A note on integrated disassembly line balancing and routing problem

This note comments on the study of [Diri Kenger, Zülal, Çağrı Koç, and Eren Özceylan. 2020. "Integrated Disassembly Line Balancing and Routing Problem." International Journal of Production Research 58 (23): 7250-7268.] which studies an integrated disassembly line balancing and routing prob...

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Veröffentlicht in:International journal of production research Jg. 61; H. 9; S. 3145 - 3151
Hauptverfasser: Feng, Jianguang, Che, Ada
Format: Journal Article
Sprache:Englisch
Veröffentlicht: London Taylor & Francis 03.05.2023
Taylor & Francis LLC
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ISSN:0020-7543, 1366-588X
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Abstract This note comments on the study of [Diri Kenger, Zülal, Çağrı Koç, and Eren Özceylan. 2020. "Integrated Disassembly Line Balancing and Routing Problem." International Journal of Production Research 58 (23): 7250-7268.] which studies an integrated disassembly line balancing and routing problem and develops two mixed integer linear programming (MILP) models and three mixed integer nonlinear programming (MINLP) models to handle five different scenarios, respectively. The purpose is twofold. First, we demonstrate that the two MILP models can be separated into two parallel subproblems whose optimal solutions can be combined to obtain the optimal solution of the original models. Second, we show that the three MINLP models can be linearised and propose two different linearisation techniques to reformulate them as equivalent MILP models. Computational results indicate that the linearised model outperforms the original nonlinear model in most cases.
AbstractList This note comments on the study of [Diri Kenger, Zülal, Çağrı Koç, and Eren Özceylan. 2020. “Integrated Disassembly Line Balancing and Routing Problem.” International Journal of Production Research 58 (23): 7250–7268.] which studies an integrated disassembly line balancing and routing problem and develops two mixed integer linear programming (MILP) models and three mixed integer nonlinear programming (MINLP) models to handle five different scenarios, respectively. The purpose is twofold. First, we demonstrate that the two MILP models can be separated into two parallel subproblems whose optimal solutions can be combined to obtain the optimal solution of the original models. Second, we show that the three MINLP models can be linearised and propose two different linearisation techniques to reformulate them as equivalent MILP models. Computational results indicate that the linearised model outperforms the original nonlinear model in most cases.
Author Che, Ada
Feng, Jianguang
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  email: ache@nwpu.edu.cn
  organization: Northwestern Polytechnical University
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CitedBy_id crossref_primary_10_1016_j_cie_2025_111210
crossref_primary_10_1016_j_asoc_2024_111415
crossref_primary_10_1080_00207543_2024_2416560
crossref_primary_10_1016_j_ijpe_2024_109257
crossref_primary_10_1016_j_rcim_2025_103094
crossref_primary_10_1080_00207543_2023_2201352
Cites_doi 10.1080/07408170802510390
10.1080/00207543.2020.1740346
10.1287/opre.22.1.180
10.1080/00207543.2014.965348
10.1016/S0377-2217(00)00097-7
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Snippet This note comments on the study of [Diri Kenger, Zülal, Çağrı Koç, and Eren Özceylan. 2020. "Integrated Disassembly Line Balancing and Routing Problem."...
This note comments on the study of [Diri Kenger, Zülal, Çağrı Koç, and Eren Özceylan. 2020. “Integrated Disassembly Line Balancing and Routing Problem.”...
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SubjectTerms Balancing
Disassembly line balancing
Dismantling
Integer programming
Linear programming
linearisation technique
Linearization
Mixed integer
mixed integer linear programming
Nonlinear programming
vehicle routing problem
Title A note on integrated disassembly line balancing and routing problem
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