An integrated model for strategic supply chain design: Formulation and ABC-based solution approach

Expert Systems with Applications - Tập 52 - Trang 39-49 - 2016
Linda L. Zhang1, Carman Lee2, Shuzhu Zhang2
1Department of Management, IESEG School of Management (LEM-CNRS), 3, rue de la Digue, 59000 Lille, France
2Department of Industrial and Systems Engineering, The Hong Kong Polytechnic University, Hong Kong, China

Tài liệu tham khảo

Altiparmak, 2009, A steady-state genetic algorithm for multi-product supply chain network design, Computers & Industrial Engineering, 56, 521, 10.1016/j.cie.2007.05.012 Anussornnitisarn, 2005, Decentralized control of cooperative and autonomous agents for solving the distributed resource allocation problem, International Journal of Production Economics, 98, 114, 10.1016/j.ijpe.2004.05.015 Arntzen, 1995, Global supply chain management at Ditital Equipment corporation, Interfaces, 25, 69, 10.1287/inte.25.1.69 Bonabeau, 1999 Chung, 2010, Application of genetic approach for advanced planning in multi-factory environment, International Journal of Production Economics, 127, 300, 10.1016/j.ijpe.2009.08.019 Cohen, 1989, Resource deployment analysis of global manufacturing and distribution networks, Journal of Manufacturing and Operations Management, 2, 81 Das, 2011, Integrating effective flexibility measures into a strategic supply chain planning model, European Journal of Operational Research, 211, 170, 10.1016/j.ejor.2010.12.006 Dominguez, 2004, Model for integrating the supply chain of an appliance company: A value of information approach, International Journal of Production Research, 42, 2113, 10.1080/00207540410001666297 Gebennini, 2009, An integrated production-distribution model for the dynamic location and allocation problem with safety stock optimization, International Journal of Production Economics, 122, 286, 10.1016/j.ijpe.2009.06.027 Huang, 2005, Towards integrated optimal configuration of platform products, manufacturing processes, and supply chains, Journal of Operations Management, 23, 267, 10.1016/j.jom.2004.10.014 Horng, 2011, Multilevel thresholding selection based on the artificial bee colony algorithm for image segmentation, Expert Systems with Applications, 38, 13785 Ivanov, 2010, An adaptive framework for aligning (re)planning decisions on supply chain strategy, design, tactics, and operations, International Journal of Production Research, 48, 3999, 10.1080/00207540902893417 Karaboga, 2005 Karaboga, 2014, A comprehensive survey: artificial bee colony (ABC) algorithm and applications, Artificial Intelligence Review, 42, 21, 10.1007/s10462-012-9328-0 Kim, 2008, Values of the balanced decision making between supply chain partners, International Transactions in Operational Research, 15, 623, 10.1111/j.1475-3995.2008.00632.x Kotha, 1996, From mass production to mass customization: The case of the National Industrial Bicycle Company of Japan, European Management Journal, 14, 442, 10.1016/0263-2373(96)00037-0 Li, 2009, A strategic capacity allocation model for a complex supply chain: formulation and solution approach comparison, International Journal of Production Economics, 121, 505, 10.1016/j.ijpe.2007.02.033 Magill, 1996, Customizing bicycles through the integration of best practices, IEE Colloquium Digest, 181, l Melo, 2005, Dynamic multi-commodity capacitated facility location: a mathematical modeling framework for strategic supply chain planning, Computers & Operations Research, 33, 181, 10.1016/j.cor.2004.07.005 Melo, 2009, Facility location and supply chain management: a review, European Journal of Operational Research, 196, 401, 10.1016/j.ejor.2008.05.007 Moon, 2006, Adaptive genetic algorithm for advanced planning in manufacturing supply chain, Journal of Intelligent Manufacturing, 17, 509, 10.1007/s10845-005-0010-0 Ong, 2006, Web-based configuration design system for product customization, International Journal of Production Research, 44, 351, 10.1080/00207540500244153 Osman, 2010, A bilinear goal programming model and a modified Benders decomposition algorithm for supply chain reconfiguration and supplier selection, International Journal of Production Economics, 124, 97, 10.1016/j.ijpe.2009.10.012 Sabri, 2000, A multi-objective approach to simultaneous strategic and operational planning in supply chain design, Omega, 28, 581, 10.1016/S0305-0483(99)00080-8 Safaei, 2010, Integrated multi-site production-distribution planning in supply chain by hybrid modeling, International Journal of Production Research, 48, 4043, 10.1080/00207540902791777 Simchi-Levi, 2004 Simchi-Levi, 2009 Thanh, 2008, A dynamic model for facility location in the design of complex supply chains, International Journal of Production Economics, 113, 678, 10.1016/j.ijpe.2007.10.017 Van der Vaart, 2008, A critical review of survey-based research in supply chain integration, International Journal of Production Economics, 111, 42, 10.1016/j.ijpe.2006.10.011 Vidal, 1997, Strategic production-distribution models: a critical review with emphasis on global supply chain models, European Journal of Operational Research, 98, 1, 10.1016/S0377-2217(97)80080-X Wang, 2006, A fuzzy hybrid decision-aid model for selecting partners in the design chain, International Journal of Production Research, 44, 2047, 10.1080/00207540500354028 Yan, 2003, A strategic model for supply chain design with logical constraints: formulation and solution, Computers & Operations Research, 30, 2135, 10.1016/S0305-0548(02)00127-2 Zhang, 2009, Supply chain configuration with coordinated product, process and logistics decision: an approach based on Petri nets, International Journal of Production Research, 47, 6681, 10.1080/00207540802213427