REALIDADE AUMENTADA ASSOCIADA AO PLANEJAMENTO E CONTROLE DA PRODUÇÃO DE OBRAS

Authors

  • Marcos Sarge Figueiredo Tallento Engenharia
  • Hylton Olivieri Instituto de Pesquisas Tecnológicas do Estado de São Paulo
  • Ivan Carlos Alves Barbosa Universidade Estadual de Campinas
  • Claudio Mitidieri Filho Instituto de Pesquisas Tecnológicas do Estado de São Paulo
  • Ariovaldo Denis Granja Universidade Estadual de Campinas

DOI:

https://doi.org/10.46421/entac.v18i.1183

Keywords:

Augmented Reality, Production planning and control, Construction sites planning and control

Abstract

In recent years, several technologies and tools have been used to support the production planning and control system. The use of Augmented Reality (AR), by mixing virtual and real data, allows planners to validate, propose or preview solutions quickly and intuitively. For the execution phase of the building construction, the work of collecting manual data in the field is great and the presentation of these data can result in low quality of information and conclusions, as they depend on human training, which involves qualification, technical knowledge and willingness to handwork. AR technology consists of superimposing synthetic data as the planning baseline of works on real data (collected online), and allows immediate and intuitive observation of whether activities are up-to-date, in delay or in advance. In this article, based on a systematic literature mapping, we identified twenty articles that contains the application of RA in association with the production planning and control system. These articles were grouped in five main topics, aiming to show opportunities of real application.

References

ABERNETHY, M. et al. ParallelAR: An augmented reality app and instructional approach for learning parallel programming scheduling concepts. IEEE, 2018.

BABU, P.R. S.; BABU, N. H. Using Technology to Achieve Lean Objectives. 26Th Annual Conference Of The International Group For Lean Construction, p. 1069-1078, 18 jul. 2018.

International Group for Lean Construction. http://dx.doi.org/10.24928/2018/0543.

ENGINEERING VILLAGE. 2020. Disponível em: <https://www.engineeringvillage.com>. Consulta em 12 jun. 2020FREITAS, M. R.; RUSCHEL, R. Aplicação de realidade virtual e aumentada em arquitetura.

Arquitetura Revista, v. 6, n. 2, p. 127-135, 21 dez. 2010.

FIGUEIREDO, M. S.; MITIDIERI FILHO, C. V. Aplicação de realidade aumentada para a vistoria de entrega de obras de edificações residenciais. In: Workshop de Tecnologia de Processos e Sistemas Construtivos, 2., 2019, São Paulo. Anais... 5 p.

FU, M.; LIU, R. The application of virtual reality and augmented reality in dealing with project schedule risks. Construction Research Congress. 2018.

GIMENO, J. et al. A New Approach to the Management of the Setting out in Construction based on Augmented Reality Techniques. Proceedings of the Seventh International Conference on Engineering Computational Technology, Stirlingshire, p. 1-10, set. 2010.

GOLPARVAR-FARD, M. et al. D4AR: A 4-Dimensional Augmented Reality model for automating construction progress monitoring data collection, processing and communication. Journal of Information Technology in Construction, v. 14, p. 129-153. 2009.

GOLPARVAR-FARD, M. et al. Integrated sequential as-built and as-planned representation with D 4AR tools in support of decision-making tasks in the AEC/FM industry. Journal of Construction Engineering and Management, v. 137, n. 12, 2011.

HAN, K.; GOLPARVAR-FARD, M. Automated Monitoring of Operation-level Construction Progress Using 4D BIM and Daily Site Photologs. Construction Research Congress. 2014.

KAMAT, V. R. et al. Research in visualization techniques for field construction. Journal of Construction Engineering and Management, v. 137, n. 10, 2011.

KARSCH, K. et al. ConstructAide: Analyzing and visualizing construction sites through photographs and building models. ACM Transactions on Graphics, v. 33, N. 6, 2014.

KEELE, S. Guidelines for performing systematic literature reviews in software engineering. In: Technical report, 2007, Ver. 2.3 EBSE Technical Report. EBSE.

KIM, H.S. et al. a. Application of information technology for visualizing and optimizing construction project schedule. Proceedings of the 15th Conference on Enterprise Information Systems, p. 329-332, 2013.

KIM, C. et al. b. On-site construction management using mobile computing technology.

Automation in Construction, v. 35, 2013.

KIM, H. S. et al. Improvement of Realism of 4D Objects Using Augmented Reality Objects and Actual Images of a Construction Site. KSCE Journal of Civil Engineering, v. 22, 2018.

KIRCHBACK, K. Augmented reality on construction sites using a smartphone-application.

Proceedings of the 17th International Conference on Information Visualization, 2013.

KUO, C.H. et al. A framework of information visualization for multi-system construction.

Automation in Construction, v. 20, N. 3, p. 247-262, 2011.

LEE, S.; PEÑA-MORA, F. Visualization of construction progress monitoring. Proceedings of theJoint International Conference on Computing and Decision Making in Civil & Building Engineering, Montreal, p. 2527-2533. 2006.

LIN et al. A Real-Time 4D Augmented Reality System for Modular Construction Progress Monitoring. Proceedings of the 36th International Symposium on Automation and Robotics in Construction (ISARC), p. 2527-2533, 2019.

NASSEREDDINE et al. Augmented Reality-Enabled Production Strategy Process. Proceedings of the 36th International Symposium on Automation and Robotics in Construction (isarc), 2019.

OLIVIERI, H. et al. Real-time Tracking of Production Control: requirements and solutions. 25th Annual Conference of the International Group for Lean Construction, v. 1, p. 671-678, 9 2017.

PRADHANANGA, N.; TEIZER, J. Automatic spatio-temporal analysis of construction site equipment operations using GPS data. Automation in Construction, v. 29, p. 107-122, 2013.

RATAJCZAK, et al. BIM-based and AR Application Combined with LBMS for the Improvement of the Construction Performance. Buildings, v. 9, n. 5, p. 118, 2019.

ROHANI, M. et al. Advanced visualization and simulation techniques for modern construction management. Indoor and Built Environment, v. 23, N. 5, 2014.

SEABRA, R. D.; SANTOS, E. T. Utilização de técnicas de realidade virtual no projeto de uma ferramenta 3D para desenvolvimento da habilidade de visualização espacial. Revista Educação Gráfica, Bauru, n.9, p.111-122, 2005.

SCOPUS. 2020. Disponível em: <https://www.scopus.com>. Consulta 12 jun. 2020.

VARGAS, F.; FORMOSO, C. Método para planejamento e controle da produção baseado em zonas de trabalho com o apoio de BIM. Ambiente Construído, v. 20, n. 1, p. 129-151, 2020.

VICO. 2020. Disponível em: <https://www.vico-ndbim.com/>. Consultado em: 06 jun. 2020.

WANG, X. Using Augmented Reality to Plan Virtual Construction Worksite. International Journal of Advanced Robotic Systems, v. 4, n. 4, p. 42, 2007.

WANG, X. et al. A conceptual framework for integrating building information modeling with augmented reality. Automation In Construction, v. 34, p. 37-44, set. 2013.

WEB OF SCIENCE. 2020. Disponível em: . Consulta 12 jun. 2020YEH, K. C. et al. On-Site Building Information Retrieval by Using Projection-Based Augmented Reality. Journal Of Construction Engineering And Management, v. 26, n. 3, p. 342-355, 2012.

ZOLLMANN, S. et al. n Augmented Reality for Construction Site Monitoring and Documentation. IEEE, v. 102, n. 2, p. 137-154, 2014.

Published

2020-11-04

How to Cite

FIGUEIREDO, Marcos Sarge; OLIVIERI, Hylton; BARBOSA, Ivan Carlos Alves; MITIDIERI FILHO, Claudio; GRANJA, Ariovaldo Denis. REALIDADE AUMENTADA ASSOCIADA AO PLANEJAMENTO E CONTROLE DA PRODUÇÃO DE OBRAS. In: NATIONAL MEETING OF BUILT ENVIRONMENT TECHNOLOGY, 18., 2020. Anais [...]. Porto Alegre: ANTAC, 2020. p. 1–8. DOI: 10.46421/entac.v18i.1183. Disponível em: https://eventos.antac.org.br/index.php/entac/article/view/1183. Acesso em: 30 jun. 2024.

Issue

Section

(Inativa) Gestão e Economia da Construção

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