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Chinese Journal of Engineering Design  2017, Vol. 24 Issue (5): 487-495    DOI: 10.3785/j.issn.1006-754X.2017.05.001
    
Opportunity identification for product design innovation front end
DONG Hui-yun, LI Yan, LI Wen-qiang
School of Manufacturing Science and Engineering, Sichuan University, Chengdu 610065, China
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Abstract  

With the development and evolution of consumer culture, product meaning becomes a more and more important factor for consumers to choose what to buy in similar products. In view of the existing research for opportunity identification confined to user needs or technology development or both of the two factors, combined with the designer's guiding effect for product design innovation, the process of product design innovation front end opportunity identification was established, which was based on three factors like the product meaning, technology development and customer needs. The process of opportunity identification was as follows, the first step was to divide the user group by some standards, and then studying the user group needs respectively, choosing the key product technologies and analyzing their status, and analyzing product meaning influencing factors, according to the factors metioned above to identify the target user group and the product design objective for the group, the second step was to classify and arrange the target group needs, the key product technologies' status and product meaning expressions as the clues of product design innovation opportunity, the third step was to transform the opportunity clues which were classified and arranged in the previous step into innovation opportunities by using a variety of innovative tools and innovative thinking integration, and at last according to the constrains of the innovation opportunities which were obtained by the group needs, the key product technologies' status and product meaning clues, incorporating with the corporate philosophy, fund allocation and transfer and other factors, to choose couple of opportunities to be the opportunity program, which might be more suitable for the enterprise development. Finally, the opportunity identification for product design innovation front end process is verified by the example of the nail gun. The process has achieved the design-driven, the market-driven and technology-driven opportunity recognition, and it meets customer demand, adapts to the technology development and expresses the meaning of product at the same time, which provides solution for evolutionary and upgrade of products.



Key wordsinnovation front end      opportunity identification      product meaning      design objective      opportunity cue     
Received: 16 June 2017      Published: 28 October 2017
CLC:  TH122  
Cite this article:

DONG Hui-yun, LI Yan, LI Wen-qiang. Opportunity identification for product design innovation front end. Chinese Journal of Engineering Design, 2017, 24(5): 487-495.

URL:

https://www.zjujournals.com/gcsjxb/10.3785/j.issn.1006-754X.2017.05.001     OR     https://www.zjujournals.com/gcsjxb/Y2017/V24/I5/487


面向产品设计创新前端的机会识别

随着消费文化的发展和衍变,产品意义成为消费者购买产品的重要因素。针对现有研究局限于用户需求和技术发展,结合设计者的引导作用,提出基于产品意义、用户需求和技术发展的创新前端机会识别流程。通过划分用户群体,分别研究用户群需求、产品关键技术状态以及产品意义影响因素并确定设计目标,并将上述三方面整理归类为创新机会线索,利用多种创新工具和创新思维将整理归类的机会线索集成转换为创新机会;基于用户需求、产品意义、技术发展这三方面的约束及企业理念、资金等因素,选择更适合企业发展的几个机会点作为机会方案。最后通过射钉枪的机会识别过程,验证了该方法的可行性。该方法实现了设计驱动、市场驱动和技术驱动共同作用的机会识别,在满足用户需求、适应技术发展的同时表达了产品意义,为产品进化升级提供方案。


关键词: 创新前端,  机会识别,  产品意义,  设计目标,  机会线索 
[[1]]   李彦,李文强.创新设计方法[M].北京:科学出版社,2013:16-17. LI Yan, LI Wen-qiang. Method to creative design[M]. Beijing:Science Press, 2013:16-17.
[[2]]   HO Y C, TSAI C T. Front end of innovation of high technology industries:the moderating effect of front-end fuzziness[J]. Journal of High Technology Management Research, 2011, 22(1):47-58.
[[3]]   VAGUELY I P, JULIEN P A. Are opportunities recognized or constructed?:An information perspective on entrepreneurial opportunity identification[J]. Journal of Business Venturing, 2010, 25(1):73-86.
[[4]]   ECKHARDT J T, SHANE S A. Opportunities and entrepreneurship[J]. Journal of Management, 2003, 29(3):333-349.
[[5]]   SAGAN A. Structural model of product meaning using means-end approach[M]//Innovations in Classification, Data Science, and Information Systems. Berlin. Heidelberg:Springer, 2005:379-387.
[[6]]   SHANE S, ECKHARDT J. Handbook of entrepreneurship research[M]. Boston, MA:Springer, 2005:161-191.
[[7]]   BARON R A. Opportunity recognition:insights from a cognitive perspective[M]//Opportunity Identification and Entrepreneurial Behavior. Greenwich:Information Age Publishing, 2004:47-73.
[[8]]   CHANG D, CHEN C H. Understanding the influence of customers on product innovation[J]. International Journal of Agile Systems and Management, 2014, 7(3/4):348-364.
[[9]]   KAMPA J R, CZIULIK C. Discussion on generic innovation models and new product opportunity identification[M]//Transdisciplinary Engineering:Crossing Boundaries. Amsterdam:IOS Press, 2016:67-76.
[[10]]   檀润华,刘芳.需求进化与功能进化集成的创新设想产生研究[J].计算机集成制造系统,2011,17(10):2093-2100. TAN Run-hua, LIU Fang. Ideas generation by integrating needs evolution with functions evolution[J]. Computer Integrated Manufacturing Systems, 2011, 17(10):2093-2100.
[[11]]   万延见,李彦,李文强,等.基于认知多方法集成式产品创新设计策略及实现[J].计算机集成制造系统,2014,20(6):1267-1275. WAN Yan-jian, LI Yan, LI Wen-qiang, et al. Strategy and realization for integrated product innovation design based on cognitive multi-method[J]. Computer Integrated Manufacturing Systems, 2014, 20(6):1267-1275.
[[12]]   郭靖,檀润华,孙建广,等.设计与资源驱动的产品NDI设想产生过程研究[J].工程设计学报,2015,22(4):309-316. GUO Jing, TAN Run-hua, SUN Jian-guang, et al. Research on process of generating NDI ideas for products driven by design and resources[J]. Chinese Journal of Engineering Design, 2015, 22(4):309-316.
[[13]]   伍琴,吕健,潘伟杰,等.基于案例的文化创意产品设计方法研究[J].工程设计学报,2017,24(2):121-133. WU Qin, LÜ Jian, PAN Wei-jie, et al. Research on cultural and creative product design method based on case[J]. Chinese Journal of Engineering Design, 2017, 24(2):121-133.
[[14]]   CHESBROUGH H W. Open innovation:the new imperative for creating and profiting from technology[M]. Boston:Harvard Business Press, 2006:14-16.
[[15]]   李彦,刘红围,李梦蝶,等.设计思维研究综述[J].机械工程学报,2017,53(15):1-20. LI Yan, LIU Hong-wei, LI Meng-die, et al. Review on research of design thinking[J]. Journal of Mechanical Engineering, 2017, 53(15):1-20.
[[16]]   GUN J, TAN R, SUN J, et al. A needs analysis approach to product innovation driven by design[J]. Procedia CIRP, 2016, 39:39-44.
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