718
Views
15
CrossRef citations to date
0
Altmetric
Articles

A systematic adaptable platform architecture design methodology for early product development

, , &
Pages 93-117 | Received 10 Nov 2014, Accepted 21 Oct 2015, Published online: 19 Nov 2015

References

  • Agard, B., and M. Barajas. 2010. “The Use of Fuzzy Logic in Product Family Development: Literature Review and Opportunities.” Journal of Intelligent Manufacturing 23 (5): 1445–1462.
  • Algeddawy, T., and H. Elmaraghy. 2013. “Reactive Design Methodology for Product Family Platforms, Modularity and Parts Integration.” CIRP Journal of Manufacturing Science and Technology 6 (1): 34–43.
  • Basaran, M. A., C. H. Aladag, and C. Kadilar. 2008. “Conducting Fuzzy Division by Using Linear Programming.” WSEAS Transactions on Information Science & Applications 6 (5): 923–928.
  • Borjesson, F., and K. Hölttä-Otto. 2013. “A Module Generation Algorithm for Product Architecture Based on Component Interactions and Strategic Drivers.” Research in Engineering Design 25 (1): 31–51.
  • Chen, C., and L. Wang. 2008. “Product Platform Design Through Clustering Analysis and Information Theoretical Approach.” International Journal of Production Research 46 (15): 4259–4284.
  • Cheng, C. H., and Y. Lin. 2002. “Evaluating the Best Main Battle Tank Using Fuzzy Decision Theory with Linguistic Criteria Evaluation.” European Journal of Operational Research 142 (1): 174–186.
  • Chung, W. H., G. E. Okudan Kremer, and R. A. Wysk. 2014. “Life Cycle Implications of Product Modular Architectures in Closed-Loop Supply Chains.” The International Journal of Advanced Manufacturing Technology 70 (9–12): 2013–2028.
  • Dai, Z. H., and M. J. Scott. 2007. “Product Platform Design Through Sensitivity Analysis and Cluster Analysis.” Journal of Intelligent Manufacturing 18 (1): 97–113.
  • Dolan, B., and K. Lewis. 2008. “Robust Product Family Consolidation and Selection.” Journal of Engineering Design 19 (6): 553–569.
  • Du, G., R. J. Jiao, and M. Chen. 2014. “Joint Optimization of Product Family Configuration and Scaling Design by Stackelberg Game.” European Journal of Operational Research 232 (2): 330–341.
  • Du, X. H., J. X. Jiao, and M. M. Tseng. 2002. “Graph Grammar Based Product Family Modeling.” Concurrent Engineering: Research and Applications 10 (2): 113–128.
  • Gao, F., G. Xiao, and T. W. Simpson. 2009. “Module-scale-based Product Platform Planning.” Research In Engineering Design 20 (2): 129–141.
  • Gao, F., G. Xiao, and T. W. Simpson. 2010. “Identifying Functional Modules Using Generalized Directed Graphs: Definition and Application.” Computers in Industry 61 (3): 260–269.
  • Gao, F., Y. M. Zhang, and G. Xiao. 2014. “A Methodology to Support Platform Parameters Determination Through Considering Main Factors in Product Life Cycle.” International Journal of Computer Integrated Manufacturing 27 (5): 470–478.
  • Giachetti, R. E., and R. E. Young. 1997. “A Parametric Representation of Fuzzy Numbers and Their Arithmetic Operators.” Fuzzy Sets and Systems 91: 185–202.
  • Gu, P., M. Hashemian, and A. Y. C. Nee. 2004. “Adaptable Design.” Cirp Annals-Manufacturing Technology 53 (2): 539–557.
  • Hirtz, J., R. B. Stone, D. A. Mcadams, S. Szykman, and K. L. Wood. 2002. “A Functional Basis for Engineering Design: Reconciling and Evolving Previous Efforts.” Research in Engineering Design 13 (2): 65–82.
  • Ji, Y. J., X. B. Chen, G. N. Qi, and L. W. Song. 2012. “Modular Design Involving Effectiveness of Multiple Phases for Product Life Cycle.” The International Journal of Advanced Manufacturing Technology 66 (9–12), 1475–1488.
  • Jiang, L., and V. Allada. 2005. “Robust Modular Product Family Design Using a Modified Taguchi Method.” Journal of Engineering Design 16 (5): 443–458.
  • 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.
  • Kreng, V. B., and T. P. Lee. 2004. “Modular Product Design with Grouping Genetic Algorithm – A Case Study.” Computers & Industrial Engineering 46 (3): 443–460.
  • Kumar, R., and V. Allada. 2007. “Scalable Platforms Using Ant Colony Optimization.” Journal of Intelligent Manufacturing 18 (1): 127–142.
  • Kumar, D., W. Chen, and T. W. Simpson. 2009. “A Market-driven Approach to Product Family Design.” International Journal of Production Research 47 (1): 71–104.
  • Laskaris, N. A., and S. P. Zafeiriou. 2008. “Beyond FCM: Graph-Theoretic Post-Processing Algorithms for Learning and Representing the Data Structure.” Pattern Recognition 41 (8): 2630–2644.
  • Li, Z. K., Z. H. Cheng, Y. X. Feng, and J. Y. Yang. 2013. “An Integrated Method for Flexible Platform Modular Architecture Design.” Journal of Engineering Design 24 (1): 25–44.
  • Li, Z. K., Y. X. Feng, J. R. Tan, and Z. Wei. 2008. “A Methodology to Support Product Platform Optimization Using Multi-Objective Evolutionary Algorithms.” Transactions of the Institute of Measurement and Control 30 (3–4): 295–312.
  • Li, L., and G. Q. Huang. 2009. “Multiobjective Evolutionary Optimisation for Adaptive Product Family Design.” International Journal of Computer Integrated Manufacturing 22 (4): 299–314.
  • Liu, E., and S. W. Hsiao. 2006. “Anp-gp Approach for Product Variety Design.” International Journal of Advanced Manufacturing Technology 29 (3–4): 216–225.
  • Liu, E., S. W. Hsiao, and S. W. Hsiao. 2014. “A Decision Support System for Product Family Design.” Information Sciences 281: 113–127.
  • Liu, Z., Y. S. Wong, and K. S. Lee. 2008. “Integrated Approach to Modularize the Conceptual Product Family Architecture.” The International Journal of Advanced Manufacturing Technology 36 (1–2): 83–96.
  • Liu, Z., Y. S. Wong, and K. S. Lee. 2009. “A Manufacturing-Oriented Approach for Multi-Platforming Product Family Design with Modified Genetic Algorithm.” Journal of Intelligent Manufacturing 22 (6): 891–907.
  • Liu, Z., Y. S. Wong, and K. S. Lee. 2010. “Modularity Analysis and Commonality Design: A Framework for the Top-Down Platform and Product Family Design.” International Journal of Production Research 48 (12): 3657–3680.
  • Madni, A. M. 2012. “Adaptable Platform-Based Engineering: Key Enablers and Outlook for the Future.” Systems Engineering 15 (1): 95–107.
  • Marion, T. J., M. H. Meyer, and G. Barczak. 2015. “The Influence of Digital Design and it on Modular Product Architecture.” Journal of Product Innovation Management 32 (1): 98–110.
  • Martin, M., and K. Ishii. 2002. “Design for Variety: Developing Standardized and Modularized Product Platform Architectures.” Research in Engineering Design 13 (4): 213–235.
  • Messac, A., M. P. Martinez, and T. W. Simpson. 2002. “Introduction of a Product Family Penalty Function Using Physical Programming.” Journal of Mechanical Design 124 (2): 164–172.
  • Moon, S. K., K. J. Park, and T. W. Simpson. 2013. “Platform Design Variable Identification for a Product Family Using Multi-Objective Particle Swarm Optimization.” Research in Engineering Design 25 (2): 95–108.
  • Moon, S. K., T. W. Simpson, and S. R. T. Kumara. 2008. “A Methodology for Knowledge Discovery to Support Product Family Design.” Annals of Operations Research 174 (1): 201–218.
  • 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.
  • Pahl, G., W. Beizt, J. Feldhusen, and K. H. Grote. 2007. Engineering Design: A Systematic Approach. 3rd ed. London: Springer.
  • Qu, T., S. Bin, G. Q. Huang, and H. D. Yang. 2011. “Two-stage Product Platform Development for Mass Customisation.” International Journal of Production Research 49 (8): 2197–2219.
  • Schuh, G., M. Lenders, and J. Arnoscht. 2009. “Focussing Product Innovation and Fostering Economies of Scale Based on Adaptive Product Platforms.” Cirp Annals-Manufacturing Technology 58 (1): 131–134.
  • Shawe-Taylor, J., and S. L. Sun. 2011. “A Review of Optimization Methodologies in Support Vector Machines.” Neurocomputing 74 (17): 3609–3618.
  • Simpson, T. W. 2003. “Product Platform Design and Optimization Status and Promise.” In Proceedings of the ASME Design Engineering Technical Conferences and Computers and Information in Engineering Conference, 131–142. Chicago, IL: ASME.
  • Simpson, T. W., J. R. A. Maier, and F. Mistree. 2001a. “Product Platform Design: Method and Application.” Research in Engineering Design-Theory Applications and Concurrent Engineering 13 (1): 2–22.
  • Simpson, T. W., C. C. Seepersad, and F. Mistree. 2001b. “Balancing Commonality and Performance Within the Concurrent Design of Multiple Products in a Product Family.” Concurrent Engineering-Research and Applications 9 (3): 177–190.
  • Sriramdas, V., S. K. Chaturvedi, and H. Gargama. 2014. “Fuzzy Arithmetic Based Reliability Allocation Approach During Early Design and Development.” Expert Systems with Applications 41 (7): 3444–3449.
  • Stone, R. B., R. Kurtadikar, N. Villanueva, and C. B. Arnold. 2008. “A Customer Needs Motivated Conceptual Design Methodology for Product Portfolio Planning.” Journal of Engineering Design 19 (6): 489–514.
  • Stone, R. B. and K. L. Wood. 2000. “Development of a Functional Basis for Design.” Journal of Mechanical Design 122 (4): 359–370.
  • Stone, R. B., K. L. Wood, and R. H. Crawford. 2000. “A Heuristic Method for Identifying Modules for Product Architectures.” Design Studies 21 (1): 5–31.
  • Suh, E. S., O. L. De Weck, and D. Chang. 2007. “Flexible Product Platforms: Framework and Case Study.” Research in Engineering Design 18 (2): 67–89.
  • Suh, E. S., O. De Weck, I. Y. Kim, and D. Chang. 2007. “Flexible Platform Component Design Under Uncertainty.” Journal of Intelligent Manufacturing 18 (1): 115–126.
  • Thebeau, R. E. 2011. “ Knowledge Management of System Interfaces and Interactions for Product Development Processes.” Master thesis in MIT, Massachusetts Institute of Technology, Boston.
  • Van Wie, M., R. B. Stone, H. Thevenot, and T. Simpson. 2007. “Examination of Platform and Differentiating Elements in Product Family Design.” Journal of Intelligent Manufacturing 18 (1): 77–96.
  • Wang, Q. D., J. F. Wei, and G. M. Wang. 2009. “Design of Concrete Spraying Machine's Automatical Dust-Removing System.” Third International Symposium on Intelligent Information Technology Application Workshops. IITAW'09, 387–388. Nanchang, IEEE, November 21–22.
  • Wang, Y. M., J. B. Yang, D. L. Xu, and K. S. Chin. 2006. “On the Centroids of Fuzzy Numbers.” Fuzzy Sets and Systems 157 (7): 919–926.
  • Yan, J. H., C. H. Feng, and K. Cheng. 2012. “Sustainability-Oriented Product Modular Design Using Kernel-Based Fuzzy C-Means Clustering and Genetic Algorithm.” Proceedings of the Institution of Mechanical Engineers, Part B-Journal of Engineering Manufacture 226 (A10): 1635–1647.
  • Yu, S. R., Q. Y. Yang, J. Tao, X. Tian, and F. F. Yin. 2011. “Product Modular Design Incorporating Life Cycle Issues – Group Genetic Algorithm (GGA) Based Method.” Journal of Cleaner Production 19 (9–10): 1016–1032.
  • Yu, T. L., A. A. Yassine, and D. E. Goldberg. 2007. “An Information Theoretic Method for Developing Modular Architectures Using Genetic Algorithms.” Research in Engineering Design 18 (2): 91–109.
  • Zhou, Q., W. L. Huang, and Y. Zhang. 2011. “Identifying Critical Success Factors in Emergency Management Using a Fuzzy Dematel Method.” Safety Science 49 (2): 243–252.

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.