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Research Article

Innovation level in set-based design: an integrated approach with chosen-to-fit and custom-to-fit solutions

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Pages 990-1015 | Received 18 Jul 2022, Accepted 01 Dec 2022, Published online: 09 Dec 2022

References

  • Al-Ashaab, A., M. Golob, U. M. Attia, M. Khan, J. Parsons, A. Andino, A. Perez, P. Guzman, A. Onecha, and S. Kesavamoorthy. 2013. “The Transformation of Product Development Process Into Lean Environment Using set-Based Concurrent Engineering: A Case Study from an Aerospace Industry.” Concurrent Engineering: Research and Applications 21 (4): 268–285. doi:10.1177/1063293X13495220.
  • Almeida-Dias, J., J. R. Figueira, and B. Roy. 2012. “A Multiple Criteria Sorting Method Where Each Category is Characterized by Several Reference Actions: The Electre Tri-nC Method.” European Journal of Operational Research 217 (3): 567–579.
  • Alvarez, P. A., A. Ishizaka, and L. Martinez. 2021. “Multiple-criteria Decision-Making Sorting Methods: A Survey.” Expert Systems with Applications 183: 115368. doi:10.1016/j.eswa.2021.115368.
  • Amine, M. E., J. Pailhes, and N. Perry. 2017. “Integration of Concept Maturity in Decision-Making for Engineering Design: An Application to a Solar Collector Development.” Research in Engineering Design 28: 235–250. doi:10.1007/s00163-016-0239-y.
  • Ammar, R., M. Hammadi, J. Choley, M. Barkallah, and J. Louat. 2018. “Mechatronic System Design with Manufacturing Constraints using Set-based Concurrent Engineering.” In 2018 IEEE International Systems Conference Proceedings, 726–733. IEEE: New Jersey. doi:10.1109/SYSCON.2018.8369513.
  • Ammar, R., M. Hammadi, J. Choley, M. Barkallah, J. Louat, and M. Haddar. 2017. “Architectural Design of Complex Systems Using Set-based Concurrent Engineering.” In 2017 IEEE International Systems Engineering Symposium Proceedings, 250–257. IEEE: New Jersey. doi:10.1109/SysEng.2017.8088290.
  • Araz, C., and I. Ozkarahan. 2007. “Supplier Evaluation and Management System for Strategic Sourcing Based on a new Multicriteria Sorting Procedure.” International Journal of Production Economics 106 (2): 585–606.
  • Autzen, M. 2013. “Set-based Concurrent Engineering Applications.” Master thesis, Cranfield University.
  • Avigad, G., and A. Moshaiov. 2009. “Set-based Concept Selection in Multi-Objective Problems: Optimality Versus Variability Approach.” Journal of Engineering Design 20 (3): 217–242. doi:10.1080/09544820701802279.
  • Barbosa, Jr. J. R., J. A. Lozano, and P. V. Trevizoli. 2014. “Magnetocaloric Refrigeration Research at the INCT in Cooling and Thermophysics.” Paper presented at the 15th Brazilian Congress of Thermal Sciences and Engineering. Belém, November 10–13.
  • Belton, V., and T. J. Stewart. 2002. Multiple Criteria Decision Analysis: An Integrated Approach. Netherlands: Kluwer Academic Publishers.
  • Bertoni, A. 2020. “Introducing Value Driven Design in Engineering Education: Teaching the use of Value Models in Preliminary Design.” International Journal of Technology and Design Education 30: 531–552. doi:10.1007/s10798-019-09511-x.
  • Bertoni, A., and M. Bertoni. 2019. “Supporting Early-stage Set-based Concurrent Engineering with Value Driven Design.” In 22nd International Conference on Engineering Design, 2367–2376. Cambridge University Press: Cambridge. doi:10.1017/dsi.2019.243.
  • Bhushan, N. 2007. “Set-Based Concurrent Engineering (SBCE) and TRIZ: A framework for global product development.” In the 9th annual conference of the Altshuller Institute for TRIZ studies.
  • Chan, J. 2016. “Implementing Set-based Design into Department of Defense Acquisition.” Master thesis, Naval Postgraduate School.
  • Cinelli, M., M. Kadzinski, G. Miebs, M. Gonzalez, and R. Slowinski. 2022. “Recommending Multiple Criteria Decision Analysis Methods with a new Taxonomy-Based Decision Support System.” European Journal of Operational Research 302 (2): 633–651.
  • Dickens, L., and K. Watkins. 1999. “Action Research: Rethinking Lewin.” Management Learning 30 (2): 127–140. doi:10.1177/1350507699302002.
  • Dullen, S., D. Verma, M. Blackburn, and C. Whitcomb. 2021. “Survey on set-Based Design (SBD) Quantitative Methods.” Systems Engineering 24 (5): 269–292. doi:10.1002/sys.21580.
  • Eisenmann, M., P. Grauberger, S. Üreten, D. Krause, and S. Matthiesen. 2021. “Design Method Validation: An Investigation of the Current Practice in Design Research.” Journal of Engineering Design 32 (11): 1–25. doi:10.1080/09544828.2021.1950655.
  • Fernandez, E., and J. Navarro. 2011. “A new Approach to Multi-Criteria Sorting Based on Fuzzy Outranking Relations: The THESEUS Method.” European Journal of Operational Research 213 (2): 405–413.
  • Furian, R., F. von Lacroix, K. Grote, D. Stokic, A. Correia, C. Grama, S. Faltus, and M. Maksimovic. 2011. “Knowledge Management in Set Based Lean Product Development Process.” In the 19th Advances in Production management Systems, 368–375. doi:10.1007/978-3-642-40352-1_46f.
  • Greco, S., B. Matarazzo, and R. Slowinski. 2002. “Rough Sets Methodology for Sorting Problems in Presence of Multiple Attributes and Criteria.” European Journal of Operational Research 138 (2): 247–259.
  • Haque, B., and M. James-Moore. 2004. “Applying Lean Thinking to new Product Introduction.” Journal of Engineering Design 15 (1): 1–31. doi:10.1080/0954482031000150125.
  • Ishizaka, A., and M. Gordon. 2016. “MACBETHSort: A Multiple Criteria Decision aid Procedure for Sorting Strategic Products.” Journal of the Operational Research Society 68 (1): 53–61.
  • Ishizaka, A., C. Pearman, and P. Nemery. 2012. “AHPSort: An AHP-Based Method for Sorting Problems.” International Journal of Production Research 50 (17): 4767–4784.
  • Karasakal, E., and M. Civelek. 2020. “A Distance Based Multicriteria Sorting Method Without Class Thresholds.” Journal of Multiple Criteria Decision Analysis 28 (3–4): 134–143. doi:10.1002/mcda.1731.
  • Khan, M., A. Al-Ashaab, A. Doultsinou, E. Shehab, P. Ewers, and R. Sulowski. 2011. “Set-based Concurrent Engineering Process Within the LeanPPD Environment.” In the 18th International Conference on Concurrent Engineering, edited by D. Frey, S. Fukuda, and G. Rock, 433–440. Heidelberg: Springer.
  • Lasso, S., M. Kreye, J. Daalhuizen, and P. Cash. 2020. “Exploring the Link Between Uncertainty and Project Activities in new Product Development.” Journal of Engineering Design 31 (11–12): 1–21. doi:10.1080/09544828.2020.1839743.
  • Lee, J. 1996. “Set-based Design Systems for Stampings and Flexible Fixture Workspaces.” PhD diss., University of Michigan.
  • Majerus, N. 2016. Lean-driven Innovation: Powering Product Development at the Goodyear Tire & Rubber Company. Boca Raton: CRC Press.
  • Maksimovic, M. 2013. “Lean Knowledge Life Cycle Framework to Support Lean Product Development.” Ph.D. Thesis, Cranfield University.
  • Mascitelli, R. 2011. Mastering Lean Product Development: A Practical, Event-Driven Process for Maximizing Speed, Profits, and Quality. Northridge: Technology Perspectives.
  • Maulana, M. I., G. Sherrey, A. Al-Ashaab, A. J. Martin, K. Vats, O. Omoloso, T. L. Masson, et al. 2017. “Developing Business Case Framework for the Introduction of the set-Based Concurrent Engineering: A Case Study at Jaguar Land Rover.” International Journal of Systems Applications, Engineering & Development 11: 218–317.
  • Morgan, J. M., and J. K. Liker. 2006. The Toyota Product Development System: Integrating People, Process, and Technology. New York: Productivity Press.
  • Müller, J. R., M. Panarotto, and O. Isaksson. 2019. “Connecting Functional and Geometrical Representations to Support the Evaluation of Design Alternatives for Aerospace Components.” In 22nd International Conference on Engineering Design, 1423–1432. Cambridge University Press: Cambridge. doi:10.1017/dsi.2019.243.
  • Nemery, P., and C. Lamboray. 2008. “FLOWSORT: A Flow-Based Sorting Method with Limiting or Central Profiles.” TOP an Official Journal of the Spanish Society of Statistics and Operations Research 16: 90–113.
  • Oliveira, M. S., F. A. Forcellini, J. R. Barbosa, Jr., and J. A. Lozano. 2022. “Review of Models and Frameworks for Set-based Design”. International Journal of Product Development, article in press.
  • Peixer, G. F., S. L. Dutra, R. S. Calomeno, N. M. Sá, G. Lang, J. A. Lozano, and J. R. Barbosa, Jr.. 2022a. “Influence of Heat Exchanger Design on the Thermal Performance of a Domestic Wine Cooler Driven by a Magnetic Refrigeration System.” Annals of the Brazilian Academy of Sciences 94. doi:10.1590/0001-3765202220200563.
  • Peixer, G. F., M. C. R. Silva, A. Lorenzoni, G. Hoffmann, D. dos Santos, S. L. Dutra, H. Teza, et al. 2022b. “Evaluating the Performance of a TRL-6 Magnetic Air Conditioner Prototype.” Paper presented at the 19th International Refrigeration and Air Conditioning Conference at Purdue, Purdue, July 10–14.
  • Pessoa, M. V. P., and L. G. Trabasso. 2017. The Lean Product Design and Development Journey: A Practical View. Switzerland: Springer.
  • Santos, D., S. L. Dutra, M. Ribeiro, A. M. Lorenzoni, G. M. Rosário, M. C. R. Silva, G. Hoffmann, G. F. Peixer, J. A. Lozano, and J. R. Barbosa Jr.. 2021a. “Designing a Hydraulic Management System for a Large-scale Magnetic Refrigerator.” Paper presented at the 9th IIR International Conference on Caloric Cooling and Applications of Caloric Materials, Maryland, June 07–11.
  • Santos, D., M. C. R. Silva, G. Hoffmann, A. M. Lorenzoni, G. F. Peixer, J. A. Lozano, and J. R. Barbosa Jr. 2021b. “Experimental Evaluation of the Fluid Flow Management System of a Magnetic Air Conditioner.” Paper presented at the 26th International Congress of Mechanical Engineering, Florianópolis, November 22–26. doi:10.26678/ABCM.COBEM2021.COB2021-1836
  • Schäfer, H., and D. J. Sorensen. 2010. “Creating Options While Designing Prototypes: Value Management in the Automobile Industry.” Journal of Manufacturing Technology Management 21 (6): 721–742. doi:10.1108/17410381011064012.
  • Schuh, G., S. Rudolf, and B. Luedtke. 2016. “Set-based Product Development in the Manufacturing Industry.” In the 14th International Design Conference, edited by Marjanovic, D. et al., 1377–1386. Faculty of Mechanical Engineering and Naval Architecture, Zagreb and the Design Society: Glasgow.
  • Schulze, A. 2016. “Developing Product with set-Based Design: How to set up an Idea Portfolio and a Team Organization to Establish Design Feasibility.” Artificial Intelligence for Engineering Design, Analysis and Manufacturing 30: 235–249. doi:10.1017/S0890060416000226.
  • Shafqat, A., J. Oehmen, and T. Welo. 2022. “Planning Unplanned Design Iterations Using Risk Management and Learning Strategies.” Journal of Engineering Design 33 (2): 120–143. doi:10.1080/09544828.2021.1994531.
  • Shallcross, N., G. S. Parnell, E. Pohl, et al. 2020b. “Enabling Design Decisions in set-Based Design with Multiresolution Modelling.” In Proceedings of the American Society for Engineering Management 2020 International Annual Conference, edited by H. Keathley, 1–8. Online: American Society for Engineering Management.
  • Shallcross, N., G. S. Parnell, E. Pohl, and S. R. Goerger. 2021b. “A Value of Information Methodology for Multiobjective Decisions in Quantitative set-Based Design.” Systems Engineering 24 (6): 409–424. doi:10.1002/sys.21593.
  • Shallcross, N., G. S. Parnell, E. Pohl, and E. Specking. 2020a. “Set-based Design: The State-of-Practice and Research Opportunities.” Systems Engineering 23: 557–578. doi:10.1002/sys.21549.
  • Shallcross, N., G. S. Parnell, E. Pohl, and E. Specking. 2021a. “Informing Program Management Decisions Using Quantitative Set-Based Design”. IEEE Transactions on Engineering Management 1–16. doi:10.1109/TEM.2021.3078387.
  • Smith, A., C. R. Bahl, R. Bjørk, K. Engelbrecht, K. K. Nielsen, and N. Pryds. 2012. “Materials Challenges for High Performance Magnetocaloric Refrigeration Devices.” Advanced Energy Materials 2: 1288–1318. doi:10.1002/aenm.201200167.
  • Specking, E. A., C. Whitcomb, G. S. Parnell, S. R. Goerger, E. Pohl, and N. S. A. Kundeti. 2018. “Literature Review: Exploring the Role of set-Based Design in Trade-off Analytics.” Naval Engineers Journal 130 (2): 51–62.
  • Tavcar, J., I. Demsar, and J. Duhovnik. 2018. “Engineering Change Management Maturity Assessment Model with Lean Criteria for Automotive Supply Chain.” Journal of Engineering Design 29 (4–5): 235–257. doi:10.1080/09544828.2018.1463513.
  • Toche, B., R. Pellerin, and C. Fortin. 2020. “Set-based Design: A Review and new Directions.” Design Science 6 (18): 1–41. doi:10.1017/dsj.2020.16.
  • Ward, A. C., and D. K. Sobek. 2014. Lean Product and Process Development. Lean Enterprise Institute: Cambridge.
  • Yannou, B., P. A. Yvars, C. Hoyle, and W. Chen. 2013. “Set-based Design by Simulation of Usage Scenario Coverage.” Journal of Engineering Design 24 (8): 575–603. doi:10.1080/09544828.2013.780201.
  • Yu, W. 1992. “Electre Tri: Aspects methodologiques et manual d’utilisation”. Document de Lamsade, 74.
  • Zimmermann, M., S. Königs, C. Niemeyer, J. Fender, C. Zeherbauer, R. Vitale, and M. Wahle. 2017. “On the Design of Large Systems Subject to Uncertainty.” Journal of Engineering Design 28 (4): 233–254. doi:10.1080/09544828.2017.1303664.
  • Zopounidis, C., and M. Doumpos. 1999. “A Multicriteria Decision aid Methodology for Sorting Decision Problems: The Case of Financial Distress.” Computational Economics 14 (3): 197–218.
  • Zopounidis, C., and M. Doumpos. 2002. “Multicriteria Classification and Sorting Methods: A Literature Review.” European Journal of Operational Research 138 (2): 229–246.

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