基于自我中心视频的建筑质量监督(EgoConQS):关键活动自动查询的应用

IF 9.6 1区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Automation in Construction Pub Date : 2024-12-18 DOI:10.1016/j.autcon.2024.105933
Jingjing Guo, Lu Deng, Pengkun Liu, Tao Sun
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引用次数: 0

摘要

施工质量监督对项目的成功和安全至关重要。依靠人工检查和纸质记录的传统方法耗时长、易出错且难以验证。过程中的施工质量监督提供了一种更直接、更有效的方法。计算机视觉和以自我为中心的视频分析领域的最新进展为加强这些流程提供了机会。本文介绍了以自我为中心的视频数据关键活动查询在建筑质量监督中的应用。本文利用视频自缝合图网络开发了一个名为 "基于自我中心视频的施工质量监督(EgoConQS)"的框架,用于识别自我中心视频中的关键活动。EgoConQS 有利于对关键活动帧进行高效监控和快速审查。利用真实世界数据进行的经验评估表明,平均召回率为 35.85%,mAP 得分为 6.07%,这突出了关键活动查询在可靠、便捷的质量监督方面的潜力。
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Egocentric-video-based construction quality supervision (EgoConQS): Application of automatic key activity queries
Construction quality supervision is essential for project success and safety. Traditional methods relying on manual inspections and paper records are time-consuming, error-prone, and difficult to verify. In-process construction quality supervision offers a more direct and effective approach. Recent advancements in computer vision and egocentric video analysis present opportunities to enhance these processes. This paper introduces the use of key activity queries on egocentric video data for construction quality supervision. A framework, Egocentric Video-Based Construction Quality Supervision (EgoConQS), is developed using a video self-stitching graph network to identify key activities in egocentric videos. EgoConQS facilitates efficient monitoring and quick review of key activity frames. Empirical evaluation with real-world data demonstrates an average recall of 35.85 % and a mAP score of 6.07 %, highlighting the potential of key activity queries for reliable and convenient quality supervision.
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来源期刊
Automation in Construction
Automation in Construction 工程技术-工程:土木
CiteScore
19.20
自引率
16.50%
发文量
563
审稿时长
8.5 months
期刊介绍: Automation in Construction is an international journal that focuses on publishing original research papers related to the use of Information Technologies in various aspects of the construction industry. The journal covers topics such as design, engineering, construction technologies, and the maintenance and management of constructed facilities. The scope of Automation in Construction is extensive and covers all stages of the construction life cycle. This includes initial planning and design, construction of the facility, operation and maintenance, as well as the eventual dismantling and recycling of buildings and engineering structures.
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