The design process and a methodology for system integrity

Author:

Raine J K1,Pons D2,Whybrew K1

Affiliation:

1. University of Canterbury Department of Mechanical Engineering Christchurch, New Zealand

2. Christchurch Polytechnic Department of Mechanical Engineering Christchurch, New Zealand

Abstract

Commonly used models of the design process do not reflect concurrent engineering, the influence of computer-assisted design on the design process, or the recursive divergent-convergent thinking processes at different levels of detail from whole system to subsystem to component design. Also, these models do not illustrate the process of establishing functional integrity in the design of multicomponent systems where multiple interdependencies are present. This paper outlines design model developments by the authors and introduces a methodology for designing for system integrity and minimizing risk from early in the conceptual phase, where uncertainty is high. The process involves probabilistic reasoning in propagating both qualitative and quantitative effects of changes or uncertainty in component or subsystem specifications through system models and determining the integrity of the design from multiple viewpoints.

Publisher

SAGE Publications

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Reference21 articles.

1. Shaw A., Aitchison D. R., Raine J. K., Whybrew K. Summary of results of the survey, ‘Rapid Product Development for World Class Manufacturing’. Technical Report 58, Department of Mechanical Engineering, University of Canterbury, May 2000, 23 pp.

2. Whybrew K., Raine J. K., Dallas T. P. The application of design phase diagrams in the management of design of telecommunications products. In Proceedings of the 12th International Conference on Engineering Design, Munich, 24–26 August 1999, Vol. 3, pp. 1519–1524.

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