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A methodology for solving facility layout problem considering barriers: genetic algorithm coupled with A* search

Author

Listed:
  • Mariem Besbes

    (Quartz-Supmeca
    University of Sfax)

  • Marc Zolghadri

    (Quartz-Supmeca)

  • Roberta Costa Affonso

    (Quartz-Supmeca)

  • Faouzi Masmoudi

    (University of Sfax)

  • Mohamed Haddar

    (University of Sfax)

Abstract

This work proposes a new methodology and mathematical formulation to address the facility layout problem. The goal is to minimise the total material handling cost subjected to production-derived constraints. This cost is a function of the distance that the products should cover within the facility. The first idea is to use the $$ {\text{A}}^{ *} $$A∗ algorithm to identify the distances between workstations in a more realistic way. $$ {\text{A}}^{ *} $$A∗ determines the shortest path within the facility that contains obstacles and transportation routes. The second idea is to combine a genetic algorithm and the $$ {\text{A}}^{ *} $$A∗ algorithm with a homogenous methodology to improve the quality of the facility layouts. In an iterative way, the layout solution space is explored using the genetic algorithm. We study the impacts of the appropriate crossover and mutation operators and the values of the parameters used in this algorithm on the cost of the proposed arrangements. These operators and parameter values are fine-tuned using Monte Carlo simulations. The facility arrangements are all compared and discussed based on their material handling cost associated with the Euclidean distance, rectilinear distance, and $$ {\text{A}}^{ *} $$A∗ algorithm. Finally, we present a set of conclusions regarding the suggested methodology and discuss our future research goals.

Suggested Citation

  • Mariem Besbes & Marc Zolghadri & Roberta Costa Affonso & Faouzi Masmoudi & Mohamed Haddar, 2020. "A methodology for solving facility layout problem considering barriers: genetic algorithm coupled with A* search," Journal of Intelligent Manufacturing, Springer, vol. 31(3), pages 615-640, March.
  • Handle: RePEc:spr:joinma:v:31:y:2020:i:3:d:10.1007_s10845-019-01468-x
    DOI: 10.1007/s10845-019-01468-x
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    References listed on IDEAS

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    1. Hani, Y. & Amodeo, L. & Yalaoui, F. & Chen, H., 2007. "Ant colony optimization for solving an industrial layout problem," European Journal of Operational Research, Elsevier, vol. 183(2), pages 633-642, December.
    2. Heragu, Sunderesh S. & Kusiak, Andrew, 1991. "Efficient models for the facility layout problem," European Journal of Operational Research, Elsevier, vol. 53(1), pages 1-13, July.
    3. Panagiotis Kouvelis & Michael W. Kim, 1992. "Unidirectional Loop Network Layout Problem in Automated Manufacturing Systems," Operations Research, INFORMS, vol. 40(3), pages 533-550, June.
    4. Solimanpur, M. & Vrat, P. & Shankar, R., 2004. "Ant colony optimization algorithm to the inter-cell layout problem in cellular manufacturing," European Journal of Operational Research, Elsevier, vol. 157(3), pages 592-606, September.
    5. Gonçalves, José Fernando & Resende, Mauricio G.C., 2015. "A biased random-key genetic algorithm for the unequal area facility layout problem," European Journal of Operational Research, Elsevier, vol. 246(1), pages 86-107.
    6. Xie, Yue & Zhou, Shenghan & Xiao, Yiyong & Kulturel-Konak, Sadan & Konak, Abdullah, 2018. "A β-accurate linearization method of Euclidean distance for the facility layout problem with heterogeneous distance metrics," European Journal of Operational Research, Elsevier, vol. 265(1), pages 26-38.
    7. Samarghandi, Hamed & Eshghi, Kourosh, 2010. "An efficient tabu algorithm for the single row facility layout problem," European Journal of Operational Research, Elsevier, vol. 205(1), pages 98-105, August.
    8. Guan, Jian & Lin, Geng, 2016. "Hybridizing variable neighborhood search with ant colony optimization for solving the single row facility layout problem," European Journal of Operational Research, Elsevier, vol. 248(3), pages 899-909.
    9. Paes, Frederico Galaxe & Pessoa, Artur Alves & Vidal, Thibaut, 2017. "A hybrid genetic algorithm with decomposition phases for the Unequal Area Facility Layout Problem," European Journal of Operational Research, Elsevier, vol. 256(3), pages 742-756.
    10. Friedrich, Christian & Klausnitzer, Armin & Lasch, Rainer, 2018. "Integrated slicing tree approach for solving the facility layout problem with input and output locations based on contour distance," European Journal of Operational Research, Elsevier, vol. 270(3), pages 837-851.
    11. Yavuz A. Bozer & Russell D. Meller & Steven J. Erlebacher, 1994. "An Improvement-Type Layout Algorithm for Single and Multiple-Floor Facilities," Management Science, INFORMS, vol. 40(7), pages 918-932, July.
    12. Jingyang Zhou & Peter E.D. Love & Kok Lay Teo & Hanbin Luo, 2017. "An exact penalty function method for optimising QAP formulation in facility layout problem," International Journal of Production Research, Taylor & Francis Journals, vol. 55(10), pages 2913-2929, May.
    13. Datta, Dilip & Amaral, André R.S. & Figueira, José Rui, 2011. "Single row facility layout problem using a permutation-based genetic algorithm," European Journal of Operational Research, Elsevier, vol. 213(2), pages 388-394, September.
    14. Komarudin & Wong, Kuan Yew, 2010. "Applying Ant System for solving Unequal Area Facility Layout Problems," European Journal of Operational Research, Elsevier, vol. 202(3), pages 730-746, May.
    15. Friedrich, C. & Klausnitzer, A. & Lasch, R., 2018. "Integrated slicing tree approach for solving the facility layout problem with input and output locations based on contour distance," Publications of Darmstadt Technical University, Institute for Business Studies (BWL) 94867, Darmstadt Technical University, Department of Business Administration, Economics and Law, Institute for Business Studies (BWL).
    16. Kusiak, Andrew & Heragu, Sunderesh S., 1987. "The facility layout problem," European Journal of Operational Research, Elsevier, vol. 29(3), pages 229-251, June.
    17. Dunker, Thomas & Radons, Gunter & Westkamper, Engelbert, 2005. "Combining evolutionary computation and dynamic programming for solving a dynamic facility layout problem," European Journal of Operational Research, Elsevier, vol. 165(1), pages 55-69, August.
    18. Anirban Kundu & Pranab K. Dan, 2012. "Metaheuristic in facility layout problems: current trend and future direction," International Journal of Industrial and Systems Engineering, Inderscience Enterprises Ltd, vol. 10(2), pages 238-253.
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    Cited by:

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    2. Xiulian Hu & Yi-Fei Chuang, 2023. "E-commerce warehouse layout optimization: systematic layout planning using a genetic algorithm," Electronic Commerce Research, Springer, vol. 23(1), pages 97-114, March.

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