Searching for just a few words should be enough to get started. If you need to make more complex queries, use the tips below to guide you.
Article type: Research Article
Authors: Coatanéa, Erica; * | Nonsiri, Sarayuta | Roca, Ricardob | Mokammel, Faisala | Kruck, Julianec | Christophe, Françoisd
Affiliations: [a] Department of Mechanical Engineering and Integrated Systems, Tampere University of Technology, Tampere, Dynavio Cooperative, Espoo, Finland and Aalto University, Espoo, Finland | [b] The Johns Hopkins University Applied Physics Laboratory | [c] Karlsruhe University, Karlsruhe, Germany | [d] Department of Computing Science, Tampere University of Technology, Tampere, Finland
Correspondence: [*] Corresponding author. [email protected]
Abstract: Time pressure imposed to the engineering design process is one fundamental constraint pushing engineers to rush into known solutions, to avoid analysing properly the environment of a design problem, to avoid modelling design problems and to take decision based on isolated evidences. Early phases in particular have to be kept short despite the large impact of decisions taken at this stage. Significant efforts are currently spent within different engineering communities to develop a model-based design approach adapted to conceptual stages. Developing such type of models is also challenging due to the fuzziness of the information and due to the complexity of the concepts and processes manipulated at this stage. Currently few support tools are really capable of really supporting an analysis of the early design concepts and architectures. Simultaneously the approach should be fast, easy to use and should provide a real added-value to efficiently support the decision and the design process. The present article is presenting a framework based on a progressive transformation of the design concepts. The final material generated by this transformation process is an oriented graph with different types of classified variables. This graph can be processed as described in the article to automatically exhibit the conflicts or contradictions present in the design concept architecture. The article is proposing two main contributions which are a real move toward model development at conceptual stage and the possibility to process those models to detect solution weaknesses. The discussion is presenting further developments and possibilities associated with this method.
Keywords: Conceptual design, model-based design, conflicts, contradictions, TRIZ, graph theory, dimensional analysis, qualitative physics
DOI: 10.3233/jid-2015-0001
Journal: Journal of Integrated Design and Process Science, vol. 19, no. 1, pp. 25-46, 2015
IOS Press, Inc.
6751 Tepper Drive
Clifton, VA 20124
USA
Tel: +1 703 830 6300
Fax: +1 703 830 2300
[email protected]
For editorial issues, like the status of your submitted paper or proposals, write to [email protected]
IOS Press
Nieuwe Hemweg 6B
1013 BG Amsterdam
The Netherlands
Tel: +31 20 688 3355
Fax: +31 20 687 0091
[email protected]
For editorial issues, permissions, book requests, submissions and proceedings, contact the Amsterdam office [email protected]
Inspirees International (China Office)
Ciyunsi Beili 207(CapitaLand), Bld 1, 7-901
100025, Beijing
China
Free service line: 400 661 8717
Fax: +86 10 8446 7947
[email protected]
For editorial issues, like the status of your submitted paper or proposals, write to [email protected]
如果您在出版方面需要帮助或有任何建, 件至: [email protected]