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Optimizing Construction Site Surveys: BIM-Based Position Planning for Robotic Indoor Scanning

NANDANWAR, KUNAL
Akhavian, Reza
2024-10-07T09:06:58Z
2024-10-07T09:06:58Z
2024

Abstract

The traditional method of positioning scans to document existing building geometry relies on expert surveyor experience. This research emphasizes the need for optimal scan positioning in automated scanning using autonomous robots. The study introduces a framework for planning scans in a stop-and-go mapping process with a quadruped walking robot, leveraging Building Information Modeling (BIM). The framework consists of four phases: generating scan-position options, determining optimal positions, organizing the positions, and collecting data using an autonomous scanning system. Experimental results demonstrate that this approach outperforms conventional methods. It significantly reduces the number of scan positions and operation time in real in- door environments, compared to manual scanning by skilled surveyors. Future work will focus on automating the registration process and improving computational efficiency.

http://hdl.handle.net/10890/57724
en
Optimizing Construction Site Surveys: BIM-Based Position Planning for Robotic Indoor Scanning
könyvfejezet
Open access
Szerző
2024.06.29.-2024.07.02
Praha, Czech Republic
Creative Construction Conference 2024
2024.09.01
978-615-5270-78-9
Budapest University of Technology and Economics
Online
Proceedings of the Creative Construction Conference 2024
Építéstechnológia és Menedzsment Tanszék
Online
Faculty of Architecture
10.3311/CCC2024-031
Műszaki tudományok
Műszaki tudományok - építészmérnöki tudományok
építészmérnöki tudományok
robotics
Building Information Modeling (BIM)
quadruped
optimal scan positioning
automation
Konferenciacikk
Budapest University of Technology and Economics

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