DocumentCode
2492923
Title
Research on product variant design with uncertainty information.
Author
Xu, Xinsheng ; Fu, Linyun ; Fang, Shuiliang
Author_Institution
Coll. of Quality & Safety Eng., China Jiliang Univ., Hangzhou
fYear
2008
fDate
25-27 June 2008
Firstpage
5667
Lastpage
5671
Abstract
During mass customization, the design specification of product and the structure of product may be uncertain because of individual customerpsilas needs. In order to implement variant design effectively in this condition, a design parameter vector model was proposed to describe the design parameters of customized product. These design parameters were distinguished as known design parameters and unknown design parameters according to the result of customerpsilas customization, and were rearranged into two different parameter subsets. Then maximum likelihood estimation method was presented to infer unknown design parameters based on known design parameters and existing mature product design specification. In order to simplify the calculation process of maximum likelihood estimation, EM algorithm was introduced to deal with this calculation process. At the same time, the main iterative steps of EM algorithm were put forward. After maximum likelihood estimation process, the value of unknown design parameters can be confirmed approximately. Therefore, the design parameter data of customized product are all known. Based on parametric CAD system, all these known design parameter data can be used to drive 3D model to variant design. So a product instance which can satisfy with customerpsilas requirement can be conducted rapidly. Finally, an example was given out to verify these principles and methods.
Keywords
CAD; customer satisfaction; expectation-maximisation algorithm; mass production; maximum likelihood estimation; product customisation; product design; production engineering computing; uncertain systems; EM algorithm; customized product; design parameter vector model; individual customer needs; mass customization; maximum likelihood estimation method; parametric CAD system; product design specification; product variant design; Algorithm design and analysis; Design automation; Design engineering; Design methodology; Iterative algorithms; Mass customization; Mass production; Maximum likelihood estimation; Product design; Uncertainty; EM algorithm; design parameter uncertainty; mass customization; maximum likelihood estimation; variant design;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Control and Automation, 2008. WCICA 2008. 7th World Congress on
Conference_Location
Chongqing
Print_ISBN
978-1-4244-2113-8
Electronic_ISBN
978-1-4244-2114-5
Type
conf
DOI
10.1109/WCICA.2008.4593854
Filename
4593854
Link To Document