[1] Flipsen, B. (2005), Alternative Power Sources for Portables and Wearables, Part 1: Power Generation and Part 2: Energy Storage, Personal Energy Systems programme, Delft University of Technology, Delft (the Netherlands), ISBN: 90 5155-021-9 / 90-5155-022-7.
[2] Jansen, A.J. (2006), Alternative Energy Sources in Product Design 2000-2005, ISBN: 90-5155-029-4.
[3] Strijk, R. (2004), “Energy Consumption Issues in Portable Electronics”, In: Reichl, Griese and Pötter (ed.) Proceedings of the Electronics Goes Green 2004, Berlin (Germany), September 6-10.
[4] Johnson, M. P. (1998), “Physical Limits of Portable Power Storage”, MIT Media Lab, Cambridge, April 22.
[5] Flipsen, S. F. J., Bremer, A.P., Jansen, A. J. and Veefkind, M. (2004), “Towards a Selection Method for Alternative Energy Systems in Consumer Products”, In: Horvath, I. and Xirouchakis, P. (ed.), Proceedings of the TMCE 2004, Lausanne (Switzerland), April 13-17, ISBN: 90-5966-018-8.
[6] Flipsen, B. (2005), “Power Sources Compared: the Ultimate Truth?”, International Power Sources Symposium 2005, Brighton (Great Britain), April 19-21.
[7] Gennip, P. V., Kan, S. Y., Silvester, S. and Flipsen, B. (2006), “Power Quest, an On-line Software Tool to Find Mobile Product-Energy-System Matches”, In: Horvath and Duhovnik. (ed.), Proceedings of the TMCE 2006, Ljubljana (Slovenia), April 18-22.
[8] 蔡進譯 (2005),“超高效率太陽電池-從愛因斯坦的光電效應談起”,物理雙月刊,5,701-719。
[9] Reinders, A. (2002), “Options for Photovoltaic Solar Energy Systems in Portable Products”, In: Horvath, I. Li, P. and Vergeest, J. (ed.), Proceedings of TMCE 2002, Forth International symposium, Wuhan (P.R. China), April 22-26, ISBN: 7-5609-2682-7.
[10] Veefkind, M. (2003), “Industrial Design and PV-power, Challenges and Barriers”, In: Proceedings of the ISES Solar World Congress, Götenborg (Sweden), June 14-19.
[11] Kan, S. Y., Verwaal, M. and Broekhuizen, H. (2005), “The Use of Battery–capacitor Combinations in Photovoltaic Powered Products”, Faculty of Industrial Design Engineering, Delft University of Technology, Landbergstraat 15, 2628 CE Delft, the Netherlands.
[12] Veefkind, M. and Flipsen, B. (2004), “Gathering Data on the Energy to be Harvested with Portable Consumer Products, Method and Equipment”, In: Proceedings of the ISES EuroSun Congress, Freiburg (Germany), June 20-23, ISBN: 3-9809656-0-0 (books) / ISBN: 3-9809656-4-3 (CD-ROM).
[13] Kan, S. Y. and Strijk, R. (2005), “Towards a More Efficient Energy Use in Photovoltaic Powered Products”, IPSS 2005, Brighton (UK).
[14] 陳岡宏 (2006),太陽能紡織品發展趨勢,台北縣,紡織綜合所。ISBN: 978-986-81915-8-7
[15] Jansen, A., Leeuwen, S. V. and Stevels, A. (2000), “Design of a Fuel Cell Powered Radio, a Feasibility Study into Alternative Power Sources for Portable Products”, Proceedings of the 2000 IEEE International Symposium, p.p.155-160, May 8-10.
[16] Flipsen, S. F. J., Timmers, G., Van den Hoed, R. and Leeflang, I. (2000), “In Search for Application Fields of Fuel Cells”, In: Reichl, H. and Griese, H. (ed.), Proceedings of EGG2000, Berlin (Germany), September 11-13, ISBN: 3-8007-2569-X.
[17] Flipsen, S. F. J. and Coremans, B. (2004), “Portable Fuel Cell Performance; the Influence of Environment and User Profile”, In: Reichl, Griese and Pötter (ed.), Proceedings of the Electronics Goes Green 2004, Berlin (Germany), September 6-10.
[18] Flipsen, B. and Coremans, B. (2005), “Fuel Cells in Consumer Electronics, a Concept Study of a Fuel-cell Powered Laptop Computer”, International Power Sources Symposium 2005, Brighton (Great Britain), April 19-21.
[19] Pater, M. (2000), “A Human Powered MP3 Player”, graduation report, Sub faculty of Industrial Design Engineering, Delft University of Technology in co-operation with Philips Hong Kong, Delft, February.
[20] Jansen, A. J. and Stevels, A. L. N. (1999), “Human Power, a Sustainable Option for Electronics”, 1999 IEEE, International Symposium on Electronics and the Environment, Boston (USA), May 11-13.
[21] Jansen, A. J. (1999), “Human Powered Energy Systems in Consumer Products, Challenges Ahead”, ICED 99, International Conference on Engineering Design, Munich (Germany), August 24-26.
[22] Fridstedt, S., Jansen, A. J. and Weernink, A. J. W. (2000), “A Batteryless Remote Control for Volvo, Results of a Feasibility Study”, In: B.J. Challen and R. Stobart. (ed.), Proceedings of ISATA 2000, Dublin (Ireland), September 25-27, ISBN 1-902856-12-0.
[23] Jansen, A. J. and Slob, P. (2003), “Human Power: Comfortable One-hand Cranking”, In: Folkeson, A. et al. (ed.), Proceedings of ICED 2003, Stockholm (Sweden), August 19-21, ISBN 1-9004670-00-8.
[24] Kazazian, T. and Jansen, A. J. (2004), “Eco-design and Human-powered Products”, In: Reichl, Griese and Pötter (ed.), Proceedings of the Electronics Goes Green 2004, Berlin (Germany), September 6-10.
[25] Jansen, A. J. and Stevels, A. (2004), “Human Power, an Environmental Myth?”, In: Horvath, I. and Xirouchakis, P. (ed.), Proceedings of TMCE 2004, Lausanne (Switzerland), April 13-17, ISBN: 90-5966-018-8.
[26] Jansen, A.J. (2004), “Advances in Human-Powered Energy Systems in Consumer Products”, In: Marjanovic, D. (ed.), Proceedings of the Design 2004, Dubrovnik (Croatia), May 18 - 21, ISBN: 953-6313-61-8.
[27] Monier, V. and Mudgal, S. (2007), Preparatory Studies for Eco-design Requirements of EuPs Lot7: Battery chargers and external power supplies, Bio Intelligence Service, France, January 23.
[28] 蕭詠今 (1999),TechOptimizer訓練教材。台北。
[29] Altshuller, G. (2000), The Innovation Algorithm: TRIZ, Systematic Innovation and Technical Creativity, Technical Innovation Center, Inc., Worcester.
[30] 蕭詠今 (2006),創意快閃 - TRIZ大思維。台北縣,台海文化傳播。
[31] Chen, J. L. and Liu, C. C. (2001), “An Eco-innovative Design Approach Incorporating the TRIZ Method without Contradiction Analysis”, The Journal of Sustainable Product Design, Vol. 1, No. 4, pp. 263-272, November 4.
[32] Http://www.triz-journal.com
[33] Hipple, J. (2006), “The Use of TRIZ Principles in Consumer Product Design”, Proceedings of the Altshuller Institute’s TRIZCON 2006, Milwaukee, WI (USA).
[34] Jones, E. and Harrison, D. (2000), “Investigating the Use of TRIZ in Eco-innovation”, Proceedings of the Altshuller Institute’s TRIZCON 2000, May.
[35] 劉志成(2003),TRIZ方法改良與綠色創設計方法之研究。國立成功大學機械工程學系博士論文,台南市。[36] 簡燕輝(2008),“新修正之單一工程特性表”,(私人通訊)。
[37] Yen, S. B. and Chen, J. L. (2005), “An Eco-innovative Tool by Integrating FMEA and TRIZ Methods”, Fourth International Symposium on Environmentally Conscious Design and Inverse Manufacturing, Ecodesign05, Tokyo (Japan), December 11-14.
[38] Chang, H. T. and Chen, J. L. (2003), “Eco-Innovative Examples for 40 TRIZ Inventive Principles”, the TRIZ Journal, August.
[39] Chen, J. L. (2002), “Green Evolution Rules and Ideality Laws for Green Innovative Design of Products”, Proceedings of Going Green-Care Innovation, 4th International Symposium, Vienna (Austria), November 25-28.
[40] Jones, E., Harrison, D. and Mclaren, J. (2001), “Managing Creative Eco-innovation Structuring Outputs from Eco-innovation Projects”, The Journal of Sustainable Product Design, No. 1, pp. 27-39.
[41] Jones, E., Harrison, D. and Stanton, N. A. (2001), “The Application of TRIZ Tools in an Eco-innovation Process”, Proceedings of World Conference on TRIZ Future 2001, Bath (UK), pp. 57-78.
[42] Chen, J. L. and Liu, C. C. (2002), “Green Innovation Design of Products by TRIZ Inventive Principles and Green Evolution Rules”, 2002 International CIRP Design Seminar, Hong Kong, May 16-18.
[43] Rosman, B. (2003), “Hidden Patterns of Innovative Environmental Designed Products”, Proceedings of 14th International Conference of Engineering Design, ICED03, Stockholm, August 19-21.
[44] Mazur, G. (1995), “Theory of Inventive Problem Solving (TRIZ)”, http://www.mazur.net/triz
[45] Savransky, S. D. (2000), Engineering of Creativity: Introduction to TRIZ Methodology of Inventive Problem Solving, CRC Press LLC, Boca Raton, Florida, (USA). ISBN: 0-8493-2255-3
[46] 張祥唐(2004),整合TRIZ與可拓方法之綠色創新設計研究。國立成功大學機械工程學系博士論文,台南市。