Supporting conceptual design based on the function-behavior-state modeler

Yasushi Umeda, Masaki Ishii, Masaharu Yoshioka, Yoshiki Shimomura, Tetsuo Tomiyama

Artificial intelligence for engineering design analysis and manufacturing · 1996 · 475 citations · 9 references

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TL;DR

Conceptual design is critical for defining product features and costs, yet commercial CAD systems largely lack support for functional design, especially during the synthetic phase. This paper introduces the Function‑Behavior‑State (FBS) Modeler, a computer tool that supports functional design throughout both analytical and synthetic phases. The FBS Modeler integrates a knowledge base of functional decomposition and physical features with a Subsystem Qualitative Process Abduction System (QPAS) to model functions, behaviors, and structures during conceptual design. Its effectiveness is shown through two examples: designers’ use of the tool and the development of functionally redundant machines, illustrating a new methodology for highly reliable designs.

Abstract

Abstract The relative significance of conceptual design to basic design or detail design is widely recognized, due to its influential roles in determining the product's fundamental features and development costs. Although there are some general methodologies dealing with functions in design, virtually no commercial CAD systems can support functional design, in particular so-called synthetic phase of design. Supporting the synthetic phase of conceptual design is one of the crucial issues of CAD systems with function modeling capabilities. In this paper, we propose a computer tool called a Function-Behavior-State (FBS) Modeler to support functional design not only in the analytical phase but also in the synthetic phase. To do so, the functional decomposition knowledge and physical features in the knowledge base of the modeler, and a subsystem Qualitative Process Abduction System (QPAS) play crucial roles. Modeling scheme of function in relation with behavior and structure and design process for conceptual design in the FBS Modeler are described. The advantages of the FBS Modeler are demonstrated by presenting two examples; namely, an experiment in which designers used this tool and the design of functionally redundant machines, which is a new design methodology for highly reliable machines, as its application.

References

9