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Original Articles

Component grouping for cell formation using resource elements

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Pages 727-752 | Received 01 Jul 1995, Published online: 25 Jun 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

Adil Baykasoglu & Latife Gorkemli. (2017) Dynamic virtual cellular manufacturing through agent-based modelling. International Journal of Computer Integrated Manufacturing 30:6, pages 564-579.
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Maryam Hamedi, Napsiah Bt. Ismail, Gholam Reza Esmaeilian & M.K.A. Ariffin. (2012) Developing a method to generate semi-distributed layouts by genetic algorithm. International Journal of Production Research 50:4, pages 953-975.
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F. Liang, R.Y.K. Fung & Z. Jiang. (2011) Modelling approach and behaviour analysis of manufacturing resources in virtual cellular manufacturing systems using resource element concept. International Journal of Computer Integrated Manufacturing 24:12, pages 1168-1182.
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I. H. Garbie, H. R. Parsaei & H. R. Leep. (2005) Introducing new parts into existing cellular manufacturing systems based on a novel similarity coefficient. International Journal of Production Research 43:5, pages 1007-1037.
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SamehM. Saad, Adil Baykasoglu & NabilN. Z. Gindy. (2002) A new integrated system for loading and scheduling in cellular manufacturing. International Journal of Computer Integrated Manufacturing 15:1, pages 37-49.
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Adil Baykasoglu. (2002) Linguistic-based meta-heuristic optimization model for flexible job shop scheduling. International Journal of Production Research 40:17, pages 4523-4543.
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Articles from other publishers (21)

Kemal Subulan, Bilge Varol & Adil Baykasoğlu. (2023) Unequal-area capability-based facility layout design problem with a heuristic decomposition-based iterative mathematical programming approach. Expert Systems with Applications 214, pages 119199.
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Adil Baykasoglu, Sameh M. Saad & Nabil N. Z. Gindy. (2023) A LOADING APPROACH FOR CELLULAR MANUFACTURING SYSTEMS. A LOADING APPROACH FOR CELLULAR MANUFACTURING SYSTEMS.
Svetan M. Ratchev & Nabil N. Z. Gindy. (2023) FORMATION OF VIRTUAL MANUFACTURING CELLS USING GENERIC CAPABILITY PATTERNS. FORMATION OF VIRTUAL MANUFACTURING CELLS USING GENERIC CAPABILITY PATTERNS.
Adil Baykasoğlu, Kemal Subulan & Alper Hamzadayı. (2022) Capability-based machine layout with a matheuristic-based approach. Expert Systems with Applications 198, pages 116900.
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Adil Baykasoğlu & Kemal Subulan. (2020) Capability-based distributed layout formation with or without demand and process flow information. Applied Soft Computing 94, pages 106469.
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Adil Baykasoğlu, Şeyda Topaloğlu & Filiz Şenyüzlüler. (2017) Manufacturing cell formation with flexible processing capabilities and worker assignment: Comparison of constraint programming and integer programming approaches. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 232:11, pages 2054-2068.
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Feng Liang & Richard YK Fung. (2014) Coordination mechanism in real-time scheduling of Virtual Cellular Manufacturing Systems. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 230:3, pages 534-547.
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Farhad Shafigh, Fantahun M. Defersha & Soha Eid Moussa. (2015) A mathematical model for the design of distributed layout by considering production planning and system reconfiguration over multiple time periods. Journal of Industrial Engineering International 11:3, pages 283-295.
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Yongliang Luo, Lin Zhang, Fei Tao, Lei Ren, Yongkui Liu & Zhiqiang Zhang. (2013) A modeling and description method of multidimensional information for manufacturing capability in cloud manufacturing system. The International Journal of Advanced Manufacturing Technology 69:5-8, pages 961-975.
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Wen Min Han, Ying Chen & Jin Lei Zhao. (2013) A Methodology Based on Resource Elements for Equipment Capability Analysis Oriented Virtual Cellular Manufacturing Systems. Advanced Materials Research 712-715, pages 3153-3160.
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Maryam Hamedi, G.R. Esmaeilian, N. Ismail & M.K.A. Ariffin. (2012) Capability-based virtual cellular manufacturing systems formation in dual-resource constrained settings using Tabu Search. Computers & Industrial Engineering 62:4, pages 953-971.
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Adil Baykasoğlu & Mustafa Göçken. (2008) Capability-based distributed layout and its simulation based analyses. Journal of Intelligent Manufacturing 21:4, pages 471-485.
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Feyzan Arıkan & Zülal Güngör. (2009) Modeling of a manufacturing cell design problem with fuzzy multi-objective parametric programming. Mathematical and Computer Modelling 50:3-4, pages 407-420.
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Huan-Min Xu & Dong-Bo Li. (2007) A meta-modeling paradigm of the manufacturing resources using mathematical logic for process planning. The International Journal of Advanced Manufacturing Technology 36:9-10, pages 1022-1031.
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Richard Y. K. Fung, Feng Liang, Zhibin Jiang & T. N. Wong. (2006) A multi-stage methodology for virtual cell formation oriented agile manufacturing. The International Journal of Advanced Manufacturing Technology 36:7-8, pages 798-810.
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Guofu Li & Feifan Ye. (2002) Scheduling flow shops in the environment of multi-functional machine tools. Computers & Industrial Engineering 42:2-4, pages 163-168.
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A.M. Mukattash, M.B. Adil & K.K. Tahboub. (2002) Heuristic approaches for part assignment in cell formation. Computers & Industrial Engineering 42:2-4, pages 329-341.
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Mohamadou Diallo, Henri Pierreval & Alain Quilliot. (2001) Manufacturing cells design with flexible routing capability in presence of unreliable machines. International Journal of Production Economics 74:1-3, pages 175-182.
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Svetan M. Ratchev. (2001) Concurrent process and facility prototyping for formation of virtual manufacturing cells. Integrated Manufacturing Systems 12:4, pages 306-315.
Crossref
Nabil N. Gindy & Sameh M. Saad. (1998) Flexibility and responsiveness of machining environments. Integrated Manufacturing Systems 9:4, pages 218-227.
Crossref
S. Owen, N. Pickett & N. Gindy. 1997. Proceedings of the Thirty-Second International Matador Conference. Proceedings of the Thirty-Second International Matador Conference 539 544 .

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