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A Cloud-Based System for Supporting Quick Location of Precast Concrete Formwork Using Computer Vision and BIM

Date

Type

könyvfejezet

Language

en

Reading access rights:

Open access

Rights Holder

Szerző

Conference Date

9-11 July 2022

Conference Place

Online

Conference Title

Creative Construction e-Conference 2022

ISBN, e-ISBN

978-615-5270-75-8

Container Title

Proceedings of the Creative Construction e-Conference 2022

Department

Építéstechnológia és Menedzsment Tanszék

Version

Post print

Faculty

Faculty of Architecture

First Page

97

Subject (OSZKAR)

cloud computing
computer vision
lightweight BIM
smartphone
formwork adjustment

Gender

Konferenciacikk

University

Budapest University of Technology and Economics

OOC works

Abstract

In precast concrete production sites for elevated roads, adjustable formwork systems are often used to accommodate the precast components of varying shapes and sizes. Therefore, it is needed to locate and adjust the formwork frequently when the elevated road adopts continuously varying cross-sections. However, the traditional way requires significant labor costs and heavy equipment, and is prone to miscalculation. To solve the problem, this paper proposes a quick location system for formwork adjustment based on a smartphone and the latest technologies including computer vision, BIM, and cloud computing. In this research, firstly, the background and existing research were investigated; then, the engineering requirements for quick location of formwork were analyzed and the system architecture was designed; next, the visual measurement and adjustment calculation modules at the back-end were implemented based on computer vision and BIM technology, and the user interface and lightweight BIM interface modules at the front-end were implemented based on HTML, jQuery, Node.js and BIMFACE; finally, the research was summarized and prospected. With the system, surveyors can compute the adjustment amount of the support at the production site with just a smartphone, which can effectively reduce measurement time and improve efficiency. In conclusion, this research provides an effective approach for supporting the quick location of concrete formwork in the production of precast components.

Description

Keywords