DECOMPOSITION PROCESS OF ENGINEERING SYSTEMS USING AXIOMATIC DESIGN AND DESIGN STRUCTURE MATRIX
Eul-Pyo Hong, Gyung-Jin Park
Abstract
Eul-Pyo Hong, Gyung-Jin Park
Abstract
One of the most active areas of engineering design today is a modular design method to design and to produce a large variety of product in a limited time and a lower cost. Decomposition of system into modules is the most important part of the modular design method. Design Structure Matrix (DSM) has been proposed for efficient modularization. However, DSM does not indicate the design flow. It is well known that a good design flow can be defined by axiomatic design. In this paper, a rational method is presented to define modules considering relationships between functional requirements and design parameters and interactions of design parameters within. The Independence Axiom of Axiomatic design and Design Structure Matrix (DSM) are utilized for efficient modularization of a design system and the design flow without feedbacks. The method is applied to the ceiling type air conditioner and the results are analyzed.
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One of the most active areas of engineering design today is a modular design method to design and to produce a large variety of product in a limited time and a lower cost. Decomposition of system into modules is the most important part of the modular design method. Design Structure Matrix (DSM) has been proposed for efficient modularization. However, DSM does not indicate the design flow. It is well known that a good design flow can be defined by axiomatic design. In this paper, a rational method is presented to define modules considering relationships between functional requirements and design parameters and interactions of design parameters within. The Independence Axiom of Axiomatic design and Design Structure Matrix (DSM) are utilized for efficient modularization of a design system and the design flow without feedbacks. The method is applied to the ceiling type air conditioner and the results are analyzed.
Key concepts: Axiomatic design, Modular programming, Design structure matrix, Axiom independence, Probabilistic design, Modular design, Engineering design process, Axiom