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http://dx.doi.org/10.9708/jksci.2021.26.06.063

Development of the Unmanned Automatic Test System for a Portable Detector using TRIZ TESE  

Chang, YuShin (Division of Research and Development, Hanwha Systems)
Abstract
This paper propose an development of the unmanned automatic test system for a portable detector using TRIZ Methodology. A new development scheme among of the unmanned automatic test system configurations was obtained after application of the TESE(Trends of Engineering System Evolution) one of the TRIZ methods. Using Pugh matrix drives some improving ideas. The key idea of this unmanned automatic test system scheme is to minimize whole test procedure time of each portable detector and to maximize the amount of portable detectors at once. Between the before and the after configurations of the 3D mechanical model find out improvements. This paper shows that the proposed development scheme improves the test performance efficiency compared to previous scheme.
Keywords
Unmanned automatic test system; Portable detector; TRIZ; TESE; Pugh matrix;
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Times Cited By KSCI : 1  (Citation Analysis)
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1 Jung San Cho, "Design of Attachments for Dual Arm of Disaster-Responding Special Fuction Machinery by TRIZ," Journal of Drive and Control, Vol.15, No.3, pp.29-35, 2018. http://dx.doi.org/10.7839/ksfc.2018.15.3.029   DOI
2 Il Seong Hong, Seung Jun Shin, Min Kyu Lee, "A Method of TRIZ and Portfolio-based Core Technology Identification for Open R&D Innovation in Small and Medium-sized Enterprises," Korea Society of Innovation, Innovation Studies, Vol.13, No.4, pp.65-97, 2018.
3 Jung Suk Hyun, Chan Jung Park, "Principles and Cases of Contradiction Solving for Creative Innovation," Korea Business Review, Vol.22, No.2, pp.99-126, 2018. http://dx.doi.org/10.17287/kbr.2018.22.2.99   DOI
4 Jong Hyeong Kim, Hyung Jik Kim, Jae Nam Jung, Dong Hee Jang, Hyuk Dong Kwon, "Portable-size Drone Design Using TRIZ Method," Journal of the Korean Society of Manufacturing Technology Engineers, Vol.26, No.2, pp.230-237, 2017. http://doi.org/10.7735/ksmte.2017.26.2.230   DOI
5 Daeun Hwang, Hunwook Nam, Agnes Jihae Kim, O Seong Kweon, "A Study on the Correlation Between TRIZ Principle and Universal Design : Focused on the Case of Universal Design Project," Korea Society of Design Science, Archives of Design Research, Vol.31, No.3, pp.121-131, 2018. http://dx.doi.org/10.15187/adr.2018.08.31.3.121   DOI
6 Jaejung Kang, Jin Ock Kim, Lim Chul, "A Solution of Channel Conflict and Showrooming in Multi Channel - Application of Thinking Process and TRIZ Principles," The Journal of Internet Electronic Commerce Research, Vol.18, No.6, pp.395-408, 2018.   DOI
7 Eun Gyung Kim, Bon Chul Koo, Young Jin Kim, "Development of a Software Do-TRIZ for TRIZ Learning," Journal of the Korea Institute of Information and Communication Engineering, Vol.19, No.8, pp.1883-1892, 2015. http://dx.doi.org/10.6109/jkiice.2015.19.8.1883   DOI
8 Ho Jong Kim, "Successful Case of Technical Problem Solution using Practical TRIZ," Conference of CAD/CAM Society for Computational Design and Engineering, pp.313-316, 2007.
9 H.J.Kim, TRIZ : An other name of the Creativity, Infinitybooks, 2009
10 Jiyoung Jung, Jintae Kim, Sooyong Park, "Creative Resolution for Requirement Conflict Using Conflict Resolution Theory of TRIZ," Journal of KISS : Software and Applications, Vol.37, No.5, 411-415, 2010.
11 Jeon Hyun Joo, Youn Ho Chang, Oh Jeong Seok, "Smartphone UX Design Process using TRIZ Methodology," KSDS Conference Proceeding, pp.142-143, 2016.
12 Isak Bukhman, Technology for Innovation, TRIZ, GS Intervision, 2013
13 Y. S. Chang, H. J. Huh, "Conflict Resolution Using TRIZ for the Land Mine Detectable Test Platform Control System," Conference of KSPE (Korean Society for Precision Engineering), pp.122-123, 2015.
14 Hui Geon Hwang, Won Jee Chung, Sang Suk Sul, Dae Young Kim, "A Study on Variable Mold for Improving the Forging Process of Transition Nozzle using TRIZ and DEFORM," Journal of the Korean Society of Manufacturing Process Engineers, Vol.19, No.6, pp.29-35. 2020. http://doi.org/10.14775/ksmpe.2020.19.06.029   DOI
15 Lim Tai Hun, "Interpretation of Formative Elements of Refrigerator Design Through TRIZ Principles," The Korean Society of Science and Art, Vol.38, No.4, pp.327-337, 2020. http://doi.org/10.17548/ksaf.2020.09.30.327   DOI
16 Jae Young Han, Kwon Hee Kim, "Design Improvement of a Product with Variable Curvature Based on TRIZ," Journal of the Korean Society for Precision Engineering," Vol.34, No.10, pp.715-721, 2017. http://doi.org/10.7736/kspe.2017.34.10.715   DOI
17 G. Altshuller, "The innovation algorithm: TRIZ, Sysematic innovation, and technical creativity." Technical innovation center, 1999.
18 J.Y. Lee, "The TRIZ Theory and it's Application," Korea Academy Industrial Cooperation Society, Vol.2, No.2, pp.25-31, 2001.
19 S.K.Park and B.J.Kim(T), Kalevi Rantanen(W), TRIZ Simplified, GS Intervision, 2012
20 Taeseok Jin, "Evolutionary Analogy of 6-Step Problem Solving Method Based on TRIZ," Journal of The Korean Society of Industry Convergence, Vol.23, No.1, PP.33-39, 2020.   DOI
21 Victor. F. and Eugene. R., "Innovation on Demand : New Product Development Using TRIZ," Cambridge University Press, 1st Ed., 2005.