68
Views
48
CrossRef citations to date
0
Altmetric
Original Articles

A ‘fuzzy’ approach to facilities lay-out planning

&
Pages 835-857 | Published online: 27 Apr 2007

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

Read on this site (10)

Felix T.S. Chan & Anuj Prakash. (2012) Maintenance policy selection in manufacturing firms using the fuzzy MCDM approach. International Journal of Production Research 50:23, pages 7044-7056.
Read now
Taho Yang, Yung-Cheng Chang & Yun-Hui Yang. (2012) Fuzzy multiple attribute decision-making method for a large 300-mm fab layout design. International Journal of Production Research 50:1, pages 119-132.
Read now
N. Khilwani, R. Shankar & M. K. Tiwari. (2008) Facility layout problem: an approach based on a group decision-making system and psychoclonal algorithm. International Journal of Production Research 46:4, pages 895-927.
Read now
Chien-Wen Chen & D.Y. Sha. (2001) A LITERATURE REVIEW AND ANALYSIS TO THE FACILITY LAYOUT PROBLEM. Journal of the Chinese Institute of Industrial Engineers 18:1, pages 55-73.
Read now
F. DWEIRI‡F. A. MEIER. (1996) Application of fuzzy decision-making in facilities layout planning. International Journal of Production Research 34:11, pages 3207-3225.
Read now
A. D. RAOOT & A. RAKSHIT. (1994) A ‘fuzzy’ heuristic for the quadratic assignment formulation to the facility layout problem. International Journal of Production Research 32:3, pages 563-581.
Read now
B. SIRINAOVAKUL & P. THAJCHAYAPONG. (1994) A knowledge base to assist a heuristic search approach to facility layout. International Journal of Production Research 32:1, pages 141-160.
Read now
P. S. WELGAMA & P. R. GIBSON. (1993) A construction algorithm for the machine layout problem with fixed pick-up and drop-off points. International Journal of Production Research 31:11, pages 2575-2589.
Read now
A. D. RAOOT & A. RAKSHIT. (1993) An experimental comparison of systematic placement procedures for facility layout design. International Journal of Production Research 31:7, pages 1735-1756.
Read now
A. D. RAOOT & A. RAKSHIT. (1993) A ‘linguistic pattern’ approach for multiple criteria facility layout problems. International Journal of Production Research 31:1, pages 203-222.
Read now

Articles from other publishers (38)

Sonja Rosenberg, Sandra Huster, Sabri Baazouzi, Simon Glöser-Chahoud, Anwar Al Assadi & Frank Schultmann. (2022) Field Study and Multimethod Analysis of an EV Battery System Disassembly. Energies 15:15, pages 5324.
Crossref
Mir Kaosar Ahamed, Md.Ashraful Babu, Md.Shohel Babu, Md.Babul Hossain & Chetan M. Thakar. (2022) Layout map in facility layout planning: A fuzzy methodology. Materials Today: Proceedings 51, pages 621-627.
Crossref
N. Pournaderi, V. R. Ghezavati & M. Mozafari. (2019) Developing a mathematical model for the dynamic facility layout problem considering material handling system and optimizing it using cloud theory-based simulated annealing algorithm. SN Applied Sciences 1:8.
Crossref
Izabela Kudelska, Agnieszka Stachowiak & Marta Pawłowska. 2019. Intelligent Systems in Production Engineering and Maintenance. Intelligent Systems in Production Engineering and Maintenance 360 369 .
Jerzy Grobelny & Rafał Michalski. (2017) A novel version of simulated annealing based on linguistic patterns for solving facility layout problems. Knowledge-Based Systems 124, pages 55-69.
Crossref
Sara Haddou Amar & Abdellah Abouabdellah. (2016) Facility layout planning problem: Effectiveness and reliability evaluation system layout designs. Facility layout planning problem: Effectiveness and reliability evaluation system layout designs.
Hamid Tohidi. (2015) Mathematical modeling of optimal multi fuzzy locations of facilities based on the assumed step distance among them in a convex set. Applied Mathematical Modelling 39:23-24, pages 7442-7451.
Crossref
Jiuping Xu & Xiaoling Song. (2015) Multi-objective dynamic layout problem for temporary construction facilities with unequal-area departments under fuzzy random environment. Knowledge-Based Systems 81, pages 30-45.
Crossref
Serkan Altuntas, Hasan Selim & Turkay Dereli. (2014) A fuzzy DEMATEL-based solution approach for facility layout problem: a case study. The International Journal of Advanced Manufacturing Technology 73:5-8, pages 749-771.
Crossref
Mojtaba Kaveh, Vahid Majazi Dalfard & Sajjad Amiri. (2013) A new intelligent algorithm for dynamic facility layout problem in state of fuzzy constraints. Neural Computing and Applications 24:5, pages 1179-1190.
Crossref
J. Blanco-Fernández, E. Martínez-Cámara, E. Jiménez-Macías, A. Cuevas & J. C. Sáenz-Díez. 2014. Lean Manufacturing in the Developing World. Lean Manufacturing in the Developing World 461 482 .
Hamidreza Shokri, Behzad Ashjari, Morteza Saberi & Jin Hee Yoon. (2013) An Integrated AHP-VIKOR Methodology for Facility Layout Design. Industrial Engineering and Management Systems 12:4, pages 389-405.
Crossref
R. Venkata RaoR. Venkata Rao. 2013. Decision Making in Manufacturing Environment Using Graph Theory and Fuzzy Multiple Attribute Decision Making Methods. Decision Making in Manufacturing Environment Using Graph Theory and Fuzzy Multiple Attribute Decision Making Methods 41 135 .
Ghorbanali Moslemipour, Tian Soon Lee & Dirk Rilling. (2011) A review of intelligent approaches for designing dynamic and robust layouts in flexible manufacturing systems. The International Journal of Advanced Manufacturing Technology 60:1-4, pages 11-27.
Crossref
Kuldip Singh Sangwan. 2010. Production Engineering and Management under Fuzziness. Production Engineering and Management under Fuzziness 359 380 .
Dhamodharan Raman, Sev V. Nagalingam & Grier C.I. Lin. (2009) Towards measuring the effectiveness of a facilities layout. Robotics and Computer-Integrated Manufacturing 25:1, pages 191-203.
Crossref
M. Heydar, R. Tavakkoli-Moghaddam, S. M. Mousavi & S. M. H. Mojtahedi. (2008) Fuzzy multi criteria decision making method for temporary storage design in industrial plants. Fuzzy multi criteria decision making method for temporary storage design in industrial plants.
Amine Drira, Sonia Hajri-Gabouj & Henri Pierreval. (2007) DESIGN OF A CONSTRAINED MULTI-ROWS LAYOUT IN PRESENCE OF UNCERTAINTY. IFAC Proceedings Volumes 40:18, pages 383-388.
Crossref
Taho Yang & Chih-Ching Hung. (2007) Multiple-attribute decision making methods for plant layout design problem. Robotics and Computer-Integrated Manufacturing 23:1, pages 126-137.
Crossref
Amine Drira, Henri Pierreval & Sonia Hajri-Gabouj. (2007) Facility layout problems: A survey. Annual Reviews in Control 31:2, pages 255-267.
Crossref
D. Raman, S. V. Nagalingam, B. W. Gurd & G. C. I. Lin. 2007. Proceedings of the 35th International MATADOR Conference. Proceedings of the 35th International MATADOR Conference 165 168 .
S. P. Singh & R. R. K. Sharma. (2005) A review of different approaches to the facility layout problems. The International Journal of Advanced Manufacturing Technology 30:5-6, pages 425-433.
Crossref
Cengiz Kahraman, Murat Gülbay & Özgür Kabak. 2006. Fuzzy Applications in Industrial Engineering. Fuzzy Applications in Industrial Engineering 1 55 .
Felix T.S. Chan & H.K. Chan. (2005) Design of a PCB plant with expert system and simulation approach. Expert Systems with Applications 28:3, pages 409-423.
Crossref
Nathalie Marcoux, Diane Riopel & André Langevin. 2005. Logistics Systems: Design and Optimization. Logistics Systems: Design and Optimization 123 170 .
B. Gopalakrishnan, R. Turuvekere & D.P. Gupta. (2004) Computer integrated facilities planning and design. Facilities 22:7/8, pages 199-209.
Crossref
S. K. Deb, B. Bhattacharyya & S. K. Sorhkel. (2017) Hybrid Modelling for Optimal Facility Layout under Continuous Planning. OPSEARCH 38:6, pages 612-629.
Crossref
F. Karray, E. Zaneldin, T. Hegazy, A.H.M. Shabeeb & E. Elbeltagi. (2000) Tools of soft computing as applied to the problem of facilities layout planning. IEEE Transactions on Fuzzy Systems 8:4, pages 367-379.
Crossref
Fikri Dweiri. (1999) Fuzzy development of crisp activity relationship charts for facilities layout. Computers & Industrial Engineering 36:1, pages 1-16.
Crossref
Hamdy Elwany, Mohamed G. Abou-Ali & Nermeen A. Harraz. 1998. PRICAI’98: Topics in Artificial Intelligence. PRICAI’98: Topics in Artificial Intelligence 530 541 .
M K Khan & S H Gwee. (2005) Plant layout improvements to a medium volume manufacturing system using systematic techniques to form just-in-time manufacturing cells. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 211:2, pages 109-124.
Crossref
Ho Yim & A.C. Butler. (1996) General layout design synthesis using fuzzy logic. General layout design synthesis using fuzzy logic.
Ho Yim & A.C. Butler. (1996) General Layout Design Synthesis using Fuzzy Logic. General Layout Design Synthesis using Fuzzy Logic.
Russell D. Meller & Kai-Yin Gau. (1996) The facility layout problem: Recent and emerging trends and perspectives. Journal of Manufacturing Systems 15:5, pages 351-366.
Crossref
Lee Miu-ling Rosa & Bruce R. Feiring. (1995) Layout problem for an aircraft maintenance company tool room. International Journal of Production Economics 40:2-3, pages 219-230.
Crossref
A. C. Butler, S. S. Rao & S. R. LeClair. (1995) Fuzzy computer-aided design of process manufacturing facilities. Research in Engineering Design 7:2, pages 126-150.
Crossref
Palitha S. Welgama & Peter R. Gibson. (1995) Computer-aided facility layout ? A status report. The International Journal of Advanced Manufacturing Technology 10:1, pages 66-77.
Crossref
Y.-D. Wang & C. Marty. (1993) Definition of a methodology for mechanical conceptual design. Definition of a methodology for mechanical conceptual design.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.