INFORMAZIONI SU QUESTO ARTICOLO

Cita

1. SHAHIM, N., MØLLER, CH. 2016. Economic Justification of Virtual Commissioning in Automation Industry. Proc. of the 2016 Winter Sim. Conf., pp. 2430-244110.1109/WSC.2016.7822282Search in Google Scholar

2. REINHART, G., WÜNSCH, G. 2007. Economic application of virtual commissioning to mechatronic. Prod. Eng. – Res. and Devel., 1(4), pp. 371–379.Search in Google Scholar

3. LIU, Z., DIETRICH, C., SUCHOLD, N. 2012. Virtual Commissioning of Automated Systems. INTECH Open Access Publisher.10.5772/45730Search in Google Scholar

4. KIEFER, J., BORUTTA, H. 2010. Virtuelle Inbetriebnahme im Rohbau Werk Wörth. (Virtual Commissioning in the Wörth plant bodyshop) 6. Fachkongress Digitale Fabrik@Produktion. Fulda.Search in Google Scholar

5. HINCAPIÉ, M. et al. 2014. Mixing real and virtual components in automated manufacturing systems using PLM tools. Int.r. J. on Int.Des. and Man.(IJIDeM),8(3), pp. 209-230.Search in Google Scholar

6. REINHART, G., WÜNSCH, G. 2007. Economic application of virtual commissioning to mechatronic production systems. Production Engineering, 1(4), pp. 371-379.Search in Google Scholar

7. DAHL. M. et al. 2017. Automatic modelling and simulation of robot program behavior in integrated virtual preparation and commissioning. Proc. Manuf., 11, pp. 284-291.Search in Google Scholar

8. LEE, C. G., PARK, S. C. 2014. Survey on the virtual commissioning of manufacturing systems, J. Comput. Des. Eng., 1(3), pp. 213–222.Search in Google Scholar

9. DAMRATH, F., STRAHILOV, A., BÄR, T., VIELHABER, M. 2014. Establishing Energy Efficiency as Criterion for Virtual Commissioning of Automated Assembly Systems. Procedia CIRP, 23, 137-142.Search in Google Scholar

10. DAHL, M. et al. 2016. Integrated Virtual Preparation and Commissioning: supporting formal methods during automation systems development. IFAC-PapersOnLine,49(12), pp. 1939-1944.Search in Google Scholar

11. DAHL, M. et al. 2017. Sequence Planner: Supporting Integrated Virtual Preparation and Commissioning. IFAC-PapersOnLine,50(1), pp. 5818-5823.Search in Google Scholar

12. MAKRIS, S., MICHALOS, G., CHRYSSOLOURIS, G. 2012. Virtual Commissioning of an Assembly Cell with Cooperating Robots. Advances in Decision Sciences.10.1155/2012/428060Search in Google Scholar

13. DUMITRAȘCU, A., NAE, L., PREDINCEA, N. 2014. Virtual Commissioning as a Final Step in Digital Validation of the Robotic Manufacturing Systems. Proc. in Manuf. Sys., 9(4), pp. 215-220.Search in Google Scholar

14. HALMSJÖ, J., FÄLT, J. 2016. Emulation of a production cell. Developing a Virtual Commissioning model in a concurrent environment. Chalmers University of Technology, Gothenburg, Sweden.Search in Google Scholar

15. VERMAAK, H.J., NIEMANN, J.A. 2015. Validating a reconfigurable assembly system utilizing virtual commissioning. Central University of Technology, Free State, Bloemfontein: Interim : Interdisciplinary Journal,14(1).10.1109/RoboMech.2015.7359532Search in Google Scholar

16. DAMRATH, F., STRAHILOV, A., BÄR, T., VIELHABER, M. 2015. Experimental Validation of a Physics-based Simulation Approach for Pneumatic Components for Production Systems in the Automotive Industry. Procedia CIRP, 31, pp. 35-40.Search in Google Scholar

17. RUŽAROVSKÝ, R., DELGADO SOBRINO, D.R., HOLUBEK, R., KOŠŤÁL, P. 2014. Automated in-process inspection method in the Flexible production system iCIM 3000. Applied Mechanics and Materials, 693. pp. 50-55.Search in Google Scholar

18. SÜSS, S. et al. 2016. Standardized Classification and Interfaces of complex Behaviour Models in Virtual Commissioning. Procedia CIRP,52, pp. 24-29.Search in Google Scholar

19. KOREN, Y. et al. 1999. Reconfigurable manufacturing systems. CIRP Annals - Manufacturing Technology, 48(2), pp. 527-540.Search in Google Scholar

20. KO, M., AHN, E., PARK, S.C. 2013. A concurrent design methodology of a production system for virtual commissioning. Con. Eng.: Res. and App.,21(2), pp. 129–140.Search in Google Scholar

21. KO, M., PARK, S.C. 2014. Template-based modelling methodology of a virtual plant for virtual commissioning. Con. Eng.: Res. and App.,22(3), pp. 197–205.Search in Google Scholar

22. HOFFMANN, P., MAKSOUD, T.M.A. 2010. Virtual Commissioning of Manufacturing Systems - A Review and New Approaches to Simplification. Proceedings of the 24th European Conference on Modelling and Simulation (ECMS 2010), pp. 175-181.Search in Google Scholar

23. HOLUBEK, R., DELGADO SOBRINO, D.R., KOŠŤÁL, P., RUŽAROVSKÝ, R., VELÍŠEK, K. 2017. Using Virtual Reality tools to support simulations of manufacturing instances in Process Simulate: The case of an iCIM 3000 system. MATEC Web of Conferences, 137.10.1051/matecconf/201713704004Search in Google Scholar

24. HOLUBEK, R., RUŽAROVSKÝ, R., DELGADO SOBRINO, D.R., KOŠŤÁL, P., ŠVORC, A., VELÍŠEK, K. 2017. Novel trends in the assembly process as the results of the human–industrial robot collaboration. MATEC Web of Conferences, 137.Search in Google Scholar

eISSN:
1338-0532
Lingua:
Inglese
Frequenza di pubblicazione:
2 volte all'anno
Argomenti della rivista:
Engineering, Introductions and Overviews, other