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作 者:Hyun Kyu Shin Si Woon Lee Goo Pyo Hong Lee Sael Sang Hyo Lee Ha Young Kim
机构地区:[1]Architectural Engineering,Hanyang University,ERICA,Ansan,15588,Korea [2]Department of Artificial Intelligence,Ajou University,Suwon,16499,Korea [3]Division of Architecture and Civil Engineering,Kangwon National University,Samcheok,25913,Korea [4]Division of Smart Convergence Engineering,Hanyang University,ERICA,Ansan,15588,Korea [5]Graduate School of Information,Yonsei University,Seoul,03722,Korea
出 处:《Computers, Materials & Continua》2021年第3期2493-2507,共15页计算机、材料和连续体(英文)
基 金:a grant(19CTAP-C152020-01)from Technology Advancement Research Program(TARP)funded by the Ministry of Land,Infrastructure and Transport of the Korean government.
摘 要:The demand for defect diagnoses is gradually gaining ground owing to the growing necessity to implement safe inspection methods to ensure the durability and quality of structures.However,conventional manpower-based inspection methods not only incur considerable cost and time,but also cause frequent disputes regarding defects owing to poor inspections.Therefore,the demand for an effective and efficient defect-diagnosis model for concrete structures is imminent,as the reduction in maintenance costs is significant from a long-term perspective.Thus,this paper proposes a deep learning-based image objectidentification method to detect the defects of paint peeling,leakage peeling,and leakage traces that mostly occur in underground parking lots made of concrete structures.The deep learning-based object-detection method can replace conventional visual inspection methods.A faster region-based convolutional neural network(R-CNN)model was used with a training dataset of 6,281 images that utilized a region proposal network to objectively localize the regions of interest and detect the surface defects.The defects were classified according to their type,and the learning of each exclusive model was ensured through test sets obtained from real underground parking lots.As a result,average precision scores of 37.76%,36.42%,and 61.29%were obtained for paint peeling,leakage peeling,and leakage trace defects,respectively.Thus,this study verified the performance of the faster RCNN-based defect-detection algorithm along with its applicability to underground parking lots.
关 键 词:Faster R-CNN deep learning defect detection concrete structures
分 类 号:TP3[自动化与计算机技术—计算机科学与技术]
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