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  • 學位論文

電腦化物場分析與解題工具

Computerized Substance-Field Analysing and Solving Tool

指導教授 : 許棟樑

摘要


在眾多萃智工具之中,物場分析與76標準解是一個以系統性誘導使用者得到創新點和解決方案的強大方法。Victor Fey, Savransky, Darell Mann, Belski都曾提出過各自的解題流程。但也正是推導理論過多且過程繁瑣,造成物場分析與76標準解的使用難度較大,無法很好地為使用者服務。 本研究發展出一套物場分析與76標準解之電腦化工具,涵蓋Belski+方法、Victor Fey方法以及Domb & Terninko方法,並加入陳鑛俊、許棟樑的最新研究“結構化物場分析方法”。在高效的解題方法、精簡的解題流程、以及電腦輔助下,本研究設計與建構了一個簡潔易用、解答準確的解決方案,顯著提高了物場分析的實用性。

並列摘要


Among all those TRIZ tools, the Substance-Field Analysis and 76 Standards is a set of important tools to lead users to innovative ideas and resolutions systematically. Victor Fey, Savransky, Darell Mann, Belski have their respective solution processes. However, because there are too many theories and most of them are too complicated, it is difficult to use the Substance-Field Analysis and 76 Standards which should have been quite useful. This research proposes a computerized Substance-Field analysis and solving tool which contains Belski+ Process, Victor Fey Method, Domb & Terninko Method, and the “Structured Substance-Field Analysis Method” develooped by Ryan Chen and D. Daniel Sheu. With the efficient solving methods, the refined process, and the computer assistance, this tool offers user a concise and precise solution and improve the practicability of substance-field analysis.

參考文獻


[1] 許棟樑. (2013)。萃智創新工具精通 中冊。亞卓國際顧問股份有限公司。
[4] 李子平. (2008)。電腦輔助質場分析解題助手。碩士論文。國立清華大學。
[3] Fey, V. & Rivin, E. (2005). Innovation on demand: new product development using TRIZ. Cambridge University Press.
[4] Savioz, P. & Erich, S. (1999). The concept of the integrated innovation process, Management of Engineering and Technology Conference, Portland. IEEE.
[5] Savransky, S. D. (2000). Engineering of creativity: Introduction to TRIZ methodology of inventive problem solving. CRC Press.

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