Vitanov V, Tjahjono B, Marghalany I. A decision support tool to facilitate the design of cellular manufac-turing layouts[J].Computers & Industrial Engineering,2007,52:380-403.
[2]
Vakharia A J, Sclim H M. Group technology[M].//Dorf R C, Kusiak A. Handbook of Design,Manufacturing and Automtion. lst ed. New York: John Wiley & Sons,1994.
[3]
Wemmerlov U, Hyer N L. Cellular manufacturing in the US industry:a surveyof users[J].International Journal of Production Research,1989,27(9):1511-1530.
[4]
Wemmerlov U, Johnson D J. Cellular manufacturing at 46 user plants:implementation experiences and performance improvements[J].International Journal of Production Research,1997,35:29-49.
[5]
Wemmerlov U, Hyer N L. Procedures for the part family/machine group identification problem in cellular manufacture[J].Journal of Operations Management,1986,6:125-147.
[6]
Alfa S, Chen M, Heragu S S. Integrating the grouping and layout problems in cellular manufacturing systems[J].Computer & Industrial Engineering,1992,23(1-4):55-58.
[7]
Bazargan-Lar M, Kaebernick H, Harraf A. Cell formation and layout designs in a cellular manufacturing environment-a case study[J].International Journal of Production Research,2000,38(7):1689-1709.
[8]
Chandrasekharan M P, Rajagopalan R. A multidimensional scaling algorithm for group layout in cellular manufacturing[J].International Journal of Production Economics,1993,24:65-76.
[9]
Taboun S M, Merchawi N S, Ulger T. Part family and machine cell formation in multi-period planning horizons of cellular manufacturing systems[J].Production Planning and Control,1998,9(6):561-571.
[10]
Selim H M, Abdel Aal R M S, Mahdi A I. Formation of machine groups and part families:a modified SLC method and comparative study[J].Integrated Manufacturing Systems,2003,14(2):123-137.
[11]
ERI-Economic Research Institute.Cell manufacturing system and the innovation of manufacturing system.Research Report H9-9,Japan Society for the Promotion of Machine Industry,Tokyo 1997.
[12]
Uyanik B. Cell formation:a real life application. Turkey:Middle East Technical University,2005.
[13]
Isa K, Tsuru T. Cell production and workplace innovation in Japan:toward a new model for Japanese manufacturing?[J]. Industrial Relations,2002,41(4):548-578.
[14]
Defersha F M, Chen Mingyuan. A comprehensive mathematical model for the design of cellular manufacturing systems[J].International Journal of Production Economics,2006,103:767-783.
[15]
Cheng C H, Kumar A, Motwani J. A comparative examination of selected cellular manufacturing clustering algorithms[J].International Journal of Operations and Production Management,1995,15(12):86-97.
[16]
Burbidge J L. Production flow analysis in planning group technology[J].Journal of Operations Management,1991,10(1):5-27.
[17]
Wilhelm W E, Chiou C C, Chang, D B. Integrating design and planning considerations in cellular manufac-turing[J].Annals of Operations Research,1998,77:97+107.
[18]
Albadawi Z, Bashir H A, Chen M Y. A mathematical approach for the formation of manufacturing cells[J].Computers & Industrial Engineering,2005,48:3-21.
[19]
Mahdavi I, Javadi B, Fallah-Alipour K, Slomp J. Designing a new mathematical model for cellular manu-facturing system based on cell utilization[J].Applied Mathematics and Computation,2007,190:662-670.
[20]
Chan F T S, Lau K W, Chan P L Y, et al.Two-stage approach for machine-part grouping and cell layout problems[J].Robotics and Computer-Integrated Manufacturing,2006,22:217-238.
[21]
Jayachitra R, Revathy A, Prasad P S S. A fuzzy programming approach for formation of virtual cells under dynamic and uncertain conditions[J].International Journal of Engineering Science and Technology,2010,2(6):1708-1724.
[22]
Burbidge J L. Production flow analysis[J].Production Engineer,1963,42(12):742-752.
[23]
King J R. Machine-component grouping in production flow analysis:an approach using a rank order clustering algorithm[J].International Journal of Production Research,1980,18:213-232.
[24]
Jayaswal S, Adil G K. An efficient algorithm for cell formation with sequence data,machine replications and alternative process routings[J].International Journal of Production Research,2004,42(12):2419-2433.
[25]
Xambre A R, Vilarinho P M. A simulated annealing approach for manufacturing cell formation with multipleidentical machines[J].European Journal of Operational Research,2003,151:434-446.
[26]
Moon C, Gen M. A genetic algorithm-based approach for design of independent manufacturing cells[J].International Journal of Production Economics,1999,60-61:421-426.
[27]
Yang Jiaqin, Deane R H. Strategic implications of manufacturing cell formation design[J].Integrated Manufacturing Systems,1994,5(4-5):87-96.
[28]
Gupta Y, Gupta M, Kumar A. A genetic algorithm-based approach to cell composition and layout design problems[J].International Journal of Production Research,1996,34(2):447-482.
[29]
Heragu S S, Kakututi S R. Grouping and placement of machine cells[J].IIE Transactions,1997,29:561-571.
[30]
Kazerooni M L, Luong H S, Abhary K. A genetic algorithm cell design considering alternative rout-ing[J].Computer Integrated Manufacturing Systems,1997,10(2):93-108.