Evaluation of Improved Mode Shape Curvature-Based Damage Detection using Robust Regression Method
Structural Health Monitoring (SHM) is an important tool to maintain structures integrity and safety. Gapped Smoothing Method (GSM) is a high sensitivity algorithm for damage detection using mode shape curvature (MSC) to identify small size of damage. However, it has limited capability to localize wi...
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| Published in | IOP conference series. Materials Science and Engineering Vol. 1092; no. 1; p. 12036 |
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| Main Authors | , , |
| Format | Journal Article |
| Language | English |
| Published |
Bristol
IOP Publishing
01.03.2021
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| Subjects | |
| Online Access | Get full text |
| ISSN | 1757-8981 1757-899X 1757-899X |
| DOI | 10.1088/1757-899X/1092/1/012036 |
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| Abstract | Structural Health Monitoring (SHM) is an important tool to maintain structures integrity and safety. Gapped Smoothing Method (GSM) is a high sensitivity algorithm for damage detection using mode shape curvature (MSC) to identify small size of damage. However, it has limited capability to localize wide size of damage with decent accuracy. The objective of this study is to improve GSM algorithm using Robust Regression i.e., Iteratively Re-weighted Least Square (IRLS) methods. Subsequently, evaluate the proposed algorithm’s capability to localize damage with different size and number of measurements of an aluminum beam numerically. Damage Estimate Reliability (DER) was used to evaluate effectiveness of the improved GSM algorithm. The obtained result shows inclusion of robust regression in the original GSM algorithm increase Damage Estimate Reliability (DER) for 50mm damage size with damage level 20% by 11.6%. IRLS reduces influence of an outlier towards estimation of undamaged MSC that cause noise around damage area (in damage index plot) therefore produce more accurate estimation of damage size. Improvement of GSM allows this method to localize different level of damage in structures. |
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| AbstractList | Structural Health Monitoring (SHM) is an important tool to maintain structures integrity and safety. Gapped Smoothing Method (GSM) is a high sensitivity algorithm for damage detection using mode shape curvature (MSC) to identify small size of damage. However, it has limited capability to localize wide size of damage with decent accuracy. The objective of this study is to improve GSM algorithm using Robust Regression i.e., Iteratively Re-weighted Least Square (IRLS) methods. Subsequently, evaluate the proposed algorithm’s capability to localize damage with different size and number of measurements of an aluminum beam numerically. Damage Estimate Reliability (DER) was used to evaluate effectiveness of the improved GSM algorithm. The obtained result shows inclusion of robust regression in the original GSM algorithm increase Damage Estimate Reliability (DER) for 50mm damage size with damage level 20% by 11.6%. IRLS reduces influence of an outlier towards estimation of undamaged MSC that cause noise around damage area (in damage index plot) therefore produce more accurate estimation of damage size. Improvement of GSM allows this method to localize different level of damage in structures. |
| Author | Fawazi, N Man, M H C Amiruddin, M A |
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| Cites_doi | 10.1016/S0141-0296(96)00149-6 10.1002/stc.1838 10.1006/jsvi.1997.0961 10.1007/s10921-009-0048-6 10.1177/0021998306067306 10.1006/jsvi.1999.2624 |
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| References | Pandey (MSE_1092_1_012036bib6) 1991; 14 Yoon (MSE_1092_1_012036bib8) 2009; 28 Kutner (MSE_1092_1_012036bib13) 2004 Hall (MSE_1092_1_012036bib1) 1999 Rucevskis (MSE_1092_1_012036bib9) 2016; 23 Fan (MSE_1092_1_012036bib10) 2011; 10 Chen (MSE_1092_1_012036bib2) 2017; 83 Esfandiari (MSE_1092_1_012036bib12) 2003 Crema (MSE_1092_1_012036bib4) 1995 Zou (MSE_1092_1_012036bib3) 2000; 230 Qiao (MSE_1092_1_012036bib11) 2007; 41 Salawu (MSE_1092_1_012036bib5) 1997; 19 Ratcliffe (MSE_1092_1_012036bib7) 1997; 204 |
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| SubjectTerms | Algorithms Aluminum Curvature Damage detection Damage localization Evaluation Outliers (statistics) Regression Reliability analysis Robustness (mathematics) Structural damage Structural health monitoring |
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| Title | Evaluation of Improved Mode Shape Curvature-Based Damage Detection using Robust Regression Method |
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