage Identification through an Optimal Sensor Placement Approach and the Modal Strain Energy Based Index
title_fullStr Structural Damage Identification through an Optimal Sensor Placement Approach and the Modal Strain Energy Based Index
title_full_unstemmed Structural Damage Identification through an Optimal Sensor Placement Approach and the Modal Strain Energy Based Index
title_short Structural Damage Identification through an Optimal Sensor Placement Approach and the Modal Strain Energy Based Index
title_sort structural damage identification through an optimal sensor placement approach and the modal strain energy based index
topic damage identification
optimal sensor placement
modal strain energy
iterated improved reduced system
url https://civiljournal.semnan.ac.ir/article_7936_ae52bb46d2720deeba8b0768bb3a4b2a.pdf
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AT rezayahyapour structuraldamageidentificationthroughanoptimalsensorplacementapproachandthemodalstrainenergybasedindex
AT aliasgharmofdi structuraldamageidentificationthroughanoptimalsensorplacementapproachandthemodalstrainenergybasedindex
AT saeedfallahian structuraldamageidentificationthroughanoptimalsensorplacementapproachandthemodalstrainenergybasedindex