Importance determining method of personalized product attributes based on Kano-QFD integration model

被引:0
作者
Sun, Yuan-Yuan [1 ]
Liu, Fui [1 ]
Li, Li [1 ]
机构
[1] State Key Lab of Mechanical Transmission, Chongqing University, Chongqing
来源
Jisuanji Jicheng Zhizao Xitong/Computer Integrated Manufacturing Systems, CIMS | 2014年 / 20卷 / 11期
关键词
Attribute index; Customer satisfaction; Kano model; Personalized product; Quality function deployment;
D O I
10.13196/j.cims201411007
中图分类号
学科分类号
摘要
To analyze the customer requirements qualitatively and quantitatively, and to realize the mapping between demand information and personalized product attributes accurately, a new method integrating Kano model with Quality Function Deployment (QFD) model for solving importance of personalized product attributes was proposed. In this method, customer requirements were analyzed and classified with Kano model. To acquire product's customer satisfaction value, the relationship between requirements performance and customer satisfaction was analyzed with investigation, and the customer satisfaction mathematical models of attractive requirement, expected requirement, basic requirement and reverse requirement were established respectively. An adjustment function was used to adjust the importance of each requirement in QFD, which could obtain the importance of personalized product attributes. A certain personalized portrait-based product's optimized design was taken as an example to demonstrate the rationality and feasibility of the proposed method. ©, 2014, CIMS. All right reserved.
引用
收藏
页码:2697 / 2704
页数:7
相关论文
共 27 条
  • [11] Yan P., Zhao L., Wang G., Et al., Product modular configuration oriented to customer requirements analysis , Computer Integrated Manufacturing Systems, 16, 11, pp. 2341-2345, (2010)
  • [12] Hou Z., Chen S., Regulatory method for importance of customers' requirements based on Kano model , Computer Integrated Manufacturing Systems, 11, 12, pp. 1785-1789, (2005)
  • [13] Bai T., Li Z., A customer needs importance rating method based on fuzzy Kano model , China Mechanical Engineering, 23, 8, pp. 975-980, (2012)
  • [14] Chaudha A., Jain R., Singh A.R., Et al., Integration of Kano's model into quality function deployment (QFD) , International Journal of Advanced Manufacturing Technology, 53, 5, pp. 689-698, (2011)
  • [15] Hashim A.M., Dawal A.Z.M., Kano model and QFD integration approach for ergonomic design improvement , Procedia-Social and Behavioral Sciences, 57, pp. 22-32, (2012)
  • [16] Lee Y.C., Sheu L.C., Tsou Y.G., Quality function deployment implementation based on fuzzy Kano model: An application in PLM system, Computers & Industrial Engineering, 55, 1, pp. 48-63, (2008)
  • [17] Kano N., Seraku K., Takahashi F., Et al., Attractive quality and must be quality , The Journal of the Japanese Society for Quality Control, 14, 2, pp. 39-48, (1984)
  • [18] Wu M., Wang L., A continuous fuzzy Kano's model for customer requirements analysis in product development , Journal of Engineering Manufacture, 226, 3, pp. 535-546, (2012)
  • [19] Raharjo H., Brombacher A.C., Goh T.N., Et al., On integrating Kano's model dynamics into QFD for multiple product design , Quality and Reliability Engineering International, 26, 4, pp. 351-363, (2010)
  • [20] Garibay C., Gtierrez H., Figueroa A., Evaluation of a digital library by means of quality function deployment (QFD) and the Kano model, The Journal of Academic Librarianship, 36, 2, pp. 125-132, (2010)