Y. Lu, K. C. Morris, and S. Frechette, Current standards landscape for smart manufacturing systems, National Institute of Standards and Technology, p.39, 2016.

E. Rauch, P. Dallasega, and D. T. Matt, The way from lean product development (LPD) to smart product development (SPD), Procedia CIRP, vol.50, pp.26-31, 2016.

M. Yoshimura, System design optimization for product manufacturing, Concurrent Engineering, vol.15, issue.4, pp.329-343, 2007.

C. P. Kartha, A comparison of ISO 9000: 2000 quality system standards, QS9000, ISO/TS 16949 and Baldrige criteria. The TQM magazine, vol.16, pp.331-340, 2004.

M. Giffin, O. De-weck, G. Bounova, R. Keller, C. Eckert et al., Change propagation analysis in complex technical systems, Journal of Mechanical Design, vol.131, issue.8, p.81001, 2009.

P. A. Jansma and R. M. Jones, Advancing the practice of systems engineering at JPL, Aerospace Conference, p.19, 2006.

, Systems Engineering Handbook: A" what to" Guide for All SE Practitioners, International Council on Systems Engineering, 2004.

J. Bloomberg and R. Schmelzer, Service orient or be doomed: how service orientation will change your business, 2006.

H. S. Jagdev and J. Browne, The extended enterprise-a context for manufacturing, Production Planning and Control, vol.9, pp.216-229, 1998.

J. M. Tien and D. Berg, Journal of systems science and systems engineering, vol.12, pp.13-38, 2003.

E. C. Honour and R. Valerdi, Advancing an ontology for systems engineering to allow consistent measurement, 2006.

, EIA-632: Processes for Engineering a System, Electronic Industries Alliance, 1999.

R. Valerdi and M. Wheaton, ANSI/EIA 632 as a standardized WBS for COSYSMO, AIAA 5th ATIO and16th Lighter-Than-Air Sys Tech. and Balloon Systems Conference, p.7373, 2005.

T. Doran, IEEE 1220: for practical systems engineering, IEEE Computer, vol.39, issue.5, pp.92-94, 2006.

T. Büthe, Engineering uncontestedness? The origins and institutional development of the International Electrotechnical Commission (IEC), Business and Politics, vol.12, issue.3, pp.1-62, 2010.

S. Rochet, Formalisation des Processus de l'Ingénierie Systèmes: Proposition d'une méthode d'adaptation des processus génériques à différents contextes d'application (Doctoral dissertation, 2007.

J. Ludewig, Models in software engineering-an introduction. Software and Systems Modeling, vol.2, pp.5-14, 2003.

A. L. Ramos, J. V. Ferreira, and J. Barceló, Model-based systems engineering: An emerging approach for modern systems, IEEE Transactions on Systems, Man, and Cybernetics, Part C (Applications and Reviews), vol.42, issue.1, pp.101-111, 2012.

C. Piaszczyk, Model based systems engineering with department of defense architectural framework, Systems Engineering, vol.14, issue.3, pp.305-326, 2011.

A. Maccalman, G. Lesinski, and S. Goerger, Integrating External Simulations Within the Model-Based Systems Engineering Approach Using Statistical Metamodels, Procedia Computer Science, vol.95, pp.436-441, 2016.

S. Friedenthal, A. Moore, and R. Steiner, A practical guide to SysML: the systems modeling language, 2014.

A. T. Bahill and R. Botta, Fundamental principles of good system design, Engineering Management Journal, vol.20, issue.4, pp.9-17, 2008.

A. P. Sage and . Rouse, Handbook of systems engineering and management, 2009.

K. J. Weiland and J. Holladay, Model-Based Systems Engineering Pathfinder: Informing the Next Steps, INCOSE International Symposium, vol.27, pp.1594-1608, 2017.

B. Boehm, A view of 20th and 21st century software engineering, Proceedings of the 28th international conference on Software engineering, pp.12-29, 2006.

B. W. Boehm, A spiral model of software development and enhancement, Computer, vol.21, issue.5, pp.61-72, 1988.

K. Forsberg and H. Mooz, The relationship of systems engineering to the project cycle, Engineering Management Journal, vol.4, issue.3, pp.36-43, 1992.

K. Forsberg and H. Mooz, Application of the 'Vee'to Incremental and Evolutionary Development, INCOSE International Symposium, vol.5, pp.848-855, 1995.

J. A. Estefan, Survey of model-based systems engineering (MBSE) methodologies, Incose MBSE Focus Group, vol.25, issue.8, pp.1-12, 2007.

S. Cranefield and M. K. Purvis, UML as an ontology modelling language, pp.46-53, 1999.

A. Smeda, A. Alti, M. Oussalah, and A. Boukerram, Cosastudio: A software architecture modeling tool, World Academy of Science, Engineering and Technology, vol.49, pp.263-266, 2009.

C. Bock, SysML and UML 2 support for activity modeling, Systems Engineering, vol.9, issue.2, pp.160-186, 2006.

O. Omg, Unified Modeling Language: Superstructure 2.1. 2. Object Management Group, 2007.

H. P. Hoffmann, SysML-based systems engineering using a model-driven development approach, 2008.

P. Roques, UML in practice: the art of modeling software systems demonstrated through worked examples and solutions, 2006.

S. Friedenthal, A. Moore, and R. Steiner, OMG Systems Modeling Language (OMG SysML?) Tutorial, INCOSE international symposium, vol.18, pp.1731-1862, 2008.

H. P. Hoffmann, Harmony/SE: A SysML Based Systems Engineering Process, 2008.

M. Cantor and R. U. Plug, Rational Unified Process for Systems Engineering Part 1: Introducing RUP SE Version 2.0. The Rational Edge, 2003.

S. R. Childers and J. E. Long, A concurrent methodology for the system engineering design process, INCOSE International Symposium, vol.4, pp.226-231, 2004.

J. C. Hsu, 4.3. 3 Applying Systems Modeling Language to A Simple Hardware System, INCOSE International Symposium, vol.16, pp.595-605, 2006.
URL : https://hal.archives-ouvertes.fr/in2p3-00416546

L. Wang, M. Izygon, S. Okon, H. Wagner, and L. Garner, Effort to Accelerate MBSE Adoption and Usage at JSC, AIAA SPACE 2016, p.5542, 2016.

F. Mhenni, J. Y. Choley, and O. Penas, A SysML-based methodology for mechatronic systems architectural design, Advanced Engineering Informatics, vol.28, issue.3, pp.218-231, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01903161

M. Hammadi, J. Y. Choley, O. Penas, A. Riviere, J. Louati et al., , 2012.

, A new multi-criteria indicator for mechatronic system performance evaluation in preliminary design level, Mechatronics (MECATRONICS), 2012 9th France-Japan & 7th Europe-Asia Congress on and Research and Education in Mechatronics (REM), 2012 13th Int'l Workshop on, pp.409-416

M. Hammadi, J. Y. Choley, O. Penas, and A. Riviere, Multidisciplinary approach for modelling and optimization of Road Electric Vehicles in conceptual design level, Electrical Systems for Aircraft, Railway and Ship Propulsion (ESARS), pp.1-6, 2012.

A. L. Ramos, J. V. Ferreira, and J. Barceló, Model-based systems engineering: An emerging approach for modern systems, IEEE Transactions on Systems, Man, and Cybernetics, Part C (Applications and Reviews), vol.42, issue.1, pp.101-111, 2012.

P. Simpkins, A. Kleinholz, and J. Maley, A practical application of MBSE-the automated parking system, 3rd Asia-Pacific Conf. Syst. Eng, 2009.

A. Soyler and S. Sala-diakanda, A model-based systems engineering approach to capturing disaster management systems, Systems Conference, 2010 4th Annual IEEE, pp.283-287, 2010.

J. Vallhagen, J. Madrid, and . So¨-derberg-r, An approach for producibility and DFM methodology in aerospace engine component development, Procedia CIRP, vol.11, pp.151-156, 2013.

A. J. Dal-forno, F. A. Forcellini, and A. C. Bornia, Lean product development: benchmarking in Brazilian companies, 22nd International Congress of Mechanical Engineering, vol.7, 2013.

M. Rossi, E. Kerga, M. Taisch, and S. Terzi, Learning methodologies to diffuse lean product development to industries, IFIP International Conference on Product Lifecycle Management, pp.287-298, 2012.
URL : https://hal.archives-ouvertes.fr/hal-01526115

T. R. Browning, Value-based product development: refocusing lean, Engineering Management Society, pp.168-172, 2000.

H. S. Abdalla, Concurrent engineering for global manufacturing, International Journal of Production Economics, vol.60, pp.251-260, 1999.

J. Wang and J. Terpenny, Interactive evolutionary solution synthesis in fuzzy set-based preliminary engineering design, J. Intell. Manuf, vol.14, issue.2, pp.153-167, 2003.

D. Raudberget, Practical applications of set-based concurrent engineering in industry, Stroj. Vestn.-J. Mech. Eng, vol.56, issue.11, pp.685-695, 2010.

M. Khan, A. Al-ashaab, A. Doultsinou, E. Shehab, P. Ewers et al., SetBased Concurrent Engineering process within the LeanPPD environment, Improving Complex Systems Today, pp.433-440, 2011.

D. K. Sobek, A. C. Ward, and J. K. Liker, Toyota's principles of set-based concurrent engineering, Sloan Manage. Rev, vol.40, issue.2, pp.67-84, 1999.

P. J. Clarkson, C. Simons, and C. Eckert, Predicting change propagation in complex design, J. Mech. Des, vol.126, issue.5, pp.788-797, 2004.

M. Khan, A. Al-ashaab, A. Doultsinou, E. Shehab, P. Ewers et al., Set-based concurrent engineering process within the LeanPPD environment, Improving Complex Systems Today, pp.433-440, 2011.

K. Madhavan, D. Shahan, and C. C. Seepersad, An industrial trial of a set-based approach to collaborative design, Proceedings of the ASME, 2008.

M. F. Borchani, R. Ammar, M. Hammadi, J. Y. Choley, N. B. Yahia et al., Mechatronic System Design using Model-Based Systems engineering and SetBased Concurrent Engineering Principles, 12th France-Japan and 10th Europe-Asia Congress on Mechatronics, pp.32-38, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02017813

R. Pedersen, M. Kvist, and N. H. Mortensen, Method for alignment of product and production concepts, DS 35: Proceedings ICED 05, the 15th International Conference on Engineering Design, pp.15-18, 2005.

M. Ikmal, I. , B. Mohd, M. , and A. , ) the set-based concurrent engineering application: a process of identifying the potential benefits in the surface jet pump case study, Procedia CIRP, vol.60, pp.350-355, 2017.

E. Kerga, M. Rossi, and M. Taisch, A serious game for introducing set-based concurrent engineering in industrial practices, Concurrent Engineering, vol.22, issue.4, pp.333-346, 2014.

A. Al-ashaab, M. Golob, and U. M. Attia, The transformation of product development process into lean environment using set-based concurrent engineering: a case study from an aerospace industry, Concurrent Engineering, vol.21, issue.4, pp.268-285, 2013.

N. Ye and H. Ishikawa, Representing and aggregating engineering quantities with preference structure for set-based concurrent engineering, Concurrent Engineering, vol.13, issue.2, pp.123-133, 2005.

B. Bagola, L'américanisation de la langue française sur Internet? Quelques aspects de la terminologie officielle et de l'usage des internautes, GLOBE: Revue internationale d'études québécoises, vol.7, pp.101-124, 2004.

S. K. Gupta, D. Das, W. C. Regli, and D. S. Nau, Current trends and future challenges in automated manufacturability analysis, 1995.

S. K. Gupta and D. S. Nau, Systematic approach to analyzing the manufacturability of machined parts, Computer-Aided Design, vol.27, issue.5, pp.323-342, 1995.

J. G. Bralla, Design for manufacturability handbook, vol.11, 1999.

O. Medani and S. M. Ratchev, A STEP AP224 agent-based early manufacturability assessment environment using XML, Int. J. Adv. Manuf. Technol, vol.27, issue.9, pp.854-864, 2006.

J. Han, M. Kang, and H. Choi, STEP-based feature recognition for manufacturing cost optimization, Comput.-Aided Des, vol.33, issue.9, pp.671-686, 2001.

D. T. Pham, J. , and C. , A concurrent design system for machined parts, Proc. Inst. Mech. Eng. Part B J. Eng. Manuf, vol.213, issue.8, pp.841-846, 1999.

Y. Chen, C. Wen, T. Ho, and C. , Extraction of geometric characteristics for manufacturability assessment, Robot. Comput.-Integr. Manuf, vol.19, issue.4, pp.371-385, 2003.

H. L. Lockett and M. D. Guenov, Graph-based feature recognition for injection molding based on a mid-surface approach, Comput.-Aided Des, vol.37, issue.2, pp.251-262, 2005.

M. Korosec, J. Balic, and J. Kopac, Neural network based manufacturability evaluation of free form machining, Int. J. Mach. Tools Manuf, vol.45, issue.1, pp.13-20, 2005.

P. V. Mahajan, Automated manufacturability evaluation and strip layout of feature-based stamped part designs, 1993.

P. G. Maropoulos, D. G. Bramall, and K. R. Mckay, Assessing the manufacturability of early product designs using aggregate process models, Proc. Inst. Mech. Eng. Part B J. Eng. Manuf, vol.217, issue.9, pp.1203-1214, 2003.

S. K. Gupta, Using manufacturing planning to generate manufacturability feedback, J. Mech. Des, vol.119, issue.1, pp.73-80, 1997.

M. Balasubramaniam, S. E. Sarma, and K. Marciniak, Collision-free finishing toolpaths from visibility data, Computer-Aided Design, vol.35, issue.4, pp.359-374, 2003.

A. Rangarajan, P. Radhakrishnan, A. Moitra, A. Crapo, and D. Robinson, , 2013.

, Manufacturability analysis and design feedback system developed using semantic framework. International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, pp.4-05

?. Chen, C. H. Occena, L. G. Fok, and S. C. , CONDENSE: a concurrent design evaluation system for product design, International Journal of Production Research, vol.39, issue.3, pp.413-433, 2001.

M. C. Frank, R. A. Wysk, and S. B. Joshi, Determining setup orientations from the visibility of slice geometry for rapid computer numerically controlled machining, Journal of manufacturing science and engineering, vol.128, issue.1, pp.228-238, 2006.

A. De-sam-lazaro, D. T. Engquist, and D. B. Edwards, An intelligent design for manufacturability system for sheet-metal parts, Concurrent Engineering, vol.1, issue.2, pp.117-123, 1993.

A. Venkatachalam, J. M. Mellichamp, and D. M. Miller, A knowledge-based approach to design for manufacturability, Journal of Intelligent Manufacturing, vol.4, issue.5, pp.355-366, 1993.

S. Prasad, T. Zacharia, and J. Babu, Design for manufacturing (DFM) approach for Productivity Improvement in Medical Equipment Manufacturing, Inernational Journal of Emerging Technology and Advanced Engineering, vol.4, issue.4, pp.79-85, 2008.

G. Molcho, Y. Zipori, R. Schneor, O. Rosen, D. Goldstein et al., Computer aided manufacturability analysis: Closing the knowledge gap between the designer and the manufacturer, CIRP Annals-Manufacturing Technology, vol.57, issue.1, pp.153-158, 2008.

R. A. Bidkar and D. A. Mcadams, Methods for automated manufacturability analysis of injection-molded and die-cast parts, vol.21, p.1, 2010.

D. V. Jacob, K. V. Ramana, and P. V. Rao, Automated manufacturability assessment of rotational parts by grinding, International journal of production research, vol.42, issue.3, pp.505-519, 2004.

M. S. Amalnik, H. A. El-hofy, and J. A. Mcgeough, An intelligent knowledge-based system for wire-electro-erosion dissolution in a concurrent engineering environment, Journal of Materials Processing Technology, vol.79, issue.1-3, pp.155-162, 1998.

M. Standard, Procedures for performing a failure mode, effects and criticality analysis. Department of Defense, 1980.

C. A. Ericson, Hazard analysis techniques for system safety, 2015.

M. Bastian, S. Heymann, and M. Jacomy, Gephi: an open source software for exploring and manipulating networks. Icwsm, pp.361-362, 2009.

M. Naidu, T. W. Nehl, S. Gopalakrishnan, and L. Wurth, A semi-integrated sensorless PM brushless drive for a 42 V automotive HVAC compressor, Industry Applications Conference, 2003. 38th IAS Annual Meeting. Conference Record of the, vol.3, pp.1435-1442, 2003.

B. Prasad and J. Rogers, A knowledge-based system engineering process for obtaining engineering design solutions, ASME 2005 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, pp.477-488, 2005.

P. B. and R. J. , An iterative decision-based technique for finding topologically feasible solution sets quickly, 50th AIAA/ASME/ASCE/AHS/ASC structures, structural dynamics, and materials conference 17th AIAA/ASME/ AHS adaptive structures conference 11th AIAA, p.2234, 2009.

B. Prasad, Concurrent Engineering Fundamentals Vol I: and Integrated Product Process Organization, 1996.

L. C. Miller, Concurrent engineering design: Integrating the best practices for process improvement. Society of manufacturing engineers, 1993.

M. Bernal, J. R. Haymaker, and C. Eastman, On the role of computational support for designers in action, Design Studies, vol.41, pp.163-182, 2015.

G. Boothroyd, P. Dewhurst, and W. A. Knight, Product Design for Manufacture and Assembly, revised and expanded, 2001.