Pipe and Ductwork Progress Tracking using 3D Sensing Technologies

Automated construction progress tracking is becoming critical to efficient and effective construction management. More and more construction companies are putting aside the old way of tracking progress, which was mainly based on foremen daily reports and visual inspections, and are adopting 3D sensi...

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Main Author: Guillemet, Adrien
Language:en
Published: 2012
Subjects:
Online Access:http://hdl.handle.net/10012/6673
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spelling ndltd-WATERLOO-oai-uwspace.uwaterloo.ca-10012-66732013-01-08T18:55:29ZGuillemet, Adrien2012-04-30T13:47:40Z2012-04-30T13:47:40Z2012-04-30T13:47:40Z2012-04-24http://hdl.handle.net/10012/6673Automated construction progress tracking is becoming critical to efficient and effective construction management. More and more construction companies are putting aside the old way of tracking progress, which was mainly based on foremen daily reports and visual inspections, and are adopting 3D sensing technologies as a new and modern way of tracking progress. Technologies such as 3D laser scanners (LADARs) are investigated as a means to acquire comprehensive 3D point-cloud data which can then be studied by management to determine the progress of construction. Although being much more accurate and efficient than visual inspections, this new progress tracking approach can be improved by applying object recognition algorithms that enable an automated progress tracking. This new approach has been investigated by other researchers, but only for progress tracking of structural elements. This study focuses on mechanical objects such as pipes and ducts, which would give the progress tracking a better level of detail and a wider scope. The investigation is carried out on a field database acquired during the construction of the Engineering VI Building at the University of Waterloo. It was found that the laser scanning technology is a suitable method for acquiring point-clouds of pipes and ductwork, and also that the object recognition algorithm used in this study allows a progress tracking as well as a quality tracking of the HVAC system installation.enlaser scannerprogress trackingproject managementpipe ductworkPipe and Ductwork Progress Tracking using 3D Sensing TechnologiesThesis or DissertationCivil and Environmental EngineeringMaster of Applied ScienceCivil Engineering
collection NDLTD
language en
sources NDLTD
topic laser scanner
progress tracking
project management
pipe ductwork
Civil Engineering
spellingShingle laser scanner
progress tracking
project management
pipe ductwork
Civil Engineering
Guillemet, Adrien
Pipe and Ductwork Progress Tracking using 3D Sensing Technologies
description Automated construction progress tracking is becoming critical to efficient and effective construction management. More and more construction companies are putting aside the old way of tracking progress, which was mainly based on foremen daily reports and visual inspections, and are adopting 3D sensing technologies as a new and modern way of tracking progress. Technologies such as 3D laser scanners (LADARs) are investigated as a means to acquire comprehensive 3D point-cloud data which can then be studied by management to determine the progress of construction. Although being much more accurate and efficient than visual inspections, this new progress tracking approach can be improved by applying object recognition algorithms that enable an automated progress tracking. This new approach has been investigated by other researchers, but only for progress tracking of structural elements. This study focuses on mechanical objects such as pipes and ducts, which would give the progress tracking a better level of detail and a wider scope. The investigation is carried out on a field database acquired during the construction of the Engineering VI Building at the University of Waterloo. It was found that the laser scanning technology is a suitable method for acquiring point-clouds of pipes and ductwork, and also that the object recognition algorithm used in this study allows a progress tracking as well as a quality tracking of the HVAC system installation.
author Guillemet, Adrien
author_facet Guillemet, Adrien
author_sort Guillemet, Adrien
title Pipe and Ductwork Progress Tracking using 3D Sensing Technologies
title_short Pipe and Ductwork Progress Tracking using 3D Sensing Technologies
title_full Pipe and Ductwork Progress Tracking using 3D Sensing Technologies
title_fullStr Pipe and Ductwork Progress Tracking using 3D Sensing Technologies
title_full_unstemmed Pipe and Ductwork Progress Tracking using 3D Sensing Technologies
title_sort pipe and ductwork progress tracking using 3d sensing technologies
publishDate 2012
url http://hdl.handle.net/10012/6673
work_keys_str_mv AT guillemetadrien pipeandductworkprogresstrackingusing3dsensingtechnologies
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