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2020 | OriginalPaper | Buchkapitel

Development of an Augmented Reality System Achieving in CNC Machine Operation Simulations in Furniture Trial Teaching Course

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Abstract

In schools, due to narrow processing spaces and limited machines, students can only understand the operation and processing procedures of computer numerical control (CNC) machines through the unilateral operation and explanation of technicians or by group operation or observations in turn. Under the existing teaching restrictions, students can only obtain limited operating experience through the partial processing steps of group machine operation. Students are therefore not familiar with the operation of the machines and it is difficult to complete consistent operation procedures, resulting in fear and uncertainty in the operation of the machines. Therefore, this research used augmented reality (AR) technology to simulate the complete operation flow and processing information of CNC processing machines, and combined the practical teaching courses to deepen the students’ understanding of CNC machine operation.
In this study, a total of ten participants were recruited to conduct AR system operation experiments. The follow-up verification was conducted through real CNC machine operation and by filling in the System Usability Scale (SUS) to evaluate the experience feedback after using the AR-CNC training system. Finally, the results of this study showed that the AR-CNC training system could not only solve the problem of machining operation interruption caused by students’ rotating use of the CNC machine but also solve the hardware limitations of the actual machining space and the machine itself, so that every student could learn how to operate the CNC machine as if they were operating it in person.

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Literatur
1.
Zurück zum Zitat Velev, D., Zlateva, P.: Virtual reality challenges in education and training. Int. J. Learn. Teach. 3(1), 33–37 (2017) Velev, D., Zlateva, P.: Virtual reality challenges in education and training. Int. J. Learn. Teach. 3(1), 33–37 (2017)
2.
Zurück zum Zitat Sherman, W.R., Craig, A.B.: Understanding Virtual Reality: Interface, Application, and Design. Morgan Kaufmann, San Francisco (2018) Sherman, W.R., Craig, A.B.: Understanding Virtual Reality: Interface, Application, and Design. Morgan Kaufmann, San Francisco (2018)
3.
Zurück zum Zitat Seymour, N.E., et al.: Virtual reality training improves operating room performance: results of a randomized, double-blinded study. Ann. Surg. 236(4), 458 (2002)CrossRef Seymour, N.E., et al.: Virtual reality training improves operating room performance: results of a randomized, double-blinded study. Ann. Surg. 236(4), 458 (2002)CrossRef
4.
Zurück zum Zitat Le, Q.T., Pedro, A., Park, C.S.: A social virtual reality based construction safety education system for experiential learning. J. Intell. Rob. Syst. 79(3–4), 487–506 (2015)CrossRef Le, Q.T., Pedro, A., Park, C.S.: A social virtual reality based construction safety education system for experiential learning. J. Intell. Rob. Syst. 79(3–4), 487–506 (2015)CrossRef
5.
Zurück zum Zitat García, A.A., Bobadilla, I.G., Figueroa, G.A., Ramírez, M.P., Román, J.M.: Virtual reality training system for maintenance and operation of high-voltage overhead power lines. Virtual Reality 20(1), 27–40 (2016)CrossRef García, A.A., Bobadilla, I.G., Figueroa, G.A., Ramírez, M.P., Román, J.M.: Virtual reality training system for maintenance and operation of high-voltage overhead power lines. Virtual Reality 20(1), 27–40 (2016)CrossRef
6.
Zurück zum Zitat Cuendet, S., Dehler-Zufferey, J., Arn, C., Bumbacher, E., Dillenbourg, P.: A study of carpenter apprentices’ spatial skills. Empirical Res. Vocat. Educ. Train. 6(1), 1–16 (2014)CrossRef Cuendet, S., Dehler-Zufferey, J., Arn, C., Bumbacher, E., Dillenbourg, P.: A study of carpenter apprentices’ spatial skills. Empirical Res. Vocat. Educ. Train. 6(1), 1–16 (2014)CrossRef
7.
Zurück zum Zitat De Sa, A.G., Zachmann, G.: Virtual reality as a tool for verification of assembly and maintenance processes. Comput. Graph. 23(3), 389–403 (1999)CrossRef De Sa, A.G., Zachmann, G.: Virtual reality as a tool for verification of assembly and maintenance processes. Comput. Graph. 23(3), 389–403 (1999)CrossRef
8.
Zurück zum Zitat Zboray, D.A., et al.: U.S. Patent No. 8,747,116. U.S. Patent and Trademark Office, Washington, DC (2014) Zboray, D.A., et al.: U.S. Patent No. 8,747,116. U.S. Patent and Trademark Office, Washington, DC (2014)
9.
Zurück zum Zitat Wallace, M.W., Zboray, D.A., Aditjandra, A., Webb, A.L., Postlethwaite, D., Lenker, Z.S.: U.S. Patent No. 9,928,755. U.S. Patent and Trademark Office, Washington, DC (2018) Wallace, M.W., Zboray, D.A., Aditjandra, A., Webb, A.L., Postlethwaite, D., Lenker, Z.S.: U.S. Patent No. 9,928,755. U.S. Patent and Trademark Office, Washington, DC (2018)
10.
Zurück zum Zitat Peters, C., Postlethwaite, D., Wallace, M.W.: U.S. Patent No. 9,318,026. U.S. Patent and Trademark Office, Washington, DC (2016) Peters, C., Postlethwaite, D., Wallace, M.W.: U.S. Patent No. 9,318,026. U.S. Patent and Trademark Office, Washington, DC (2016)
11.
Zurück zum Zitat Postlethwaite, D., Zboray, D., Gandee, C., Aditjandra, A., Wallace, M., Lenker, Z.: U.S. Patent No. 9,836,987. U.S. Patent and Trademark Office, Washington, DC (2017) Postlethwaite, D., Zboray, D., Gandee, C., Aditjandra, A., Wallace, M., Lenker, Z.: U.S. Patent No. 9,836,987. U.S. Patent and Trademark Office, Washington, DC (2017)
12.
Zurück zum Zitat Lin, F., Hon, C.L., Su, C.J.: A virtual reality-based training system for CNC milling machine operations. Ann. J. IIE HK (1996) Lin, F., Hon, C.L., Su, C.J.: A virtual reality-based training system for CNC milling machine operations. Ann. J. IIE HK (1996)
13.
Zurück zum Zitat Kao, Y.C., Lee, C.S., Liu, Z.R., Lin, Y.F.: Case study of virtual reality in CNC machine tool exhibition. In: MATEC Web of Conferences, EDP Sciences, vol. 123, p. 00004 (2017) Kao, Y.C., Lee, C.S., Liu, Z.R., Lin, Y.F.: Case study of virtual reality in CNC machine tool exhibition. In: MATEC Web of Conferences, EDP Sciences, vol. 123, p. 00004 (2017)
14.
Zurück zum Zitat Yang, U., Lee, G.A., Shin, S., Hwang, S., Son, W.: Virtual reality based paint spray training system. In: 2007 IEEE Virtual Reality Conference, pp. 289–290 (2007) Yang, U., Lee, G.A., Shin, S., Hwang, S., Son, W.: Virtual reality based paint spray training system. In: 2007 IEEE Virtual Reality Conference, pp. 289–290 (2007)
15.
Zurück zum Zitat Shilkrot, R., Maes, P., Paradiso, J.A., Zoran, A.: Augmented airbrush for computer aided painting (CAP). ACM Trans. Graph. (TOG) 34(2), 1–11 (2015)CrossRef Shilkrot, R., Maes, P., Paradiso, J.A., Zoran, A.: Augmented airbrush for computer aided painting (CAP). ACM Trans. Graph. (TOG) 34(2), 1–11 (2015)CrossRef
16.
Zurück zum Zitat Elsdon, J., Demiris, Y.: Augmented reality for feedback in a shared control spraying task. In: 2018 IEEE International Conference on Robotics and Automation (ICRA), pp. 1939–1946 (2018) Elsdon, J., Demiris, Y.: Augmented reality for feedback in a shared control spraying task. In: 2018 IEEE International Conference on Robotics and Automation (ICRA), pp. 1939–1946 (2018)
17.
Zurück zum Zitat Whitmire, E., Benko, H., Holz, C., Ofek, E., Sinclair, M.: Haptic revolver: touch, shear, texture, and shape rendering on a reconfigurable virtual reality controller. In: Proceedings of the 2018 CHI Conference on Human Factors in Computing Systems, pp. 1–12 (2018) Whitmire, E., Benko, H., Holz, C., Ofek, E., Sinclair, M.: Haptic revolver: touch, shear, texture, and shape rendering on a reconfigurable virtual reality controller. In: Proceedings of the 2018 CHI Conference on Human Factors in Computing Systems, pp. 1–12 (2018)
18.
Zurück zum Zitat Asai, K., Kobayashi, H., Kondo, T.: Augmented instructions-a fusion of augmented reality and printed learning materials. In: Fifth IEEE International Conference on Advanced Learning Technologies (ICALT 2005), pp. 213–215 (2005) Asai, K., Kobayashi, H., Kondo, T.: Augmented instructions-a fusion of augmented reality and printed learning materials. In: Fifth IEEE International Conference on Advanced Learning Technologies (ICALT 2005), pp. 213–215 (2005)
19.
Zurück zum Zitat Kalkusch, M., Lidy, T., Knapp, N., Reitmayr, G., Kaufmann, H., Schmalstieg, D.: Structured visual markers for indoor pathfinding. In: The First IEEE International Workshop Agumented Reality Toolkit, p. 8 (2002) Kalkusch, M., Lidy, T., Knapp, N., Reitmayr, G., Kaufmann, H., Schmalstieg, D.: Structured visual markers for indoor pathfinding. In: The First IEEE International Workshop Agumented Reality Toolkit, p. 8 (2002)
20.
Zurück zum Zitat Billinghurst, M.: Augmented reality in education. New Horiz. Learn. 12(5), 1–5 (2002) Billinghurst, M.: Augmented reality in education. New Horiz. Learn. 12(5), 1–5 (2002)
21.
Zurück zum Zitat Shelton, B.E., Hedley, N.R.: Using augmented reality for teaching earth-sun relationships to undergraduate geography students. In: The First IEEE International Workshop Agumented Reality Toolkit, p. 8 (2002) Shelton, B.E., Hedley, N.R.: Using augmented reality for teaching earth-sun relationships to undergraduate geography students. In: The First IEEE International Workshop Agumented Reality Toolkit, p. 8 (2002)
22.
Zurück zum Zitat Martín-Gutiérrez, J., Fabiani, P., Benesova, W., Meneses, M.D., Mora, C.E.: Augmented reality to promote collaborative and autonomous learning in higher education. Comput. Hum. Behav. 51, 752–761 (2015)CrossRef Martín-Gutiérrez, J., Fabiani, P., Benesova, W., Meneses, M.D., Mora, C.E.: Augmented reality to promote collaborative and autonomous learning in higher education. Comput. Hum. Behav. 51, 752–761 (2015)CrossRef
Metadaten
Titel
Development of an Augmented Reality System Achieving in CNC Machine Operation Simulations in Furniture Trial Teaching Course
verfasst von
Yu-Ting Lin
I-Jui Lee
Copyright-Jahr
2020
DOI
https://doi.org/10.1007/978-3-030-49698-2_9