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Tytuł artykułu

Product configuration use chosen artificial intelligent method

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Product adjustment to customer expectation, which means product customization, decides about its commercial success. Developing methods helpful in the early phase of product design is needed to product customization. The aim of this paper is to present application of knowledge-based systems (KBS) in product customization.
Rocznik
Strony
71--79
Opis fizyczny
Bibliogr. 30 poz., fig., tab.
Twórcy
  • Department of Production Engineering, University of Bielsko-Biała, ul. Willowa 2, 43-300 Bielsko-Biała, Poland
Bibliografia
  • [1] BANASZAK Z., JÓZEFCZYK J.: Towards dedicated decision support tools: CLP-based approach. Applied Computer Science and Product Management,Vol.1, No 1, ATH Publishing, 2005, pp.
  • [2] CARNEVALLI J., MIGUEL P.: Review, analysis and classification of the literature on QFD—Types of research, difficulties and benefits. Int. J. Production Economics 114, 2008, pp. 737– 754.
  • [3] CHAN L., WU M.: Quality function deployment: A literature review. European Journal of Operational Research 143, 2002, pp. 463–497.
  • [4] FRANGOPOL D., MAUTE K.: Life-cycle reliability-based optimization of civil and aerospace structures Computers and Structures 81, 2003, pp. 397–410.
  • [5] GUNIA G.: Zintegrowane systemy informatyczne zarządzania w praktyce produkcyjnej. Seria Systemy informatyczne w przedsiębiorstwie pod redakcją J.Matuszka. Bielsko-Biała 2010.
  • [6] HARDING J., K. POPPLEWELL, R.Y.K. FUNGB, A.R. OMAR: An intelligent information framework relating customer requirements and product characteristics Computers in Industry 44, 2001, pp. 51-65.
  • [7] HSU W., WOON I.: Current research in the conceptual design of mechanical products. Computer-Aided Design. Vol. 30 No.5, 1998, pp. 377-389.
  • [8] HUANG, C.-C., KUSIAK, A.: Modularity in design of products and systems. IEEE Transactions on Systems, Man and Cybernetics, Part-A: Systems and Humans, 1998, 28(1), pp. 66–77.
  • [9] HUNG H, KAO H, JUANG Y.: An integrated information system for product design planning. Expert Systems with Applications 35, 2008, pp. 338–349.
  • [10] HVAM L., LADEBY K.: An approach for the development of visual configuration systems. Computers & Industrial Engineering 53, 2007, pp. 401–419.
  • [11] JAKUBOWSKI J.: Computer supported techniques in product development. Applied Computer Science. Enterprise Application Integration. Technical University of Koszalin. Vol.3. No1, 2007.
  • [12] JIAO J., TSENG M., DUFTY V., LIN F.: Product Family Modeling for Mass Customization Computers ind. Engng Vol. 35, Nos 3-4, 1998, pp. 495-498.
  • [13] JOSE A., TOLLENAERE M. : Modular and platform methods for product family design: literature analysis. Journal of Intelligent Manufacturing, 2005, 16, pp. 371–390.
  • [14] KAMRANI A., VIJAYAN A.: Template-Based Integrated Design: A Case Study. Collaborative Engineering - Theory and Practice. Springer – Verlag 2008.
  • [15] KŁOS S., PATALAS J., WOŹNIAK S.: A data analysis based methodology of ERP System evaluation. Appled Computer Science. Enterprise Application Integration. Technical Unoversity of Koszalin.Vol.3. No1, 2007.
  • [16] KUTSCHENREITER-PRASZKIEWICZ I.: Application of artificial neural network for determination of standard time in machining. J Intell Manuf, DOI 10.1007/s.10845-008-0076-6, Springer Science+Business Media, LLC, 2008.
  • [17] KUTSCHENREITER-PRASZKIEWICZ I.: Zastosowanie sztucznych sieci neuronowych w metodologii planowania technicznego przygotowania produkcji. Zeszyty Naukowe Politechnika Łódzka Filia w Bielsku-Białej. Informatyka, Organizacja i Zarządzanie 2000 nr 57 z. 7: Inżynieria Produkcji 2000. Materiały z VI Międzynarodowej Konferencji Naukowej, Część I, Bielsko-Biała, 2000, pp. 85-100.
  • [18] KUTSCHENREITER-PRASZKIEWICZ I.: Planowanie kosztów prac projektowych z wykorzystaniem rachunku kosztów dzialan. Szczyrk 2001. W: Materialy V szkoly Komputerowego Wspomagania Projektowania, Wytwarzania i Eksploatacji. Szczyrk, 2001, pp. 379-386.
  • [19] KUTSCHENREITER-PRASZKIEWICZ I.: Zastosowanie algorytmów ewolucyjnych w zarządzaniu przedsięwzięciami technicznego przygotowania produkcji w warunkach ryzyka. Zarządzanie Przedsiębiorstwem Nr 2 , 2006, Zakopane,2007, pp. 39-44.
  • [20] LI L.,·HUANG G., NEWMAN S.: A cooperative co evolutionary algorithm for design of platformbased mass customized products. J Intell Manuf (2008) 19, pp. 507–519.
  • [21] LIN M, CHEN L., CHEN M.: An integrated component design approach to the development of a design information system for customer-oriented product design. Advanced Engineering Informatics 23, 2009, pp. 210–221.
  • [22] LUO X., TU Y., TANG J., KWONG C.K.: Optimizing customer’s selection for configurable product in B2C e-commerce application, Computers in Industry 59, 2008, pp. 767–776.
  • [23] MATUSZEK J. MOCZAŁA A., KOSTURIAK J.: Optimization of production process design in small and medium bath production. Journal of Materials Processing Technology 76, 1998, pp. 279-283.
  • [24] MLECZKO J.: Optimization of task in an operational production plan conditions of unit and small batch production. Applied Computer Science. Modelling of Manufacturing Processes. Lublin University of Technology. Vol.4, No.1, 2008.
  • [25] MYUNG S., HAN S.: Knowledge-based parametric design of mechanical products based on configuration design method. Expert System with Applications 21, 2001, pp. 99-107.
  • [26] RAHARJO H, BROMBACHER A., XIE M.: Dealing with subjectivity in early product design phase: A systematic approach to exploit Quality Function Deployment potentials. Computers & Industrial Engineering 55, 2008, pp. 253–278.
  • [27] RAO S., NAHM A, SHI Z., DENG X. SYAMIL A.: Artifcial intelligence and expert systems applications in new product development – a survey. Journal of Intelligent Manufacturing, 1999, 10, pp. 231-244.
  • [28] TUPA J., BASL J.: Implementatio of the CQT methodology for business process optimization. Applied Computer Science. Business Processes Optimization. Technical University of Koszalin, Vol.2, No 2, 2006.
  • [29] YADAV O., SINGH N., GOEL P.: Reliability demonstration test planning: A three dimensional consideration. Reliability Engineering and System Safety 91, 2006, pp. 882–893.
  • [30] SALHIEH S., KAMRANI A: Modular Design Collaborative Engineering - Theory and Practice. Springer – Verlag, 2008.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1b43525c-7f33-4834-b4ad-6fc840fce7c9
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