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姓名 杜珈芸(Chia-yun Tu)  查詢紙本館藏   畢業系所 工業管理研究所
論文名稱 一整合方法設計穿戴式健康裝置之產品服務系統
(An Integrated Method for Designing Wearable Health Device-Service System)
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摘要(中) 現今科技進步,產品越來越多樣化,然而消費者大多時候需要的僅是該產品所提供之功能,而非該產品本身,而產品服務系統(Product service system, PSS)將產品及服務視為一體,使有形產品成為服務實行的平台,透過附加價值來實現可持續發展。
本研究首先透過品質機能展開(Quality Function Deployment, QFD)分析消費者對產品之需求,定義消費者需求和產品設計之間的關係。並依據QFD所分析之資料,採用設計結構矩陣(Design Structure Matrix, DSM)建構產品的基本架構和產品活動流程。
近年來,越來越多人注意自己的健康,相對的也表示健康管理越來越重要,不論醫療保健或是醫療監控領域都與每個人的生活息息相關,因此個人健康管理的應用趨勢帶動了穿戴式裝置中的行動健康裝置商機,各家廠商無不搶進智慧健康管理商機,將其作為搶攻行動健康商機。本研究以可穿戴行動智慧健康裝置產品為例,以產品服務系統為架構,透過用QFD及DSM進行分析與說明。
摘要(英) Nowadays, due to the rapid improvement of technology, the products become more diverse. However, most of the customer only need the function of the product, not the product. There is a new concept, called Product Service System (PSS), which combine product development and service system development. It regard tangible products implement a service platform through added value to achieve sustainable development.
This research applies Quality Function Deployment (QFD) to analyze the customer needs, and define the relationship between customer needs and product’s design specification. According to the data of QFD, component-based Design Structure Matrix (DSM) is applied to establish the architecture of product.
In recent years, more and more people pay attention to their health. It means that health management become increasingly important. Therefore, the trends of the application of personal health management led to the business opportunities of wearable technology device. Each company want to get into the wearable device of health management. This study will use the wearable technology device combined with health management as an application example to analysis and explanation by QFD and DSM which use PSS for the architecture.
關鍵字(中) ★ 可穿戴式科技
★ 健康管理
★ 品質機能展開
★ 設計結構矩陣
★ 產品服務系統
★ 新產品開發
關鍵字(英) ★ Wearable Health Device
★ Quality Function Deployment
★ Design Structure Matrix
★ Product Service System
★ New Product Development
論文目次 摘 要 i
ABSTRACT ii
Table of Contents iii
List of Figures iv
List of Tables v
Chapter 1 Introduction 1
1.1 Background 1
1.2 Motivation & Objectives 1
1.3 Research Framework 2
Chapter 2 Literature Review 4
2.1 Product Service System 4
2.1.1 Definition of Product Service System 4
2.1.2 Development of Product Service System 7
2.1.3 Classification of Product Service System 10
2.1.4 Designing Product Service System 11
2.2 New Product Development 13
2.2.1 New Product Development Introduction 13
2.2.2 New Product Development process 13
Chapter 3 Research Methodology 16
3.1 Methodology Framework 16
3.2 Overview of Analytical Methods 17
3.2.1 Quality Function Deployment (QFD) 18
3.2.2 Design Structure Matrix (DSM) 22
Chapter 4 Application 28
4.1 Wearable Health Device 29
4.2 Framework of PSS in Wearable Health Device 34
4.3 The Implementation of the Proposed Methodology 36
4.3.1 Analysis of QFD 36
4.3.2 Analysis of DSM 40
Chapter 5 Conclusion and Future Research 46
5.1 Conclusion 46
5.2 Future Research 47
References 48
參考文獻 Akao, Y. “QFD: The customer-driven approach to quality planning and deployment.” 1994.

Akao, Y. “Quality function deployment: integrating customer requirements into product design.” 2004.

American Supplier Institute “Quality function deployment (Service QFD): 3-day workshop.” 1994.

Barnard, R. and Shea, T. “How wearable technology will impact the future of health care.” Studies in Health Technology and Informatics, 108: 49-55, 2004.

Batallas, D. A. and Yassine, A. A.“Information leaders in product development: social network analysis of the design structure matrix.” Engineering Management, IEEE Transactions, 53(4): 570-582, 2006.

Beuren, F. H.; Gomes Ferreira M. G. and Cauchick Miguel, P. A. “Product-service systems: a literature review on integrated products and services.” Journal of Cleaner Production, 47: 222-231, 2013.

Bhuiyan, N. “A framework for successful new product development.” Journal of Industrial Engineering and Management, 4(4): 746-770, 2011.

Booz, Allen, & Hamilton. “New product management for the 1980’s.” 1982.

Bouchereau, V. and Rowlands, H. “Methods and techniques to help quality function deployment (QFD).” Benchmarking: An International Journal, 7(1): 8-20, 2000.

Browning, T. R. "Applying the design structure matrix to system decomposition and integration problems: a review and new directions." Engineering Management, IEEE Transactions, 48(3): 292-306, 2001.

Browning, T. R. and Eppinger, S. D. “Modeling impacts of process architecture on cost and schedule risk in product development.” Engineering Management, IEEE Transactions, 49(4): 2002.

Chan, L. K.; Kao, H. P.; Ng, A. and Wu, M. L. “Rating the importance of customer needs in quality function deployment by fuzzy and entropy methods.” International Journal of Production Research, 37(11): 2499-2500, 1999.

Chan, L. K. and Wu, M. L. “Quality function deployment: A literature review.” European Journal of Operational Research, 143(3): 463-497, 2002.

Chan, L. K. and Wu, M. L. “A systematic approach to quality function deployment with a full illustrative example.” The International Journal of Management Science, Omega 33: 119-139, 2005.

Chen, L. H. and Chen, C. N. “A QFD-based mathematical model for new product development considering the target market segment.” Journal of Applied Mathematics, 594150:1-594150:10, 2014.

Chen, M.; Zhang, Y.; Li, Y.; Hassan, M. M. and Alamri, A. “AIWAC: Affective interaction through wearable computing and cloud technology.” IEEE Wireless Communications, February: 20-27, 2015.

Cohen, L. “Quality function deployment: how to make QFD work for you.” Addison Wesley, Reading, Massachusetts, 1995.

Cooper, R. G. “Stage-Gate Systems: A New Tool for Managing New Products.” Business Horizons, 33: 44-53, 1990.

Durugbo, C.; Tiwari, A. and Alcock, J. R. “A review of information flow diagrammatic models for product–service systems” International Journal of Advanced Manufacturing Technology, 52(9-12): 1193-1208, 2011.

Eppinger, S. D. and Browning, T. R. “Design structure matrix methods and applications.” 2012.

Geng, X.; Chu, X.; Xue, D.; Zhang, Z. “An integrated approach for rating engineering characteristics’ final importance in product-service system development.” Computers & Industrial Engineering, 59: 585–594, 2010.

Griffin, A. and Hauser, J. R. “The voice of the customer." Marketing Science, 12(1):1–27, 1993.

Guinta, L. R. and Praizler, N. C. “The QFD book: the team approach to solving problems and satisfying customers through quality function deployment”, 1993.

Haahr, R. G.; Duun, S. B.; Toft, M. H.; Belhage, B.; Larsen, J.; Birkelund, K. and Thomsen, E. V. “An electronic patch for wearable health monitoring by reflectance pulse oximetry.” IEEE Transactions on Biomedical Circuits and Systems, 6(1): 45-53, 2012.

Hauser, J. R. and Clausing, D. “The house of quality” Harvard Business Review, 3(May/June): 63-73, 1988.

Hii, P. C. and Chung, W. Y. “A comprehensive ubiquitous healthcare solution on an android™ mobile device.” Sensors, 11:6799-6815, 2011.

Hung, H. F.; Kao H. P. and Juang Y. S. “An integrated information system for product design planning.” Expert Systems with Applications, 35: 338-349, 2008.

Jain, D. “Managing new product development for strategic competitive advantage.” 2001.

Jiao, J. and Zhang, Y. “Product portfolio identification based on association rule mining.” Computer-Aided Design, 37: 149-172, 2005.

Karniel, A. and Reich, Y. “From DSM-based planning to design process simulation: a review of process scheme logic verification issues.” Engineering Management, IEEE Transactions, 56(4): 2009.

Karsak, E. E. “Fuzzy multiple objective programming framework to prioritize design requirements in quality function deployment.” Computers & Industrial Engineering, 47(2-3): 149-163, 2004.

Kimita, K.; Shimomura, Y. and Arai, T. “Evaluation of customer satisfaction for PSS design.” Journal of Manufacturing Technology Management, 20(5): 654-673, 2009.

Krishnan, V. and Ulrich, K. T. “Product development decisions: A review of the literature.” Management Science, 47(1): 1–21, 2001.

Lymberis, A. and Dittmar, A. “Advanced wearable health systems and applications.” IEEE Engineering in Medicine and Biology Magazine, May/June: 29-33, 2007.

Maussang, N.; Zwolinski, P. and Brissaud, D. “Product-service system design methodology: from the PSS architecture design to the products specifications” Taylor & Francis, 20(4): 349-366, 2009.

Mittermeyer, S. A.; Njuguna, J. A. and Alcock, J. R. “Product – service systems in health care: case study of a drug – device combination.” International Journal of Advanced Manufacturing Technology, 52:1209 – 1221, 2011.

Mont, O. K. “Clarifying the concept of product–service system.” Journal of Cleaner Production, 10: 237–245, 2002.

Morelli, N. “Developing new product service systems (PSS): methodologies and operational tools.” Journal of Cleaner Production, 14(17):1495 –1501, 2006.

Pektas, S. T. and Pultar, M. “Modelling detailed information flows in building design with the parameter-based design structure matrix.” Design Studies, 27: 99-122, 2005.

Samah, A. A. “Integration of preference analysis methods into quality function deployment.” 2012.

Sharman, D. M. and Yassine, A. A. "Characterizing complex product architectures." Systems Engineering 7(1): 35-60, 2004.

Smith, P. and Reinertsen, D. “developing products in half the time.” 1995.

Sullivan, L. P. “Quality function deployment: a system to assure that customer needs drive the product design and production process” Quality Progress, 19(6): 39-50, 1986.

Tang, S.; Chan, W. C.; Vai, M. I. and Mak, P. U. “A front-end platform of the network-based intelligent home healthcare embedded system.” IEEE EMBS, September 1-5: 3116-3119, 2004.

Terninko, J. “Step-by-step QFD: customer-driven product design.” 2nd ED, 1997.

Tseng, C. C. and Torng, C.C. “Prioritization of product design tasks using QFD, TRIZ and DSM.” 17th International Conference on Industrial Engineering and Engineering Management, 2010.

Pantelopoulos, A. and Bourbakis, N. G. “A survey on wearable sensor-based systems for health monitoring and prognosis.” IEEE Transactions on Systems, Men, and Cybernetics—Part C: Applications and Reviews, 40(1): 1-12, 2010.

Pimmler, T. U. and Eppinger, S. D. “Integration analysis of product decompositions.” ASME 6th Conference on Design Theory and Methodology, 1994.

Williams, A. “Product service systems in the automobile industry: contribution to system innovation?” Journal of Cleaner Production, 15: 1093-1103, 2006.

Yassine, A. A. “An introduction to modeling and analyzing complex product development process using the design structure matrix (DSM) method.” Urbana, 51(9): 1-17, 2004.

Yassine, A. and Braha D. “Complex concurrent engineering and the design structure matrix Method” Concurrent Engineering: Research and Applications, 11(3):165-177, 2003.

Yu, T. L.; Yassine, A. A. and Goldberg, D. E. “A genetic algorithm for developing modular product architectures.” ASME 2003 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, American Society of Mechanical Engineers, 2003.
指導教授 高信培(Hsing-pei Kuo) 審核日期 2015-7-7
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