Capability model for sensor/actuator reconfiguration

An interface-oriented approach and its implementation

Authors

  • Xuan-Luu Hong Helmut-Schmidt-Universität Hamburg
  • Alexander Fay
  • Sascha Backhaus CTC
  • David Küstner Synergeticon
  • Philip Koch Fraunhofer IFAM
  • Julius Pfrommer Fraunhofer IOSB
  • Rolf Bense Airbus Operations

DOI:

https://doi.org/10.17560/atp.v61i9.2434

Keywords:

capability model, reconfiguration, manufacturing resources, automationML

Abstract

Faced with individualized orders, manufacturing companies increasingly have to adapt their production processes to changing requirements. For each order it is necessary to assess which product can be produced by which production resources. To remain efficient in production engineering and planning, this assessment should be automated as far as possible. This especially holds for reconfigurable production resources. We demonstrate that the modelling of skills of production resources is a suitable way to ease the assessment of producibility and to generate feasible resource configurations. The approach has been implemented
using AutomationML and applied to an automatic riveting system at Airbus.

References

Vogel-Heuser, B., Fay, A., Schaefer, I., Tichy, M. (2015). Evolution of software in automated production systems: Challenges and research directions. Journal of Systems and Software, 110, (pp. 54-84).

ElMaraghy, H. A. (2005). Flexible and reconfigurable manufacturing systems paradigms. International journal of flexible manufacturing systems, 17(4), (pp. 261-276).

Hoang, X. L., Hildebrandt, C., Fay, A. (2018). Product-oriented description of manufacturing resource skills. IFAC-PapersOnLine, 51(11), (pp. 90-95).

Loskyll, M., Heck, I., Schlick, J., Schwarz, M. (2012). Context-based orchestration for control of resource-efficient manufacturing processes. Future Internet, 4(3), (pp. 737-761).

Järvenpää, E., Siltala, N., Lanz, M. (2016). Formal resource and capability descriptions supporting rapid reconfiguration of assembly systems. In 2016 IEEE International Symposium on Assembly and Manufacturing (ISAM) (pp. 120-125). IEEE.

Malakuti, S., Bock, J., Weser, M., Venet, P., Zimmermann, P., Wiegand, M., ... und Bayha, A. (2018). Challenges in skill-based engineering of industrial automation systems. In 2018 IEEE 23rd International Conference on Emerging Technologies and Factory Automation (ETFA) (Vol. 1, pp. 67-74). IEEE.

Danny, P., Ferreira, P., Lohse, N., Guedes, M. (2017, July). An AutomationML model for plug-and-produce assembly systems. In 2017 IEEE 15th International Conference on Industrial Informatics (INDIN) (pp. 849-854). IEEE.

Pfrommer, J., Stogl, D., Aleksandrov, K., Navarro, S. E., Hein, B., Beyerer, J. (2015). Plug & produce by modelling skills and service-oriented orchestration of reconfigurable manufacturing systems. at-Automatisierungstechnik, 63(10), (pp. 790-800).

Backhaus, J., Reinhart, G. (2017). Digital description of products, processes and resources for task-oriented programming of assembly systems. Journal of Intelligent Manufacturing, 28(8), (pp. 1787-1800).

Ferrer, B. R., Ahmad, B., Vera, D., Lobov, A., Harrison, R., Lastra, J. L. M. (2016). Product, process and resource model coupling for knowledge-driven assembly automation. at-Automatisierungstechnik, 64(3), (pp. 231-243).

VDI/VDE 3682. (2005). Formalized process descriptions. VDI: www.vdi.de

Hildebrandt, C., Scholz, A., Fay, A., Schröder, T., Hadlich, T., Diedrich, C., ... und Wiegand, R. (2017). Semantic modeling for collaboration and cooperation of systems in the production domain. In 2017 22nd IEEE International Conference on Emerging Technologies and Factory Automation (ETFA) (pp. 1-8). IEEE.

AutomationML e. V. (2018). Whitepaper AutomationML Part 1 – AutomationML Architecture State : July 2018, (pp. 1–88). Abgerufen von: https://www.automationml.org/o.red/uploads/dateien/1417686950-AutomationML%20Whitepaper%20Part%201%20-%20AutomationML%20Architecture%20v2_Oct2014.pdf

Hoang, X.-L., Marks, P., Weyrich, M., Fay, A. (2017). Modeling of interdependencies between products, processes and resources to support the evolution of mechatronic systems. In 20th IFAC World Congress, July 9-14, Toulouse, France, 2017.

X.-L. Hoang, A. Fay. (2019). A Capability Model for the Adaptation of Manufacturing Systems. In 24rd IEEE International Conference on Emerging Technologies And Factory Automation (ETFA 2019), September 10-13, Zaragoza, Spain, 2019.

Published

2019-09-26

Issue

Section

Article / Peer Review

Most read articles by the same author(s)

1 2 3 4 5 6 7 8 9 10 > >>