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Deep Learning-Based Crack Identification for Steel Pipelines by Extracting Features from 3D Shadow Modeling
Altabey, W. A.1,2; Noori, M.1,3; Wang, T.1; Ghiasi, R.1
2021-06-01
Source PublicationApplied Sciences
ISSN2076-3417
Pages1-21
Abstract

Automatic crack identification for pipeline analysis utilizes three-dimensional (3D) image technology to improve the accuracy and reliability of crack identification. A new technique that integrates a deep learning algorithm and 3D shadow modeling (3D-SM) is proposed for the automatic identification of corrosion cracks in pipelines. Since the depth of a corrosion crack is below the surrounding area of the crack, a shadow of the crack is projected when the crack is exposed under light sources. In this study, we analyze the shadow areas of cracks through 3D shadow modeling (3D-SM) and identify the evolving cracks through the shape analysis of the shadows. To denoise the 3D images, the connected domain analysis is implemented so that the shadow groups of the evolving cracks can be retained and the scattered shadow groups that occur due to insignificant defects can be eliminated. Moreover, a novel deep neural network is developed to process the 3D images. The proposed automatic crack identification method successfully processes the 3D images efficiently and accurately diagnoses the corrosion cracks. Experimental results show that the proposed method achieves satisfactory performance with 93.53% accuracy and a 92.04% regression rate.

KeywordDeep Learning Automatic Crack Identification Convolutional Neural Network (Cnn) 3d Shadow Modeling Structural Health Monitoring (Shm)
Language英語English
The Source to ArticlePB_Publication
Document TypeJournal article
CollectionDEPARTMENT OF CIVIL AND ENVIRONMENTAL ENGINEERING
Corresponding AuthorNoori, M.
Affiliation1.International Institute for Urban Systems Engineering (IIUSE), Southeast University, Nanjing 210096, China
2.Department of Mechanical Engineering, Faculty of Engineering, Alexandria University, Alexandria 21544, Egypt
3.Department of Mechanical Engineering, California Polytechnic State University, San Luis Obispo, CA 93405, USA
Recommended Citation
GB/T 7714
Altabey, W. A.,Noori, M.,Wang, T.,et al. Deep Learning-Based Crack Identification for Steel Pipelines by Extracting Features from 3D Shadow Modeling[J]. Applied Sciences, 2021, 1-21.
APA Altabey, W. A.., Noori, M.., Wang, T.., & Ghiasi, R. (2021). Deep Learning-Based Crack Identification for Steel Pipelines by Extracting Features from 3D Shadow Modeling. Applied Sciences, 1-21.
MLA Altabey, W. A.,et al."Deep Learning-Based Crack Identification for Steel Pipelines by Extracting Features from 3D Shadow Modeling".Applied Sciences (2021):1-21.
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