Conceptual design and prototype implementation of a holonic system and a discrete event system

Keywords: Holonic Manufacturing System, communication models, simulation of discrete events

Abstract

The problem after creating a Holonic Manufacturing System (HMS), as observed in the literature, is to create real-time control strategies based on events and distributed information processing that act on flexible production systems. Seen from the previous perspective, this research project will seek to implement a communication bridge between an HMS and a discrete event simulation model that will emulate a flexible manufacturing system. This proposal exposes historical background to the subject, as well as a methodological proposal used to create a synchronous communication bridge between the HMS and the simulation model.

Downloads

Download data is not yet available.

References

Araúzoa, J. A., Martínez, R., Laviós, J. J., Martína, J.J.B. (2015). Programación y control de sistemas de fabricación flexibles: un enfoque holónico. Revista Iberoamericana de Automática e Informática Industrial, vol. 12, pp. 58–68.

Babiceanu, R. F., Chen, F. F. (2006). Development and applications of holonic manufacturing systems: a survey. Journal of Intelligent Manufacturing, vol. 17, pp. 111–131.

Barbosa, J., Leitao, P., Adam, E., Trentesaux, D. (2015). Dynamic self-organization in holonic multi-agent manufacturing systems: The ADACOR evolution. Computers in Industry, vol. 66, pp. 99-111.

Brussel, H. V., Wyns, J., Valckenaers, P., Bongaerts, L., Peeters, P. (1998). Reference architecture for holonic manufacturing systems: PROSA. Computers in industry. vol. 37, no. 3, pp. 255–274.

Blanc, P., Demongodin, I., Castagna, P. A. (2008) Holonic approach for manufacturing execution system design: An industrial application. Engineering Applications of Artificial Intelligence. Vol. 21, No. 3, p. 315–330.

Botti, G., Giret, A. (2008). Holonic manufacturing systems, en ANEMONA. A multi- agent methodology for holonic manufacturing systems, D.T. Pham, Ed. Springer: Departamento de Sistemas Informáticos y Computación (DSIC), pp. 1–20.

D’Inverno, M., Luck, M. (2001). Understanding Agent Systems. Springer-Verlag, Berlin. 191 p. ISBN 978-3-662-04609-8

Galland, S., Grimaud, F., Beaune, P., Campagne, J. P. (2001). Méthodologie pour la simulation de systèmes industriels complexes distribués au travers d’une étude de cas. En Proc. of the 4th Conference "Génie Industriel", Aix-en-Provence, Marseille, Ajaccio (France). Vol. 2, p. 673–684.

Galland, S., Gaud, N. (2014). Holonic Model of a Virtual 3D Indoor Environment for Crowd Simulation. En Proc. of International Workshop on Environments for Multiagent Systems (E4MAS14), IFAAMAS, Paris, France, Springer.

HMS P.R. (1994). HMS Requirements. http://hms.ifw.uni-hannover.de/: HMS Server.

Indriago, C., Cardin, O., Rakoto, N., Castagna, P., Chaco`n, E. (2016). H2CM: A holonic architecture for flexible hybrid control systems. Computers in industry, vol. 77, pp. 15–28.

Koestler, A. (1967). The ghost in the machine. Arkana, pp. 384.

Leitão, P., Vrba P. (2011). Recent developments and future trends of industrial Agents. Lecture Notes in Computer Science. Vol. 6867, p.15–28.

Leroudier, J., Renault, D., Renault, M. (1980). Etude de la gestion des evénements dans une simulation a evénements discrets. En: Proceedings of the Research Report IRIA- IRISA.

Leitão, P., Restivo, F. (2006). ADACOR: a holonic architecture for agile and adaptive manufacturing control. Computers in industry. vol. 57, no. 2, pp. 121–130, 2006.

Leitão, P., Restivo, F. (2008). Implementation of a Holonic Control System in a Flexible Manufacturing System. IEEE Transactions on Systems, Man, and Cybernetics, Part C (Applications and Reviews), Vol. 38, No. 5, p. 699–709.

Liraviasl, K.K, Elmaraghy, H., Hanafy, M., Samy, S.N. (2015). A Framework for Modelling Reconfigurable Manufacturing Systems Using Hybridized Discrete-Event and Agent-based Simulation. IFAC-PapersOnLine. Vol. 48, No. 3, p 1490–1495.

Maes, P. (1997). Modeling adaptive autonomous agents. En: Langton C. G. (Eds.), Artificial Life. London, England: The MIT Press, pp. 135– 162. ISBN 0 262-62112-6

Nahmias, S. (2013). Production and operations analysis. En 6ha Revides edition. London, Ed. MaGraw: Hill Higher Education, pp. 736.

Oztemel, E. (2010). Intelligent manufacturing systems. En: Benyoucef, L., Grabot B. (Eds.), Artificial Intelligence Techniques for Networked Manufacturing Enterprises Management. Springer Series in Advanced Manufacturing. Cardiff, United Kingdom, pp. 1–41. ISBN 978-1-84996-118–9.

Rosenzweig, E., Easton, G. (2013). Tradeoffs in manufacturing? a meta analysis and critique of the literature, Production and Operations Management, vol. 19, no. 2, pp.127–141.

Unland, R. (2015). Industrial agents. En: Leitão, P., Karnouskos, S. (Eds.), Industrial agents: Emerging application of software agents in industry. 1st ed. Amsterdam, Netherlands: Punithavathy Govindaradjane, 2015. p. 23–44. ISBN 978-0-12-800341-1.

Ulieru, M., Stefanoiu, D., Norrie, D. (2000). Holonic self-organization of multi-agent systems by fuzzy modeling with application to intelligent manufacturing. Proceedings of the 2000 IEEE International Conference on Systems, Man, and Cybernetics. Vol. 3, p.1661–1666

Vlahavas, I., Vrakas, D. (2005). Intelligent Techniques for Planning. IGI Global. 360 p. ISBN 1-59140-450-9

Wang, F., Xu, D., Tan, M., Wan, Z. (2005). A hiolonic architecture for reconfigurable manufacturing systems, Mechatronics Engineering Department, pp. 905–909.

Wooldridge, M. (2009). An Introduction to MultiAgent Systems. United Kingdom: John Wiley & Sons Ltd. Second Edt, 2009, 453 p. ISBN 978-0-470-51946-2

Wooldridge, M., Jennings, N. R. (1995). Agent Theories, Architectures, and Languages: A survey, en: Intelligent Agents. Berlin: Springer-Verlag. Vol. 890, pp. 1–39. ISBN: 978-3-540-58855-9

Published
2023-07-05
How to Cite
Simón Marmolejo, I., Cruz Guerrero, R., González Hernández, I. J., Granillo-Macias, R., & Santana-Robles, F. (2023). Conceptual design and prototype implementation of a holonic system and a discrete event system. Ingenio Y Conciencia Boletín Científico De La Escuela Superior Ciudad Sahagún, 10(20), 12-20. https://doi.org/10.29057/escs.v10i20.10768

Most read articles by the same author(s)

1 2 3 4 > >>