441
Views
10
CrossRef citations to date
0
Altmetric
Original Articles

Tri-objective optimisation of mixed model reconfigurable assembly system for modular products

ORCID Icon & ORCID Icon
Pages 72-82 | Received 05 Feb 2018, Accepted 11 Nov 2018, Published online: 28 Nov 2018

References

  • Abbas, M., and H. ElMaraghy. 2018. “Synthesis and Optimization of Manufacturing Systems Configuration Using Co-Platforming.” CIRP Journal of Manufacturing Science and Technology 20: 51–65. doi:10.1016/j.cirpj.2017.09.006.
  • Antzoulatos, N., E. Castro, L. De Silva, A. D. Rocha, S. Ratchev, and J. Barata. 2017. “A Multi-Agent Framework for Capability-Based Reconfiguration of Industrial Assembly Systems.” International Journal of Production Research 55 (10): 2950–2960. doi:10.1080/00207543.2016.1243268.
  • Arai, T., Y. Aiyama, Y. Maeda, M. Sugi, and J. Ota. 2000. “Agile Assembly System by Plug-and-Produce.” CIRP Annals - Manufacturing Technology 49: 1–4. doi:10.1016/S0007-8506(07)62883-2.
  • Belaiche, L., and L. Kahloul. 2017. The Optimal Process Planning for Reconfigurable Manufacturing Systems. International Conference on Mathematics and Information Technology (ICMIT), Adrar, Algeria, 309–316.
  • Benderbal, H. H., M. Dahane, and L. Benyoucef. 2018. “Modularity Assessment in Reconfigurable Manufacturing System (RMS) Design: An Archived Multi-Objective Simulated Annealing-Based Approach.” International Journal of Advanced Manufacturing Technology 94: 729–749. doi:10.1007/s00170-017-0803-2.
  • Bonvoisin, J., F. Halstenberg, T. Buchert, and R. Stark. 2016. “A Systematic Literature Review on Modular Product Design.” Journal of Engineering Design 27 (7): 488–514. doi:10.1080/09544828.2016.1166482.
  • Bryan, A., J. Ko, S. Hu, and Y. Koren. 2007. “Co-Evolution of Product Families and Assembly Systems.” CIRP Annals Manufacturing Technology 56 (1): 41–44. doi:10.1016/j.cirp.2007.05.012.
  • Chao, Y., and W. Sun. 2016. Improve Assembly Line Balancing by Changing Cycle Time. Proceedings of IEEE International Conference on Mechatronics and Automation, August 7–10, Harbin, China.
  • Colledani, M., D. Gyulai, L. Monostori, M. Urgo, J. Unglert, and F. Van Houten. 2016. “Design and Management of Reconfigurable Assembly Lines in the Automotive Industry.” CIRP Annals 65 (1): 441–446. doi:10.1016/j.cirp.2016.04.123.
  • De Lit, P., and A. Delchambre. 2003. Integrated Design of a Product Family and Its Assembly System. Boston: Kluwer Academic.
  • Duray, R., P. T. Ward, G. W. Milligan, and W. L. Berry. 2000. “Approaches to Mass Customization: Configurations and Empirical Validation.” Journal of Operations Management 18 (6): 605–625. doi:10.1016/S0272-6963(00)00043-7.
  • Erixon, G. 1996. “Modular Function Deployment: A Method for Product Modularisation.” Presentation at the 2nd WDK workshop on product structuring, Delft, Holland, June 3–4.
  • Fujita, K. 2002. “Product Variety Optimization under Modular Architecture.” Computer Aided Design 34 (12): 953–965. doi:10.1016/S0010-4485(01)00149-X.
  • Fujita, K., and H. Yoshida. 2004. “Product Variety Optimization Simultaneously Designing Module Combination and Module Attributes.” Concurrent Eng. Res. And Applications 12 (2): 105–118. doi:10.1177/1063293X04044758.
  • Gershenson, J. K., G. J. Prasad, and Y. Zhang. 2004. “Product Modularity: Measures and Design Methods.” Journal of Engineering Design 15 (1): 33–51. doi:10.1080/0954482032000101731.
  • Grzechca, W., (2011). Cycle Time in Assembly Line Balancing Problem. Proceedings of 21st IEEE International Conference on Systems Engineering, Las Vegas, NV, USA, 171–174.
  • Gyulai, D., and L. Monostori. 2017. “Capacity Management of Modular Assembly Systems.” Journal of Manufacturing Systems 43: 88–99. doi:10.1016/j.jmsy.2017.02.008.
  • Hanafy, M., and H. ElMaraghy. 2015. “A Modular Product Multi-Platform Configuration Model.” International Journal of Computer Integrated Manufacturing 28 (9): 999–1014. doi:10.1080/0951192X.2014.941407.
  • Hanafy, M., and H. ElMaraghy. 2017. “Modular Product Platform Configuration and Co-Planning of Assembly Lines Using Assembly and Disassembly.” Journal of Manufacturing Systems 42: 289–305. doi:10.1016/j.jmsy.2016.12.002.
  • He, D. W., and A. Kusiak. 1996. “Performance Analysis of Modular Products.” International Journal of Production Research 34 (1): 253–272. doi:10.1080/00207549608904900.
  • He, D. W., and A. Kusiak. 1997. “Design of Assembly Systems for Modular Products.” IEEE Transactions on Robotics and Automation 13 (5): 646–655. doi:10.1109/70.631226.
  • Helmer, R., A. Yassine, and C. Meier. 2010. “Systematic Module and Interface Definition Using Component Design Structure Matrix.” Journal of Engineering Design 21 (6): 647–675. doi:10.1080/09544820802563226.
  • Hu, S. J., J. Ko, L. Weyand, H. A. Elmaraghy, T. K. Lien, Y. Koren, H. Bley, G. Chryssolouris, N. Nasr, and M. Shpitalni. 2011. “Assembly System Design and Operations for Product Variety.” CIRP Annals 60 (2): 715–733. doi:10.1016/j.cirp.2011.05.004.
  • Hu, S. J., X. Zhu, H. Wang, and Y. Koren. 2008. “Product Variety and Manufacturing Complexity in Assembly Systems and Supply Chains.” CIRP Annals – Manufacturing Technology 57 (1): 45–48. doi:10.1016/j.cirp.2008.03.138.
  • Huang, C. C., and A. Kusiak. 1998. “Modularity in Design of Products and Systems. Systems, Man and Cybernetics, Part A: Systems and Humans.” IEEE Transactions 28 (1): 66–77.
  • Huang, G. Q., X. Y. Zhang, and L. Liang. 2005. “Towards Integrated Optimal Configuration of Platform Products, Manufacturing Processes, and Supply Chains.” Journal of Operations Management 23 (3–4): 267–290. doi:10.1016/j.jom.2004.10.014.
  • Jiao, J., T. W. Simpson, and Z. Siddique. 2007. “Product Family Design and Platform-Based Product Development: A State-Of-The-Art Review.” Journal of Intelligent Manufacturing 18 (1): 5–29. doi:10.1007/s10845-007-0003-2.
  • Jose, A., and M. Tollenaere. 2005. “Modular and Platform Methods for Product Family Design: Literature Analysis.” Journal of Intelligent Manufacturing 16 (3): 371–390. doi:10.1007/s10845-005-7030-7.
  • Karmarkar, U. S., and P. Kubat. 1987. “Modular Product Design and Product Support.” European Journal of Operational Research 29 (1): 74–82. doi:10.1016/0377-2217(87)90195-0.
  • Kremer, G. E. O., and S. Gupta. 2013. “Analysis of Modularity Implementation Methods from an Assembly and Variety Viewpoints.” International Journal of Advanced Manufacturing Technology 66 (9–12): 1959–1976. doi:10.1007/s00170-012-4473-9.
  • Kreng, V. B., and T.-P. Lee. 2004. “QFD-based Modular Product Design with Linear Integer Programming– A Case Study.” Journal of Engineering Design 15 (3): 261–284. doi:10.1080/09544820410001647069.
  • Kusiak, A., and D. W. He. 1997. “Design for Agile Assembly: An Operational Perspective.” International Journal of Production Research 35 (1): 157–178. doi:10.1080/002075497196037.
  • Lai, X., and J. K. Gershenson. 2008. “Representation of Similarity and Dependency for Assembly Modularity.” The International Journal of Advanced Manufacturing Technology 37 (7–8): 803–827. doi:10.1007/s00170-007-1010-3.
  • Lau, A. K. W. 2011. “Critical Success Factors in Managing Modular Production Design: Six Company Case Studies in Hong Kong, China, and Singapore.” Journal of Engineering and Technology Management 28 (3): 168–183. doi:10.1016/j.jengtecman.2011.03.004.
  • Luh, D.-B., Y.-T. Ko, and C.-H. Ma. 2011. “A Structural Matrix-Based Modelling for Designing Product Variety.” Journal of Engineering Design 22: 1–29. doi:10.1080/09544820902877591.
  • Meyer, M. H., and A. P. Lehnerd. 1997. The Power of Product Platforms: Building Value and Cost Leadership. New York: Free Press.
  • Michalos, G., S. Makris, and G. Chryssolouris. 2014. “The New Assembly System Paradigm.” International Journal of Computer Integrated Manufacturing 28 (12): 1252–1261. doi:10.1080/0951192X.2014.964323.
  • Michalos, G., S. Makris, N. Papakostas, D. Mourtzis, and G. Chryssolouris. 2010. “Automotive Assembly Technologies Review: Challenges and Outlook for a Flexible and Adaptive Research.” CIRP Journal of Manufacturing Science and Technology 2: 81–91. doi:10.1016/j.cirpj.2009.12.001.
  • Michalos, G., P. Sipsas, S. Makris, and G. Chryssolouris. 2016. “Decision Making Logic for Flexible Assembly Lines Reconfiguration.” Robotics and Computer-Integrated Manufacturing 37: 233–250. doi:10.1016/j.rcim.2015.04.006.
  • Muffatto, M., and M. Roveda. 2000. “Developing Product Platforms: Analysis of the Development Process.” Technovation 20 (11): 617–630. doi:10.1016/S0166-4972(99)00178-9.
  • Nepal, B., L. Monplaisir, and N. Singh. 2005. “Integrated Fuzzy Logic-Based Model for Product Modularization during Concept Development Phase.” International Journal of Production Economics 96 (2): 157–174. doi:10.1016/j.ijpe.2004.03.010.
  • Newcomb, P. J., B. Bras, and D. W. Rosen. 1998. “Implications of Modularity on Product Design for the Life Cycle.” Journal of Mechanical Design 120 (3): 483–490. doi:10.1115/1.2829177.
  • Pandremenos, J., and G. Chryssolouris. 2011. “A Neural Network Approach for the Development of Modular Product Architectures.” International Journal of Computer Integrated Manufacturing 24 (10): 879–887. doi:10.1080/0951192X.2011.602361.
  • Pandremenos, J., J. Paralikas, K. Salonitis, and G. Chryssolouris. 2009. “Modularity Concepts for the Automotive Industry: A Critical Review.” CIRP Journal of Manufacturing Science and Technology 1: 148–152. doi:10.1016/j.cirpj.2008.09.012.
  • Paralikas, J., A. Fysikopoulos, J. Pandremenos, and G. Chryssolouris. 2011. “Product Modularity and Assembly Systems: An Automotive Case Study.” CIRP Annals - Manufacturing Technology 60: 165–168. doi:10.1016/j.cirp.2011.03.009.
  • Pimmler, T. U., and S. D. Eppinger. 1994. Integration Analysis of Product Decompositions. Presentation at the ASME conference on design theory and methodology, Minneapolis, MN, September 11–14. doi:10.3168/jds.S0022-0302(94)77044-2
  • Pirmoradi, Z., G. G. Wang, and T. W. Simpson. 2014. “A Review of Recent Literature in Product Family Design and Platform-Based Product Development.” In Advances in Product Family and Product Platform Design, edited by T. Simpson, J. Jiao, Z. Siddique, and K. Holtta-Otto K. New York: Springer.
  • Robertson, D., and K. Ulrich. 1998. “Planning for Product Platforms.” Sloan Management Review 39 (4): 19–31.
  • Salonitis, K. 2014. “Modular Design for Increasing Assembly Automation.” CIRP Annals - Manufacturing Technology 63: 189–192. doi:10.1016/j.cirp.2014.03.100.
  • Shamsuzzoha, A., P. T. Helo, and T. Kekale. 2010. “Application of Modularity in World Automotive Industries: A Literature Analysis.” International Journal of Automotive Technology and Management 10 (4): 361–377. doi:10.1504/IJATM.2010.035646.
  • Sosale, S., M. Hashemian, and P. Gu. 1997. “Product Modularization for Reuse and Recycling.” ASME Concurrent Product Design and Environmentally Conscious Manufacturing 94: 195–206.
  • Stake, R. 2000. On Conceptual Development of Modular Products–Development of Supporting Tools for the Modularisation Process. Stockholm: Industriell produktion.
  • Starr, M. K. 1965. “Modular Production: A New Concept.” Harv.Bus.Rev 3: 131–142.
  • Steward, D. V. 1981. “Design Structure System: A Method for Managing the Design of Complex Systems.” IEEE transactions on Engineering Management 28 (3): 71–74. doi:10.1109/TEM.1981.6448589.
  • Wilhelm, B. 1997. Platform and Modular Concepts at Volkswagen-Their Effects on the Assembly Process. In Transforming Automobile Assembly, edited by K. Shimokawa K., U. Jurgens, T. Fujimoto, 146–156. Springer, Berlin, Heidelberg.
  • Xu, Z., and M. Liang. 2006. “Integrated Planning for Product Module Selection and Assembly Line Design/Reconfiguration.” International Journal of Production Research 44 (11): 2091–2117. doi:10.1080/00207540500357146.
  • Yigit, A. S., A. Galip Ulsoy, and A. Allahverdi. 2002. “Optimizing Modular Product Design for Reconfigurable Manufacturing.” Journal of Intelligent Manufacturing 13: 309–316. doi:10.1023/A:1016032714680.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.