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Automated hazardous area identification using laborers' actual and optimal routes

Title
Automated hazardous area identification using laborers' actual and optimal routes
Authors
Kim, HyunsooLee, Hyun-SooPark, MoonseoChung, BooYoungHwang, Sungjoo
Ewha Authors
황성주
SCOPUS Author ID
황성주scopus
Issue Date
2016
Journal Title
AUTOMATION IN CONSTRUCTION
ISSN
0926-5805JCR Link

1872-7891JCR Link
Citation
AUTOMATION IN CONSTRUCTION vol. 65, pp. 21 - 32
Keywords
Safety managementHazard area identificationAutomated data collection (ADC)Real-time locating system (RTLS)Building information modeling (BIM)
Publisher
ELSEVIER
Indexed
SCIE; SCOPUS WOS
Document Type
Article
Abstract
Approximately 20% of accidents in construction industry occur while workers are moving through a construction site. Current construction hazard identification mostly relies on safety managers' capabilities to detect hazards. Consequently, numerous hazards remain unidentified, and unidentified hazards mean that hazards are not included in the safety management process. To enhance the capability of hazard identification, this paper proposes an automated hazardous area identification model based on the deviation between the optimal route (shortest path) which is determined by extracting nodes from objects in a building information model (BIM) and the actual route of a laborer collected from the real-time location system (RTLS). The hazardous area identification framework consists of six DBs and three modules. The unidentified hazardous area identification module identifies potentially hazardous areas (PHAs) in laborers' paths. The filtering hazardous area module reduces the range of possible hazardous areas to improve the efficiency of safety management The monitoring and output, generation module provides reports including hazardous area information. The suggested model can identify a hazard automatically and decrease the time laborers are exposed to a hazard. This can help improve both the effectiveness of the hazard identification process and enhance the safety for laborers. (C) 2016 Elsevier B.V. All rights reserved.
DOI
10.1016/j.autcon.2016.01.006
Appears in Collections:
공과대학 > 건축도시시스템공학과 > Journal papers
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