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Solving a Two-Level Location Problem with Nonlinear Costs and Limited Capacity: Application of Two-Phase Recursive Algorithm Based on Scatter Search Cover

Solving a Two-Level Location Problem with Nonlinear Costs and Limited Capacity: Application of Two-Phase Recursive Algorithm Based on Scatter Search

Open Access
|Oct 2023

References

  1. Fofou R.F., Jiang Z., Gong Q., Yang Y., A decision-making model for remanufacturing facility location in underdeveloped countries: a capacitated facility location problem approach, Sustainability, 14, 22, 2022, 15204.
  2. Dasci A., Verter V., The plant location and technology acquisition problem, IIE transactions, 33, 11, 2001, 963-974.
  3. Sherif S.U., Asokan P., Sasikumar P., Mathiyazhagan K., Jerald J., An integrated decision making approach for the selection of battery recycling plant location under sustainable environment, Journal of Cleaner Production, 330, 2022, 129784.
  4. Goli A., Keshavarz, T., Just-in-time scheduling in identical parallel machine sequence-dependent group scheduling problem, Journal of Industrial and Management Optimization, 18, 6, 2021, 3807-3830.
  5. Goli A., Malmir B., A covering tour approach for disaster relief locating and routing with fuzzy demand, International Journal of Intelligent Transportation Systems Research, 18, 1, 2020, 140-152.
  6. Goli A., Khademi-Zare H., Tavakkoli-Moghaddam R., Sadeghieh A., Sasanian M., Malekalipour Kordestanizadeh R., An integrated approach based on artificial intelligence and novel meta-heuristic algorithms to predict demand for dairy products: a case study, Network: computation in neural systems, 32, 1, 2021, 1-35.
  7. Harkness J., ReVelle C., Facility location with increasing production costs, European Journal of Operational Research, 145,1, 2003, 1-13.
  8. Holmberg K., Exact solution methods for uncapacitated location problems with convex transportation costs, European Journal of Operational Research, 114,1, 1999, 127-140.
  9. Holmberg K., Ling J., A Lagrangean heuristic for the facility location problem with staircase costs, European journal of operational research, 97, 1, 1997, 63-74.
  10. Martí R., Laguna M., Glover F., Principles of scatter search, European Journal of operational Research, 169, 2, 2006, 359-372.
  11. Mirchandani P.B., Francis R.L., Discrete location theory. 1990.
  12. Pahlevan S.M., Hosseini S.M.S., Goli A., Sustainable supply chain network design using products’ life cycle in the aluminum industry, Environmental Science and Pollution Research, 2021, 1-25.
  13. Pirkul H., Jayaraman V., A multi-commodity, multi-plant, capacitated facility location problem: formulation and efficient heuristic solution, Computers & Operations Research, 25,10, 1998, 869-878.
  14. Revelle C.S., Eiselt H.A. Daskin M.S., A bibliography for some fundamental problem categories in discrete location science, European journal of operational research, 184,3, 2008, 817-848.
  15. Friedrich C.J., Weber A., Alfred Weber’s theory of the location of industries, University of Chicago Press. 1929.
  16. Wollenweber J., A multi-stage facility location problem with staircase costs and splitting of commodities: model, heuristic approach and application, OR Spectrum, 30,4, 2008, 655-673.
  17. Wu L.Y., Zhang X.S., Zhang J.L. Capacitated facility location problem with general setup cost, Computers & Operations Research, 33,5, 2006, 1226-1241.
  18. Krynke M., Ivanova T.N., Revenko N.F., Factors, Increasing the Efficiency of Work of Maintenance, Repair and Operation Units of Industrial Enterprises, Management Systems in Production Engineering, 30,1, 2022, 91-97.
  19. Sahimi M., Tahmasebi P., Reconstruction, optimization, and design of heterogeneous materials and media: Basic principles, computational algorithms, and applications, Physics Reports, 939, 2021, 1-82.
  20. Salimifard,K., Bigharaz S., The multicommodity network flow problem: state of the art classification, applications, and solution methods, Operational Research, 22,1, 2022, 1-47.
  21. Maity G., Kumar Roy S., Solving a multi-objective transportation problem with nonlinear cost and multi-choice demand, International Journal of Management Science and Engineering Management, 11,1, 2016, 62-70.
  22. Das S.K., Roy S.K., Weber G.W., Application of type-2 fuzzy logic to a multiobjective green solid transportation–location problem with dwell time under carbon tax, cap, and offset policy: fuzzy versus nonfuzzy techniques, IEEE Transactions on Fuzzy Systems, 28, 11, 2020, 2711-2725.
  23. Das S.K., Roy S.K., Effect of variable carbon emission in a multi-objective transportation-p-facility location problem under neutrosophic environment, Computers & Industrial Engineering, 132, 2019, 311-324.
DOI: https://doi.org/10.2478/fcds-2023-0016 | Journal eISSN: 2300-3405 | Journal ISSN: 0867-6356
Language: English
Page range: 371 - 384
Submitted on: Jul 8, 2022
Accepted on: May 14, 2023
Published on: Oct 5, 2023
Published by: Poznan University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2023 Danny Meirawan, Alim Al-Ayub Ahmed, Fouad Jameel Ibrahim Alazzawi, Paitoon Chetthamrongchai, Ahmed Alkhayyat, Ermi Utami, Elena Igorevna Artemova, Olga Bykanova, Dedy Achmad Kurniady, Aan Komariah, published by Poznan University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.