Assembly Work Instruction Deployment Using Augmented Reality

Article Preview

Abstract:

The assembly of components in the aerospace industry is currently supported by procedures based on work instructions. This documentation describes both the sequence of operations to be performed by operators and fundamental parameters of operation. However, sometimes difficulties arise, either by the difficulty of interpreting the information or because the process is too complex. This communication shows the results of the Project MOON (asseMbly Oriented authOring augmeNted reality) developed by AIRBUS Military. MOON uses 3D information from the industrial Digital Mock-Up to generate assembly instructions and their deployment by applying Augmented Reality technology. A prototype was developed for the electrical harness routing in the frame 36 of the AIRBUS A400M.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

25-30

Citation:

Online since:

February 2012

Export:

Price:

[1] D. Borro, J. Serván, J. M. Cordero, J. R. Sánchez, F. Mas and L. Matey: Dyna (2011), A. 3906.

Google Scholar

[2] D. Mizell, in: Augmented Reality Applications in Aerospace, IEEE and ACM International Symposium on Augmented Reality (ISAR'00), (2000).

DOI: 10.1109/isar.2000.880915

Google Scholar

[3] R. Burmeister, et al., in: SNOW - A Multimodal Approach for Mobile Maintenance Applications, IEEE International Workshops on Infraestructure for Collaborative Enterprises, 2006, 131-136.

DOI: 10.1109/wetice.2006.60

Google Scholar

[4] A. Makri, et al., in: ULTRA: An Augmented Reality system for handheld platforms, targeting industrial maintenance applications, International Conference on Virtual Systems and Multimedia VSMM, Ghent (Belgium), (2005).

Google Scholar

[5] W. Friedrich, in: ARVIKA Augmented Reality for Development, Production, and Service, Symposium on Mixed and Augmented Reality, Proceedings of the 1st International Symposium on Mixed and Augmented Reality, Page: 3, , IEEE Computer Society Washington DC (USA), (2002).

DOI: 10.1109/ismar.2002.1115059

Google Scholar

[6] B. Schwald and B. De Laval, in: An Augmented Reality System for Training and Assistance to Maintenance in the Industrial Context, 11th International Conference in Central Europe on Computer Graphics, Visualization and Computer Vision, (2003).

Google Scholar

[7] H. Regenbrecht, G. Baratoff and W. Wilke: IEEE Comput. Graph. Appl. 25 (6) (2005).

Google Scholar

[8] J. L. Menendez, F. Mas, J. Serván and J. Ríos, in: Virtual verification of the AIRBUS A400M Final Assembly Line industrialization, MESIC 2011 - 4th Manufacturing Engineering Society International Conference, Cadiz (SPAIN), (2011).

DOI: 10.1063/1.4707619

Google Scholar

[9] F. Mas, J. L. Menendez and J. Ríos, in: Scenario for Concurrent Conceptual Assembly Line Design: a case study, MESIC 2011 - 4th Manufacturing Engineering Society International Conference, Cadiz (SPAIN), (2011).

Google Scholar