Yıl: 2020 Cilt: 23 Sayı: 4 Sayfa Aralığı: 1153 - 1166 Metin Dili: İngilizce DOI: 10.2339/politeknik.481241 İndeks Tarihi: 17-06-2021

Evaluation of 3D modeling programs for industrial design use

Öz:
In this article, Analytical Hierarchy Process (AHP) which had been used for evaluation purposes in numerous theoretic and practicalfields in academic to industrial circles is investigated and the use of the method is explained in detail. The method is thendemonstrated on a field study in which 3D modeling programs are evaluated fur suitability to the industrial design field. At theresults section, the obtained findings are explained, interpreted and methods possible benefits to the industrial design field is argued.
Anahtar Kelime:

3B Modelleme Programlarının Endüstri Tasarımında Kullanım Açısından Değerlendirilmesi

Öz:
Bu makalede, akademik ve sanayide teorik ve uygulamalı birçok konuda değerlendirme amacı ile kullanılan, karşılaştırılan alternatifler arasında yapılan ikili karşılaştırmalara dayalı olarak çalışan analitik hiyerarşi yöntemi(AHY, AHP: Analytical Hierarchy Process) incelenmekte ve yöntemin kullanımı detaylı şekilde açıklanmaktadır. Yöntem, bilgisayar destekli tasarım(BDT) ve 3B modelleme programlarının endüstri tasarımı alanında kullanıma uygunluğunun değerlendirildiği bir alan çalışmasıyla uygulamalı olarak sunulmaktadır. Sonuç bölümünde, çalışmada elde edilen bulgular açıklanmakta, yorumlanmakta ve yöntemin endüstri tasarımı alanına getirebileceği katkılar tartışılmaktadır.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • [1] T.L. Saaty, "The Analytic Hierarchy Process", McGraw-Hill, New York, (1980).
  • [2] Z. Ayag, "A combined fuzzy AHP-simulation approach to CAD software selection", International Journal of General System,. 39(7): 731–756, (2010).
  • [3] K.L. Narayan, K.M. Rao, M. Sarcar, "Computer Aided Design and Manufacturing", Prentice Hall of India, ISBN-978-81-203-3342-0, New Delhi, (2008).
  • [4] M. Evans, "The Potential of Computer Aided Industrial Design to Act as a Catalyst for Greater Professional Collaboration", ASIS Midyear Proceedings in Collaboration Across Boundaries: Theories, Strategies, and Technology, Orlando, Florida, (1998).
  • [5] J.A.W. Mulebeke, L. Zheng, "Analytical network process for software selection in product development: A case study", Journal of Engineering and Technology Management, 23(4): 337–352, (2006).
  • [6] A.S. Jadhav, R.M. Sonar, "Evaluating and selecting software packages: A review", Information and Software Technology, 51(3): 555–563, (2009).
  • [7] L. Xu, Z. Li, S. Li, F. Tang, "A decision support system for product design in concurrent engineering", Decision Support Systems, 42(4): 2029–2042, (2007).
  • [8] J.H. Myers, M.I. Alpert, "Determinant buying attributes: Meaning and Measurement", Journal of Marketing, 32: 13–20, (1968).
  • [9] O.S. Vaidya, S. Kumar, "Analytic hierarchy process: An overview of applications", European Journal of Operational Research, 169(1): 1–29, (2006).
  • [10] S.C. Cheng, T.C. Chou, C.L. Yang, H.Y. Chang, "A semantic learning for content-based image retrieval using analytical hierarchy process", Expert Systems with Applications, 28(3): 495–505, (2005).
  • [11] V.S. Lai, R.P. Trueblood, B.K. Wong, "Software selection: A case study of the application of the analytical hierarchical process to the selection of a multimedia authoring system", Information & Management, 36(4): 221–232, (1999).
  • [12] H. Min, "Location analysis of international consolidation terminals using the analytic hierarchy process", Journal of Business Logistics, 15(2): 25, (1994).
  • [13] H.Ü. Özden, "Analitik Hiyerarşi Yönetimi İle İlkokul Seçimi", Marmara Üniversitesi İkdisadi ve İdari Birimler Dergisi, 24(1): 299–320, (2008).
  • [14] A. Koçak, "Yazılım Seçiminde Analitik Hiyerarşi Yöntemi Yaklaşımı ve Bir Uygulama", Ege Academic Review, 3(1): 67–77, (2003).
  • [15] T.L. Saaty, "Decision making with the analytic hierarchy process", International Journal of Services Sciences, 1(1): 83, (2008).
  • [16] S.C. Cheng, M.Y. Chen, H.Y. Chang, T.C. Chou, "Semantic-based facial expression recognition using analytical hierarchy process", Expert Systems with Applications, 33(1): 86–95, (2007).
  • [17] F. Zahedi, "The Analytic Hierarchy Process: A Survey of the Method and Its Applications", Interfaces, 16(4): 96–108, (1986).
  • [18] T.L. Saaty, "The analytic hierarchy process: what it is and how it is used", Mathematical Modeling, 9(3): 161–176, (1987).
  • [19] A. Kuruüzüm, N. Atsan, "Analitik Hı̇yerarşı̇ Yöntemı̇nin İşletmecı̇lı̇k Alanındakı̇ Uygulamaları", Akdeniz İ.İ.B.F Dergisi, (1): 83– 105, (2001).
  • [20] A. Oğuzlar, "Analitik Hiyerarşi Süreci ile Müşteri Şikayetlerinin Analizi", Akdeniz İ.İ.B.F Dergisi, (14): 122–134, (2007).
  • [21] E. Forman, S. Gass, "The Analytic Hierarchy Process – An Exposition", Operations Research, 49(4): 469–486, (2001).
  • [22] S. Felek, Y. Yuluğkural, Z. Aladağ, "Comparing AHP and ANP Results to Estimate Market Share in Mobile Communication Sector", Endüstri Mühendisliği Dergisi, 18(1): 6–22, (2007).
  • [23] A. Hambali, S.M. Sapuan, I. Napsiah, Y. Nukman, "Use of analytical hierarchy process (AHP) for selecting the best design concept", Jurnal Teknologi, 49(A): 1–18, (2008).
  • [24] S. Hsiao, "Concurrent design method for developing a new product", International Journal of Industrial Ergonomics, 29(1): 41–55, (2002) .
  • [25] F. Dweiri, F.M. Al-Oqla, "Material selection using analytical hierarchy process", International Journal of Computer Applications in Technology, 26(4): 182–189, (2006).
  • [26] R.D. Henderson, S.P. Dutta, "Use of the analytic hierarchy process in ergonomic analysis", International Journal of Industrial Ergonomics, 9(4): 275–282, (1992).
  • [27] M.C.Y. Tam, V.M.R. Tummala, "An application of the AHP in vendor selection of a telecommunications system", The International Journal of Management Science, 29(2003): 171– 182, (2001).
  • [28] S. Dönmez, "Computer Aided Industrial Design Software Selection in Industrial Product Design Education at Turkey Using Expert Choice Program", Procedia - Social and Behavioral Sciences, 106: 682–689, (2013).
  • [29] Z. Ayağ, "Cad software evaluation for product design to exchange data in a supply chain network", International Journal of Supply Chain Management, 4(1): 30–38, (2015).
  • [30] Z. Ayag, "An analytic-hierarchy-process based simulation model for implementation and analysis of computer-aided systems", International Journal of Production Research, 40:(13): 3053–3073, (2002).
  • [31] T. Tomiyama, Y. Umeda, H. Yoshikawa, "A CAD for Functional Design", CIRP Annals - Manufacturing Technology, 42 (1): 143–146, (1993).
  • [32] J. Karlsson, C. Wohlin, B. Regnell, "An evaluation of methods for prioritizing software requirements", Information and Software Technology, 39(14– 15): 939–947, (1998).
  • [33] D.R. Jeske, X. Zhang, "Some successful approaches to software reliability modeling in industry", Journal of Systems and Software, 74(1 SPEC. ISS.): 85–99, (2005).
  • [34] S. Ereeş, E. Kuruoğlu, N. Moralı, "An Application of Analytical Hierarchy Process for Simulation Software Selection in Education Area", Frontiers in Science, 3(2): 66–70, (2013).
  • [35] T. Harputlugil, A.T. Gültekin, M. Prins, Y.I. Topçu, "Architectural design quality assessment based on analytic hierarchy process: A case study", Metu Journal of the Faculty of Architecture, 31(2): 139–161, (2014)
APA Özsoy Ö (2020). Evaluation of 3D modeling programs for industrial design use. , 1153 - 1166. 10.2339/politeknik.481241
Chicago Özsoy Özkal Hüseyin Evaluation of 3D modeling programs for industrial design use. (2020): 1153 - 1166. 10.2339/politeknik.481241
MLA Özsoy Özkal Hüseyin Evaluation of 3D modeling programs for industrial design use. , 2020, ss.1153 - 1166. 10.2339/politeknik.481241
AMA Özsoy Ö Evaluation of 3D modeling programs for industrial design use. . 2020; 1153 - 1166. 10.2339/politeknik.481241
Vancouver Özsoy Ö Evaluation of 3D modeling programs for industrial design use. . 2020; 1153 - 1166. 10.2339/politeknik.481241
IEEE Özsoy Ö "Evaluation of 3D modeling programs for industrial design use." , ss.1153 - 1166, 2020. 10.2339/politeknik.481241
ISNAD Özsoy, Özkal Hüseyin. "Evaluation of 3D modeling programs for industrial design use". (2020), 1153-1166. https://doi.org/10.2339/politeknik.481241
APA Özsoy Ö (2020). Evaluation of 3D modeling programs for industrial design use. Politeknik Dergisi, 23(4), 1153 - 1166. 10.2339/politeknik.481241
Chicago Özsoy Özkal Hüseyin Evaluation of 3D modeling programs for industrial design use. Politeknik Dergisi 23, no.4 (2020): 1153 - 1166. 10.2339/politeknik.481241
MLA Özsoy Özkal Hüseyin Evaluation of 3D modeling programs for industrial design use. Politeknik Dergisi, vol.23, no.4, 2020, ss.1153 - 1166. 10.2339/politeknik.481241
AMA Özsoy Ö Evaluation of 3D modeling programs for industrial design use. Politeknik Dergisi. 2020; 23(4): 1153 - 1166. 10.2339/politeknik.481241
Vancouver Özsoy Ö Evaluation of 3D modeling programs for industrial design use. Politeknik Dergisi. 2020; 23(4): 1153 - 1166. 10.2339/politeknik.481241
IEEE Özsoy Ö "Evaluation of 3D modeling programs for industrial design use." Politeknik Dergisi, 23, ss.1153 - 1166, 2020. 10.2339/politeknik.481241
ISNAD Özsoy, Özkal Hüseyin. "Evaluation of 3D modeling programs for industrial design use". Politeknik Dergisi 23/4 (2020), 1153-1166. https://doi.org/10.2339/politeknik.481241