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Original Articles

Multi-objective cell formation and production planning in dynamic virtual cellular manufacturing systems

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Pages 6517-6537 | Received 09 Dec 2009, Accepted 09 Sep 2010, Published online: 24 Jan 2011

References

  • Abd El-Wahed , WF and Lee , SM . 2006 . Interactive fuzzy goal programming for multi-objective transportation problems . Omega , 34 ( 2 ) : 58 – 166 .
  • Ahkioon , S , Bulgak , AA and Bektas , T . 2009 . Integrated cellular manufacturing systems design with production planning and dynamic system reconfiguration . European Journal of Operational Research , 192 ( 2 ) : 414 – 428 .
  • Balakrishnan , J and Cheng , CH . 2005 . Dynamic cellular manufacturing under multi-period planning horizons . Journal of Manufacturing Technology Management , 16 ( 5 ) : 516 – 530 .
  • Balakrishnan , J and Cheng , CH . 2007 . Multi-period planning and uncertainty issues in cellular manufacturing: a review and future directions . European Journal of Operational Research , 177 ( 1 ) : 281 – 309 .
  • Baykasoglu , A . 2003 . capability-based distributed layout approach for virtual manufacturing cells . International Journal of Production Research , 41 ( 11 ) : 2597 – 2618 .
  • Burbidge , JL . 1971 . Production flow analysis . Production Engineer , 50 ( 2 ) : 139 – 152 .
  • Chen , M . 1998 . A mathematical programming model for systems reconfiguration in a dynamic cell formation condition . Annals of Operations Research , 77 ( 1 ) : 109 – 128 .
  • Defersha , FM and Chen , M . 2006 . A comprehensive mathematical model for the design of cellular manufacturing systems . International Journal of Production Economics , 103 ( 2 ) : 767 – 783 .
  • Defersha , FM and Chen , M . 2008 . A linear programming embedded genetic algorithm for an integrated cell formation and lot sizing considering product quality . European Journal of Operational Research , 187 ( 1 ) : 46 – 69 .
  • Eski , O and Ozkarahan , H . 2007 . “ Design of manufacturing cells for uncertain production requirements with presence of routing flexibility ” . In Lecture notes in computer science, advanced intelligent computing theories and applications with aspects of artificial intelligence , 670 – 681 . Berlin, Heidelberg : Springer-Verlag .
  • Heragu , SS . 1994 . Group technology and cellular manufacturing . IEEE Transactions on Systems, Man and Cybernetics , 24 ( 2 ) : 203 – 214 .
  • Javadi, B., et al., 2007. Solving a multi-objective mixed-model assembly line sequencing problem by a fuzzy goal programming approach. The International Journal of Advanced Manufacturing Technology, doi: 10.1007/s00170-007-1267-6.
  • Kesen , SE . 2009 . Analyzing the behaviors of virtual cells (VCs) and traditional manufacturing systems: ant colony optimization (ACO)-based metamodels . Computers and Operations Research , 36 ( 7 ) : 2275 – 2285 .
  • Li , ML . 2003 . The algorithm for integrating all incidence matrices in multi-dimensional group technology . International Journal of Production Economics , 86 ( 2 ) : 121 – 131 .
  • Mahdavi, I., et al., 2009. A new approach on cellular manufacturing system based on machine part-worker incidence matrix 2009. The fourth GT/CM symposium on group technology and cellular manufacturing (GT/CM 2009), 16–18 February 2009, Kitakyushu, Japan.
  • McLean, C.R., Bloom, H.M., and Hopp, T.H. 1982. The virtual manufacturing cell. In: Proceedings of the fourth IFAC/IFIP conference on in formation control problems in manufacturing technology, October 1982, Gaithersburg, MD, 1–9.
  • Min , H and Shin , D . 1993 . Simultaneous formation of machine and human cells in group technology: a multiple objective approach . International Journal of Production Research , 31 ( 1 ) : 2307 – 2318 .
  • Mishra , S . 2006 . A fuzzy goal-programming model of machine-tool selection and operation allocation problem in FMS . International Journal of Production Research , 44 ( 2 ) : 43 – 47 .
  • Mitrofanov , SP . 1966 . The scientific principles of group technology , Boston Spa, Yorks, , UK : National Lending Library Translation .
  • Montreuil, B., Drolet, J., and Lefrancois, P., 1992. The design and management of virtual cellular manufacturing systems. In: American Production & Inventory Control Society Conference, 4–5 October, Quebec, Montreal, 410–414.
  • Mungwattana, A., 2000. Design of cellular manufacturing systems for dynamic and uncertain production requirements with presence of routing flexibility. Thesis (PhD). Virginia Polytechnic Institute and State University, Blackburg, VA.
  • Narasimhan , R . 1980 . Goal programming in a fuzzy environment . Decision Sciences , 11 ( 2 ) : 325 – 326 .
  • Nomden , G , Slomp , J and Suresh , NC . 2006 . Virtual manufacturing cells: a taxonomy of past research and identification of future research . International Journal of Flexible Manufacturing Systems , 17 ( 2 ) : 71 – 92 .
  • Parkin , RE and Li , ML . 1997 . The multi-dimensional aspects of a group technology algorithm . International Journal of Production Research , 35 ( 8 ) : 2345 – 2358 .
  • Pillai , VM and Subbarao , K . 2008 . A robust cellular manufacturing system design for dynamic part population using a genetic algorithm . International Journal of Production Research , 46 ( 18 ) : 5191 – 5210 .
  • Ratchev , SM . 2001 . Concurrent process and facility prototyping for formation of virtual manufacturing cells . Integrated Manufacturing Systems , 12 ( 4 ) : 306 – 315 .
  • Rheault , M , Drolet , J and Abdulnour , G . 1995 . Physically reconfigurable virtual cells: a dynamic model for a highly dynamic environment . Computers & Industrial Engineering , 29 ( 1–4 ) : 221 – 225 .
  • Saad , SM , Baykasoglu , A and Gindy , NNZ . 2002 . An integrated framework for reconfiguration of cellular manufacturing systems using virtual cells . Production Planning & Control , 13 ( 4 ) : 381 – 393 .
  • Safaei , N , Saidi-Mehrabad , M and Jabal-Ameli , MS . 2008 . A hybrid simulated annealing for solving an extended model of dynamic cellular manufacturing system . European Journal of Operational Research , 185 ( 2 ) : 563 – 592 .
  • Safaei , N and Tavakkoli-Moghaddam , R . 2009 . Integrated multi-period cell formation and subcontracting production planning in dynamic cellular manufacturing systems . International Journal of Production Economics , 120 ( 2 ) : 301 – 314 .
  • Sarker , BR and Li , Z . 2001 . Job routing and operations scheduling: a network-based virtual cell formation approach . Journal of the Operational Research Society , 52 ( 6 ) : 673 – 681 .
  • Selim, H., Araz, C. and Ozkarahan, I., 2008. Collaborative production-distribution planning in supply chain: A fuzzy goal programming approach. Transportation Research Part E: Logistics and Transportation Review, 44(3), 396–419.
  • Slomp , J , Chowdary , BV and Suresh , NC . 2005 . Design of virtual manufacturing cells: a mathematical programming approach . Robotics and Computer Integrated Manufacturing , 21 ( 3 ) : 273 – 288 .
  • Tavakkoli-Moghaddam , R . 2005 . Solving a dynamic cell formation problem using metaheuristics . Applied Mathematics and Computation , 170 ( 2 ) : 761 – 780 .
  • Tsai , WH and Hung , SJ . 2009 . A fuzzy goal programming approach for green supply chain optimisation under activity-based costing and performance evaluation with a value-chain structure . International Journal of Production Research , 47 ( 18 ) : 4991 – 5017 .
  • Vakharia , AJ , Moily , JP and Huang , Y . 1999 . Evaluating virtual cells and multistage flow shops: an analytical approach . International Journal of Flexible Manufacturing Systems , 11 ( 3 ) : 291 – 314 .
  • Wemmerlov , U and Hyer , N . 1989 . Cellular manufacturing in the US industry: a survey of users . International Journal of Production Research , 27 ( 9 ) : 1511 – 1530 .
  • Wicks , EM and Reasor , RJ . 1999 . Designing cellular manufacturing systems with dynamic part populations . IIE Transactions , 31 ( 1 ) : 11 – 20 .
  • Yang , T , Ignizio , JP and Kism , HJ . 1991 . Fuzzy programming with nonlinear membership functions: piecewise linear approximation . Fuzzy Sets and Systems , 11 ( 1 ) : 39 – 53 .
  • Zimmermann , HJ . 1978 . Fuzzy programming and linear programming with several objective functions . Fuzzy Sets and Systems , 1 ( 1 ) : 45 – 55 .

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