Multiple viewpoint modelling framework enabling integrated product–process design

Springer Science and Business Media LLC - Tập 4 Số 4 - Trang 269-280 - 2010
Frédéric Demoly1, Davy Monticolo2, Benoît Eynard3, Louis Rivest4, Samuel Gomes5
1Swiss Federal Institute of Technology in Lausanne (EPFL)#TAB#
2ERPI Laboratory, National Polytechnic Institute of Lorraine
3Université de Technologie de Compiègne-UTC, Centre Pierre Guillaumat
4École de Technologie Supérieure (ETS)#TAB#
5Universite de technologie de Belfort-Montbeliard (UTBM)

Tóm tắt

Từ khóa


Tài liệu tham khảo

Wiendahl H.-P., ElMaraghy H.A., Nyhuis P., Zäh M.F., Windahl H.-H., Duffie N., Brieke M.: Changeable manufacturing—classification, design and operation. Ann. CIRP 56(2), 783–809 (2007)

Subrahmania, E.: The NDIM approach to creating design support systems. DETC’97/DTM-3873 ASME Technical Conference, Sacramento, California, September (1997)

Srinivasan, V.: An integration framework for product lifecycle management. Comput. Aided Des. (in press) (2009)

Boothroyd G., Dewhurst P., Knight W.: Product Design for Manufacture and Assembly. pp. 698 s, 2nd edn. Marcel Dekker, New York (2002)

Andreasen M.M., Kähler S., Lund T.: Design for Assembly. pp. 211 s 2nd edn. IFS Publications, London (1983)

Huang G.Q., Lee S.W., Mak K.L.: Web-based product and process data modeling in concurrent “design for X”. Robot. Comput. Integr. Manuf. 15, 53–63 (1999)

Demoly, F., Yan, X.-T., Eynard, B., Rivest, L., Gomes, S.: An assembly-oriented design framework for product structure engineering and assembly sequence planning. Robot. Comput. Integr. Manuf. (corrected proof). doi: 10.1016/j/rcim.2010.05.010 (2010)

SysML Partners: Systems Modeling Language: SysML. http://www.omg.org/cgi-bin/doc?ad/04-08-03 (2004)

Huang, G.Q. (eds.): Design for X-Concurrent Engineering imperatives. Chapman & Hall, London, pp. 153–172. ISBN 0-402-78750-4 (1996)

Redford A., Chal J.: Design for Assembly, Principle and Practice. McGraw-Hill Book Company, Europe (1994)

Miyakawa, S., Shigemura, T.: The Hitachi assemblability evaluation method (AREM). In: Proceedings of the Japan Society of Mechanical Engineering Conference on Manufacturing Systems and Environment Looking Toward 21st Century, pp. 277–282 (1990)

Lucas Engineering Systems Ltd: Design for manufacture and assembly practitioners manual. Version 10 (1993)

Stone R.B., McAdams D.A., Kayyalethekkel V.J.: A product architecture-based conceptual DFA technique. Des. Stud. 25, 301–325 (2004)

Barnes C.J., Jared G.E.M., Swift K.G.: Decision support for sequence generation in an assembly oriented design environment. Robot. Comput. Integr. Manuf. 20(4), 289–300 (2004)

Whitney, D.E., Nevins, J.L., De Fazio, T.L.: The strategic approach to product design. In: Design and Analysis of Integrated Manufacturing Systems, pp. 200–223 (1988)

Lee S., Shin Y.G.: Assembly co-planner: cooperative assembly planner based on subassembly extraction. J. Int. Manuf. 4(3), 183–198 (1993)

Pu, P.: An assembly sequence generation algorithm using case-based search techniques. In: IEEE International Conference on Robotics Automation, Nice, France, pp. 2425–2429 (1992)

Daabub A.M, Abdalla H.S.: A computer-based intelligent system for design for assembly. Comput. Ind. Eng. 37, 111–115 (1999)

Mascle C.: Feature-based assembly model for integration in computer-aided assembly. Robot. Comput. Integr. Manuf. 18, 373–378 (2002)

Zha X.F., Lim S.Y.E., Fok S.C.: Integrated intelligent design and assembly planning a survey. Int. J. Adv. Manuf. Technol. 14, 664–685 (1998)

Yan, X-T., Eynard, B., Ion, W.J. (eds): Global Design To Gain A Competitive Edge: An Holistic And Collaborative Design Approach Based On Computational Tools. Springer, Berlin (2008)

Gero J.S.: Design prototypes: a knowledge representation scheme for design. AI Mag. 11, 26–36 (1990)

Rosenman M.A., Gero J.S.: Modelling multiple views of design objects in a collaborative CAD environement. Comput. Aid. Des. 28(3), 193–205 (1996)

Gero J.S., Kannengiesser U.: A Function-Behavior-Structure ontology of processes. Artif. Intell. Eng. Des. Anal. Manuf. 21(2), 379–391 (2007)

Labrousse M., Bernard A.: FBS-PPRE, an enterprise knowledge lifecycle model. In: Bernard, A., Tichkiewitch, S. (eds) Methods and Tools for Effective Knowledge Life-Cycle-Management, pp. 285–305. Springer, Berlin (2008)

Umeda Y., Ishii M., Yoshioka M., Shimomura Y., Tomiyama T.: Supporting conceptual design based on the function-behavior-state modeler. Artif. Intell. Eng. Des. Anal. Manuf. 10(4), 275–288 (1996)

Le Moigne, J-L.: La théorie du Système Général, théorie de la modélisation. P.U.F., Paris, 1977, 3ième édition mise à jour (1990)

Eversheim W., Rozenfeld H., Bochtler W., Graessler R.: A methodology for an integrated design and process planning based in concurrent engineering reference model. Ann. CIRP 44(1), 403–406 (1995)

Tichkiewitch, S.: Specifications on integrated design methodology using a multi-view product model. In: System Design and Analysis Conference, Montpellier, pp. 101–108 (1996)

Tichkiewitch S., Véron M.: Integration of manufacturing processes in design. Ann. CIRP 47(1), 99–102 (1998)

Gomes, S., Sagot, J-C.: A concurrent engineering experience based on a cooperative and object oriented design methodology. In: Best papers Book from 3rd International Conference on Integrated Design and Manufacturing in Mechanical Engineering. Kluwer, Dordrecht (2002)

Lohse, L., Hirani, H., Ratchev, S., Turitto, M.: An ontology for the definition and validation of assembly processes for evolvable assembly systems. In: The 6th IEEE International Symposium on Assembly and Task Planning: From Nano to Micro Assembly and Manufacturing, pp. 242–247 (2005)

Nederbragt, W., Allen, R., Feng, S., Kaing, S., Sriram, R., Zhang, Y.: The NIST design/process planning integration project. In: Proceedings of the Artifical Intelligence and Manufacturing Workshop, pp. 135–139 (1998)

Zha X.F., Du H.: A PDES/STEP-based model and system for concurrent integrated design and assembly planning. Comput. Aid. Des. 34, 1087–1110 (2002)

Fenves, J.: A core product model for representing design information, USA. National Institute of Standards and Technology, NISTIR 6736, Gaithersburg, MD 20899, USA (2001)

Sudarsan R., Fenves S.J., Sriram R.D., Wang F.: A product information modeling framework for product lifecycle management. Comput. Aid. Des. 37, 1399–1411 (2005)

Noël F., Roucoules L.: The PPO design model with respect to digital enterprise technologies among product life cycle. Int. J. Comput. Integr. Manuf. 21(2), 139–145 (2008)

Huang H.Z., Gu Y-K.: Development mode based on integration of product models and process models. Concurr. Eng. Res. Appl. 14(1), 27–34 (2005)

Bronsvoort W.F., Noort A.: Multiple-view feature modeling for integral product development. Comput. Aid. Des. 36, 929–946 (2004)

Bouikni N., Rivest L., Desrochers A.: A multiple views management system for concurrent engineering and PLM. Concurr. Eng. Res. Appl. 16(1), 61–72 (2008)

INCOSE-TP-2003-016-02: Systems engineering handbook. INCOSE Technical Product (2004)

Bock C.: Systems engineering in the product lifecycle. Int. J. Prod. Dev. 2(1), 123–137 (2005)

Thimm, G., Lee, S.G., Ma, Y.-S.: Towards unified modeling of product life-cycles. Comput. Ind. 57, pp. 331–341 (2006)

Koning H., van Vliet H.: A method for defining IEEE Sdt 1471 viewpoints. J. Syst. Softw. 79, 120–131 (2006)

Agarwal S., Handschuh S., Staab S.: Annotation, composition and invocation of semantic web services. J. Web Semant. 2, 31–48 (2004)