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            Chapter Safety Training for Rigging Using Virtual Reality

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            Author(s)
            Lemouchi, Rafik
            Assaf, Mohamed
            Al-Hussein, Mohamed
            Boutouhami, Khaoula
            Bouferguene, Ahmed
            Language
            English
            Show full item record
            Abstract
            Tower and Mobile Cranes are some of the most commonly used heavy equipment in all construction sites, and any crane failures could lead to significant human and monetary losses. Moreover, rigging configuration determination is a critical task that requires the rigging crew to have significant experience and knowledge of various failure modes that can be encountered when performing lifting operations. However, despite the criticality of training riggers, there has yet to be a comprehensive tool used to train and guide inexperienced riggers, and hence, more practical tools are needed. This paper proposes a framework for using Virtual reality (VR) and simulation to train riggers to identify the optimal rigging configurations based on the lift type and the external conditions. Through 3D modeling, the critical components of the rigging system are modeled to accurately simulate the rigging system and their performance when faced with critical loading scenarios. The developed framework is expected to allow inexperienced riggers to identify critical failure modes and enhance construction operations' overall safety performance and productivity. Furthermore, several scenarios are assessed based on historical evidence for rigging configuration failures, and the efficiency of the training tool is assessed through real-life scenarios and tests
            URI
            https://doab-dev.siscern.org/handle/20.500.12854/166122
            Keywords
            Crane Operations; Lift Planning; Rigging; Safety; Training; Virtual Reality; thema EDItEUR::U Computing and Information Technology::UT Computer networking and communications::UTV Virtualization
            DOI
            10.36253/979-12-215-0289-3.18
            ISBN
            9791221502893
            Publisher
            Firenze University Press
            Publisher website
            www.fupress.com/
            Publication date and place
            Florence, 2023
            Series
            Proceedings e report,
            Pages
            11
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              This project received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 871069.

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