On integrating Kano's model dynamics into QFD for multiple product design
Artikel i vetenskaplig tidskrift, 2010

The Design for Six Sigma (DFSS) framework places a strong emphasis on the need to conform to the customer needs or voices early in the design phase. The key problem in the context of a Rapidly changing environment due to influx of new technology and innovation, is that things may become obsolete much faster than ever. What now delights the customer will become an expected need in the Near Future. Such dynamics is, unfortunately, very often overlooked and has not been adequately addressed in the literature. To fill in this niche, this paper proposes a methodology to advance the use of the Quality Function Deployment (QFD), As One Of The Widely accepted tools into products or services design process, with respect to Kano's model dynamics. Specifically, based on the information from Kano questionnaire, it provides a quantitative approach to observe and follow the change over time. Not only can it show how strong a certainement Kano's category changes over time, but it can also forecast the future needs, Which is useful to Tackle the Customer's preference change during product creation process. Afterwards, the forecasted customer needs can be used within an optimization framework for multiple product design. An illustrative example is provided to give some practical insights.

QFD

design for Six Sigma

optimization

Kano’s model dynamics

Författare

Hendry Raharjo

Chalmers, Teknikens ekonomi och organisation, Industriell kvalitetsutveckling

Aarnout Brombacher

Technische Universiteit Eindhoven

Thong-Ngee Goh

Universiti Kebangsaan Singapura (NUS)

Bo Bergman

Chalmers, Teknikens ekonomi och organisation, Industriell kvalitetsutveckling

Quality and Reliability Engineering International

0748-8017 (ISSN) 1099-1638 (eISSN)

Vol. 26 4 351-363

Ämneskategorier

Produktionsteknik, arbetsvetenskap och ergonomi

Data- och informationsvetenskap

Företagsekonomi

Sannolikhetsteori och statistik

Styrkeområden

Produktion

DOI

10.1002/qre.1065

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Senast uppdaterat

2018-05-03