R–C–C fusion classifier for automatic damage detection of heritage building using 3D laser scanning

IF 3.6 2区 工程技术 Q1 ENGINEERING, CIVIL
Hyungjoon Seo
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Abstract

The automatic damage detection in buildings using 3D laser scanning is a non-invasive approach to monitoring heritage buildings, especially in places like Liverpool, where the temperature can vary drastically during a year and these changes can damage the components of the buildings. In this paper, the St Luke’s Church mostly known as the Bombed-out Church, an important heritage building, was scanned using a 3D laser scanner. This paper proposed the R–C–C fusion classifier to detect the damage on the heritage building automatically. Utilizing the Roughness method (R) and the CANUPO classification (C) in small sections of the façade, it was possible to determine the shape and the location of the damages (cracks, anomalies, stone decay, stone peeling, etc.) on the surface of the walls, and then, the analysis was carried out to the whole building. Utilizing the R–C–C method was possible to locate and isolate the cracks and anomalies for future reference in monitoring this heritage building. This non-invasive technique for monitoring heritage building has demonstrated that it is possible to detect damages on the surface of buildings using a classifier which will dramatically reduce the computing time.

Abstract Image

利用三维激光扫描自动检测文物建筑损坏情况的 R-C-C 融合分类器
利用三维激光扫描自动检测建筑物的损坏情况是一种非侵入式的文物建筑监测方法,尤其是在利物浦这样的地方,一年中的温度变化很大,这些变化可能会损坏建筑物的部件。本文使用三维激光扫描仪扫描了圣路加教堂(通常被称为 "被炸毁的教堂")这一重要的文物建筑。本文提出了 R-C-C 融合分类器来自动检测文物建筑的损坏情况。利用粗糙度法(R)和 CANUPO 分类法(C)对建筑外墙的小部分进行检测,可以确定墙体表面损坏(裂缝、异常、石材腐烂、石材剥落等)的形状和位置,然后对整个建筑进行分析。利用 R-C-C 方法可以找到并隔离裂缝和异常点,为今后监测这座文物建筑提供参考。这项用于监测文物建筑的非侵入式技术表明,使用分类器检测建筑物表面的损坏是可行的,这将大大减少计算时间。
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来源期刊
Journal of Civil Structural Health Monitoring
Journal of Civil Structural Health Monitoring Engineering-Safety, Risk, Reliability and Quality
CiteScore
8.10
自引率
11.40%
发文量
105
期刊介绍: The Journal of Civil Structural Health Monitoring (JCSHM) publishes articles to advance the understanding and the application of health monitoring methods for the condition assessment and management of civil infrastructure systems. JCSHM serves as a focal point for sharing knowledge and experience in technologies impacting the discipline of Civionics and Civil Structural Health Monitoring, especially in terms of load capacity ratings and service life estimation.
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