Performance Evaluation of an Entropy-based Structural Health Monitoring by Utilizing Modified Cross-sample Entropy

碩士 === 國立交通大學 === 土木工程系所 === 107 === This study aimed to solve the issue which was unstable entropy values when multiscale cross-sample entropy (MSCE) was employed to assess the damage of real structure. Therefore, composite multiscale cross-sample entropy (CMSCE) was utilized to enhance the reliabi...

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Main Authors: Chien, Yi-Hsiu, 簡義修
Other Authors: Lin, Tzu-Kang
Format: Others
Language:zh-TW
Published: 2018
Online Access:http://ndltd.ncl.edu.tw/handle/e2t23n
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spelling ndltd-TW-107NCTU50150052019-05-16T01:40:47Z http://ndltd.ncl.edu.tw/handle/e2t23n Performance Evaluation of an Entropy-based Structural Health Monitoring by Utilizing Modified Cross-sample Entropy 應用改良交叉取樣熵於基於熵分析之結構健康診斷系統表現評估 Chien, Yi-Hsiu 簡義修 碩士 國立交通大學 土木工程系所 107 This study aimed to solve the issue which was unstable entropy values when multiscale cross-sample entropy (MSCE) was employed to assess the damage of real structure. Therefore, composite multiscale cross-sample entropy (CMSCE) was utilized to enhance the reliability of entropy value under every scale. Additionally, the first mode of structure was extracted by using ensemble empirical mode decomposition (EEMD) to conduct entropy analysis and evaluate the performance of damage assessment. A seven-story model was created to validate the efficiency of proposed method and damage index. Subsequently, a seven-story steel benchmark experiment, including fifteen damage cases, was conduct to compare the difference between numerical and experimental model. The confusion matrix was applied to classify the results and evaluate the performance by three indexes: accuracy, precision, and recall. The result showed the increase of modified structural health monitoring system and demonstrated the potential on the field of structural long-term monitoring. Lin, Tzu-Kang 林子剛 2018 學位論文 ; thesis 102 zh-TW
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description 碩士 === 國立交通大學 === 土木工程系所 === 107 === This study aimed to solve the issue which was unstable entropy values when multiscale cross-sample entropy (MSCE) was employed to assess the damage of real structure. Therefore, composite multiscale cross-sample entropy (CMSCE) was utilized to enhance the reliability of entropy value under every scale. Additionally, the first mode of structure was extracted by using ensemble empirical mode decomposition (EEMD) to conduct entropy analysis and evaluate the performance of damage assessment. A seven-story model was created to validate the efficiency of proposed method and damage index. Subsequently, a seven-story steel benchmark experiment, including fifteen damage cases, was conduct to compare the difference between numerical and experimental model. The confusion matrix was applied to classify the results and evaluate the performance by three indexes: accuracy, precision, and recall. The result showed the increase of modified structural health monitoring system and demonstrated the potential on the field of structural long-term monitoring.
author2 Lin, Tzu-Kang
author_facet Lin, Tzu-Kang
Chien, Yi-Hsiu
簡義修
author Chien, Yi-Hsiu
簡義修
spellingShingle Chien, Yi-Hsiu
簡義修
Performance Evaluation of an Entropy-based Structural Health Monitoring by Utilizing Modified Cross-sample Entropy
author_sort Chien, Yi-Hsiu
title Performance Evaluation of an Entropy-based Structural Health Monitoring by Utilizing Modified Cross-sample Entropy
title_short Performance Evaluation of an Entropy-based Structural Health Monitoring by Utilizing Modified Cross-sample Entropy
title_full Performance Evaluation of an Entropy-based Structural Health Monitoring by Utilizing Modified Cross-sample Entropy
title_fullStr Performance Evaluation of an Entropy-based Structural Health Monitoring by Utilizing Modified Cross-sample Entropy
title_full_unstemmed Performance Evaluation of an Entropy-based Structural Health Monitoring by Utilizing Modified Cross-sample Entropy
title_sort performance evaluation of an entropy-based structural health monitoring by utilizing modified cross-sample entropy
publishDate 2018
url http://ndltd.ncl.edu.tw/handle/e2t23n
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