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Articles

Integrated design for product–service systems: a focus on multi-disciplinary interface

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Pages 5884-5902 | Received 11 Mar 2020, Accepted 02 Jul 2020, Published online: 23 Jul 2020

References

  • Abramovici, M., and F. Bellalouna. 2007. “Integration and Complexity Management Within the Mechatronics Product Development.” In Advances in Life Cycle Engineering for Sustainable Manufacturing Businesses, edited by S. Takata and Y. Umeda, 113–118. London, UK: Springer.
  • Akasaka, F., Y. Nemoto, K. Kimita, and Y. Shimomura. 2012. “Development of a Knowledge-Based Design Support System for Product-Service Systems.” Computers in Industry 63 (4): 309–318.
  • Aurich, J. C., E. Schweitzer, and C. Fuchs. 2007. “Life Cycle Management of Industrial Product-Service Systems.” In Advances in Life Cycle Engineering for Sustainable Manufacturing Business, edited by S. Takata and Y. Umeda, 171–176. London, UK: Springer.
  • Belkadi, F., J. Buergin, R. K. Gupta, Y. Zhang, A. Bernard, G. Lanza, M. Colledani, and M. Urgo. 2016. “Co-definition of Product Structure and Production Network for Frugal Innovation Perspectives: Towards a Modular-Based Approach.” In 26th CIRP Design Conference. Stockholm, Sweden.
  • Blyler, J. 2004. “Interface Management.” Instrumentation & Measurement Magazine 7 (1): 32–37.
  • Bullinger, H. J., K. P. Fähnrich, and T. Meiren. 2003. “Service Engineering—Methodical Development of New Service Products.” International Journal of Production Economics 85 (3): 275–287.
  • Elgammal, A., M. Papazoglou, B. Krämer, and C. Constantinescu. 2017. “Design for Customization: ANew Paradigm for Product-Service System Development.” In The 9th CIRP IPSS Conference. Copenhagen, Denmark.
  • Fargnoli, M., and N. Haber. 2018. “A Practical ANP-QFD Methodology for Dealing with Requirements’ Inner Dependency in PSS Development.” Computers & Industrial Engineering 127: 536–548.
  • Fargnoli, M., N. Haber, and T. Sakao. 2019. “PSS Modularisation: A Customer-Driven Integrated Approach.” International Journal of Production Research 57 (13): 4061–4077.
  • Garza-Reyes, J. A., A. S. Valls, S. P. Nadeem, A. Anosike, and V. Kumar. 2019. “A Circularity Measurement Toolkit for Manufacturing SMEs.” International Journal of Production Research 23 (23): 7319–7343.
  • Geum, Y., S. Lee, D. Kang, and Y. Park. 2011. “Technology Roadmapping for Technology-Based Product–Service Integration: A Case Study.” Journal of Engineering and Technology Management 28 (3): 128–146.
  • Goedkoop, M. J., C. J. G. van Halen, H. R. M. te Riele, and P. J. M. Rommens. 1999. Product Service Systems, Ecological and Economic Basis. Hague, Netherlands: Report for Dutch Ministries of Environment (VROM) and Economic Affairs (EZ).
  • Haber, N., and M. Fargnoli. 2019. “Prioritizing Customer Requirements in a Product-Service System (PSS) Context.” The TQM Journal 31 (2): 257–273.
  • Hehenberger, P., F. Poltschak, K. Zeman, and W. Amrhein. 2010. “Hierarchical Design Models in the Mechatronic Product Development Process of Synchronous Machines.” Mechatronics 20 (8): 864–875.
  • INCOSE. 2015. INCOSE Systems Engineering Handbook: A Guide for System Life Cycle Processes and Activities. Hoboken, USA: John Wiley & Sons.
  • Lee, S., Y. Geum, H. Lee, and Y. Park. 2012. “Dynamic and Multidimensional Measurement of Product-Service System (PSS) Sustainability: A Triple Bottom Line (TBL)-Based System Dynamics Approach.” Journal of Cleaner Production 32: 173–182.
  • Lin, Y. H., R. D. Meller, K. P. Ellis, L. M. Thomas, and B. J. Lombardi. 2014. “A Decomposition-Based Approach for the Selection of Standardized Modular Containers.” International Journal of Production Research 52 (15): 4660–4672.
  • 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.
  • Mahut, F., J. Daaboul, M. Bricogne, and B. Eynard. 2017. “Product-Service Systems for Servitization of the Automotive Industry: A Literature Review.” International Journal of Production Research 55 (7): 2102–2120.
  • Maleki, E., F. Belkadi, Y. Zhang, and A. Bernard. 2017. “Towards a New Collaborative Framework Supporting the Design Process of Industrial Product Service Systems.” In Advances on Mechanics, Design Engineering and Manufacturing, edited by B. Eynard, V. Nigrelli, S. Oliveri, G. Peris-Fajarnes, and S. Rizzuti, 139–146. Cham, Switzerland: Springer.
  • Matschewsky, J., M. L. Kambanou, and T. Sakao. 2018. “Designing and Providing Integrated Product-Service Systems–Challenges, Opportunities and Solutions Resulting From Prescriptive Approaches in Two Industrial Companies.” International Journal of Production Research 56 (6): 2150–2168.
  • Maussang, N., P. Zwolinski, and D. Brissaud. 2009. “Product-Service System Design Methodology: From the PSS Architecture Design to the Products Specifications.” Journal of Engineering Design 20 (4): 349–366.
  • McKay, A., and S. Kundu. 2014. “A Representation Scheme for Digital Product Service System Definitions.” Advanced Engineering Informatics 28 (4): 479–498.
  • Medini, K., and X. Boucher. 2019. “Specifying a Modelling Language for PSS Engineering–a Development Method and an Operational Tool.” Computers in Industry 108: 89–103.
  • Moeuf, A., S. Lamouri, R. Pellerin, S. Tamayo-Giraldo, E. Tobon-Valencia, and R. Eburdy. 2020. “Identification of Critical Success Factors, Risks and Opportunities of Industry 4.0 in SMEs.” International Journal of Production Research 58 (5): 1384–1400.
  • Mont, O. 2002. “Clarifying the Concept of Product Servicesystems.” Journal of Cleaner Production 10 (3): 237–245.
  • Morlock, F., T. Dorka, and H. Meier. 2014. “Concept for a Performance Measurement Method for the Organization of the IPS2 Delivery.” In 6th CIRP Conference on Industrial Product-Service Systems. Windsor, Canada.
  • Mourtzis, D., S. Fotia, and M. Doukas. 2015. “Performance Indicators for the Evaluation of Product-Service Systems Design: A Review.” In Advances in Production Management Systems: Innovative Production Management Towards Sustainable, edited by S. Umeda, M. Nakano, H. Hibino, D. Kiritsis, and G. von Cieminski, 592–601. Cham, Switzerland: Springer.
  • Sakao, T., and M. Lindahl. 2015. “A Method to Improve Integrated Product Service Offerings Based on Life Cycle Costing.” CIRP Annals 64 (1): 33–36.
  • Sakao, T., Y. Shimomura, E. Sundin, and M. Comstock. 2009. “Modeling Design Objects in CAD System for Service / Product Engineering.” Computer-Aided Design 41 (3): 197–213.
  • Sakao, T., W. Song, and J. Matschewsky. 2017. “Creating Service Modules for Customising Product/Service Systems by Extending DSM.” CIRP Annals - Manufacturing Technology 66 (1): 21–24.
  • Shimomura, Y., Y. Nemoto, T. Ishii, and T. Nakamura. 2018. “A Method for Identifying Customer Orientations and Requirements for Product–Service Systems Design.” International Journal of Production Research 56 (7): 2585–2595.
  • Shimomura, Y., and T. Tomiyama. 2002. “Service Modeling for Service Engineering.” In International Working Conference on the Design of Information Infrastructure Systems for Manufacturing. Osaka, Japan.
  • Song, W. 2019. “Modular Configuration for Customizable PSS.” In Customization-0riented Design of Product-Service System, edited by W. Song, 133–175. Singapore, Singapore: Springer.
  • Tan, A. R., T. C. McAloone, and C. Gall. 2007. “Product/Service System Development - an Explorative Case Study in a Manufacturing Firm.” In International Conference on Engineering Design.
  • Tao, F., J. Cheng, Q. Qi, M. Zhang, H. Zhang, and F. Sui. 2018. “Digital Twin-Driven Product Design, Manufacturing and Service with Big Data.” The International Journal of Advanced Manufacturing Technology 94 (9–12): 3563–3576.
  • Tran, T. A., and J. Y. Park. 2014. “Development of Integrated Design Methodology for Various Types of Product – Service Systems.” Journal of Computational Design and Engineering 1 (1): 37–47.
  • Tukker, A. 2004. “Eight Types of Product–Service System: Eight Ways to Sustainability? Experiences From SusProNet.” Business Strategy and the Environment 13 (4): 246–260.
  • VDI 2206. 2003. Design Handbook 2206. Design Methodology for Mechatronic Systems. Düsseldorf: VDI Publishing Group.
  • Visnjic, I., M. Jovanovic, and A. Neely. 2017. “What Brings the Value to Outcome-Based Contract Providers? Value Drivers in Outcome Business Models.” International Journal of Production Economics 192: 169–181.
  • Wang, P., X. Ming, D. Li, F. Kong, L. Wang, and Z. Wu. 2011. “Status Review and Research Strategies on Product-Service Systems.” International Journal of Production Research 49 (22): 6863–6883.
  • Weber, C., M. Steinbach, C. Botta, and T. Deubel. 2004. “Modelling of Product-Service Systems (PSS) Based on the PDD Approach.” In International Design Conference. Dubrovnik, Croatia.
  • Welp, E. G., H. Meier, T. Sadek, and K. Sadek. 2008. “Modelling Approach for the Integrated Development of Industrial Product-Service Systems.” In The 41st CIRP Conference on Manufacturing Systems. Tokyo, Japan.
  • Wong, M. 2004. Implementation of Innovative Product Service-Systems in the Consumer Goods Industry. Cambridge, UK: Cambridge University.
  • Yoon, B., S. Kim, and J. Rhee. 2012. “An Evaluation Method for Designing a New Product-Service System.” Expert Systems with Applications 39 (3): 3100–3108.
  • Zhang, Y., and A. Bernard. 2014. “An Integrated Decision-Making Model for Multi-Attributes Decision-Making (MADM) Problems in Additive Manufacturing Process Planning.” Rapid Prototyping Journal 20 (5): 377–389.
  • Zheng, C., B. Eynard, X. Qin, J. Li, J. Bai, S. Gomes, and Y. Zhang. 2019. “A Requirement-Driven Architecture Definition Approach for Conceptual Design of Mechatronic Systems.” Integrated Computer-Aided Engineering 26 (4): 361–382.
  • Zheng, C., J. Le Duigou, M. Bricogne, and B. Eynard. 2016. “Multidisciplinary Interface Model for Design of Mechatronic Systems.” Computers in Industry 76 (2): 24–37.
  • Zheng, C., X. Qin, B. Eynard, J. Li, J. Bai, Y. Zhang, and S. Gomes. 2019. “Interface Model-Based Configuration Design of Mechatronic Systems for Industrial Manufacturing Applications.” Robotics and Computer-Integrated Manufacturing 59: 373–384.

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