Augmented Reality-Based BIM Data Compatibility Verification Method for FAB Digital Twin implementation

Author:

Song Jinwoo1,Park Sanghyeon1,Lee Kyuhyup1ORCID,Bae Jinhyun1,Kwon Soonwook2,Cho Chung-Suk3ORCID,Chung Suwan4

Affiliation:

1. Department of Global Smart City, Sungkyunkwan University, Suwon 16419, Republic of Korea

2. School of Civil, Architectural Engineering & Landscape Architecture, Sungkyunkwan University, Suwon 16419, Republic of Korea

3. Civil Engineering, American University of Bahrain, Riffa 942, Bahrain

4. Department of Future and Smart Construction Research, Korea Institute of Civil Engineering and Building Technology, Goyang 10223, Republic of Korea

Abstract

With the advancement of state-of-the-art technologies, the semiconductor industry plays a key role as an essential component in the manufacture of various electronic products. Since the manufacturing of a semiconductor goes through very sophisticated and complex processes, efficient and accurate work and management are essential in the design, construction, and operation stages of the semiconductor fabrication (FAB) plant. Recently, the combined application of building information modeling (BIM) and augmented reality (AR) technology has gained increased attention in this semiconductor FAB industry as an advanced way to improve work efficiency and accuracy while eliminating other related problems, such as human errors. Despite the perceived benefits of combined use of BIM and AR, many technical problems still exist when integrating the target test model and the 3D virtual object model using BIM data and existing AR visualization technology, due to the unique characteristics of the FAB sites. To solve these problems, this study proposed an AR-based real-time BIM data compatibility verification method for future FAB digital twin implementation and demonstrated that it could be converted into a system and applied to actual FAB sites. As a result of the development and verification of this system, the proposed AR-based real-time BIM data compatibility verification system enables the accurate fitting of the AR model and actual object through AR tracking and anchoring technology considering the characteristics of FAB sites. After the fitting, the system was able to maintain compatibility, even when the camera moved and the marker moved away from the screen. By expanding the effective distance of compatibility between the AR model and the actual object, it was possible to increase the AR application range between the 3D virtual object model and the test target model and to improve the compatibility.

Funder

Korea Agency for Infrastructure Technology Advancement

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference31 articles.

1. Effective Operation of SPC System in Semiconductor Manufacturing;Cha;J. Korean Inst. Plant Eng.,2009

2. Proposal of BIM Quality Management Standard by Analyzing Domestic and International BIM Guides;Kwon;J. Korea Inst. Build. Constr.,2011

3. GIS-based BIM Object Visualization System Architecture Design using Open source BIM Server Cost-Effectively;Kang;J. Korea Spat. Inf. Soc.,2014

4. A Proposal for Using BIM Model Created in Design to Construction Phase—Case Study on preconstruction adopting BIM;Yoon;J. KIBIM,2015

5. Bim Strategy Plan through Domestic Construction Companies BIM Project Case Analysis—Focused on the BIM USE of the project from 2009 to 2015;Jo;J. KIBIM,2016

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