Flow shop scheduling of hybrid make-to-stock and make-to-order in a distributed precast concrete production system

Prefabrication is not only economically optimal but also environmentally sustainable; hence, it is the future of construction. Furthermore, mass customization is the future of prefabrication. In the mass customization era, the production paradigm in precast concrete (PC) factories will inevitably sh...

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Main Authors: Chen, Chen, Han, Jinchi, Liu, Ziwen, Tiong, Robert Lee Kong
Other Authors: School of Civil and Environmental Engineering
Format: Article
Language:English
Published: 2023
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Online Access:https://hdl.handle.net/10356/170020
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1700202023-08-25T15:33:05Z Flow shop scheduling of hybrid make-to-stock and make-to-order in a distributed precast concrete production system Chen, Chen Han, Jinchi Liu, Ziwen Tiong, Robert Lee Kong School of Civil and Environmental Engineering Engineering::Civil engineering Prefabrication Distributed Manufacturing Prefabrication is not only economically optimal but also environmentally sustainable; hence, it is the future of construction. Furthermore, mass customization is the future of prefabrication. In the mass customization era, the production paradigm in precast concrete (PC) factories will inevitably shift toward a blend of make-to-order (MTO) and make-to-stock (MTS) from the current MTO dominant model. Because PC factories have more motivation to fulfill MTO orders to secure profit, a hierarchical scheduling mechanism of MTO first and MTS second seems reasonable. Meanwhile, an emerging trend of expanding factories overseas is observed in the PC industry, especially in land-scarce countries like Singapore. Given additional resources, the new multiple-factory production network leads to relatively relaxed MTO due dates, which makes the proposed hierarchical scheduling mechanism more sensible. However, finding an optimal production plan for hybrid MTO and MTS on multiple production lines is not easy. There is an assignment problem in addition to the scheduling problem. Both the assignment problem and the scheduling problem are in the class of combinatorial optimization problems (COPs). Given that the use of meta-heuristics for solving complex COPs is a rapidly growing research topic, this paper employs meta-heuristic methods to solve the two problems simultaneously. Comparisons between the genetic algorithm and the whale optimization algorithm are made. Through the computational evaluation of a test case, the performance and effectiveness of the proposed methods are verified. Published version 2023-08-22T01:23:11Z 2023-08-22T01:23:11Z 2023 Journal Article Chen, C., Han, J., Liu, Z. & Tiong, R. L. K. (2023). Flow shop scheduling of hybrid make-to-stock and make-to-order in a distributed precast concrete production system. Cleaner Logistics and Supply Chain, 7, 100106-. https://dx.doi.org/10.1016/j.clscn.2023.100106 2772-3909 https://hdl.handle.net/10356/170020 10.1016/j.clscn.2023.100106 2-s2.0-85151718765 7 100106 en Cleaner Logistics and Supply Chain © 2023 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/). application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Civil engineering
Prefabrication
Distributed Manufacturing
spellingShingle Engineering::Civil engineering
Prefabrication
Distributed Manufacturing
Chen, Chen
Han, Jinchi
Liu, Ziwen
Tiong, Robert Lee Kong
Flow shop scheduling of hybrid make-to-stock and make-to-order in a distributed precast concrete production system
description Prefabrication is not only economically optimal but also environmentally sustainable; hence, it is the future of construction. Furthermore, mass customization is the future of prefabrication. In the mass customization era, the production paradigm in precast concrete (PC) factories will inevitably shift toward a blend of make-to-order (MTO) and make-to-stock (MTS) from the current MTO dominant model. Because PC factories have more motivation to fulfill MTO orders to secure profit, a hierarchical scheduling mechanism of MTO first and MTS second seems reasonable. Meanwhile, an emerging trend of expanding factories overseas is observed in the PC industry, especially in land-scarce countries like Singapore. Given additional resources, the new multiple-factory production network leads to relatively relaxed MTO due dates, which makes the proposed hierarchical scheduling mechanism more sensible. However, finding an optimal production plan for hybrid MTO and MTS on multiple production lines is not easy. There is an assignment problem in addition to the scheduling problem. Both the assignment problem and the scheduling problem are in the class of combinatorial optimization problems (COPs). Given that the use of meta-heuristics for solving complex COPs is a rapidly growing research topic, this paper employs meta-heuristic methods to solve the two problems simultaneously. Comparisons between the genetic algorithm and the whale optimization algorithm are made. Through the computational evaluation of a test case, the performance and effectiveness of the proposed methods are verified.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Chen, Chen
Han, Jinchi
Liu, Ziwen
Tiong, Robert Lee Kong
format Article
author Chen, Chen
Han, Jinchi
Liu, Ziwen
Tiong, Robert Lee Kong
author_sort Chen, Chen
title Flow shop scheduling of hybrid make-to-stock and make-to-order in a distributed precast concrete production system
title_short Flow shop scheduling of hybrid make-to-stock and make-to-order in a distributed precast concrete production system
title_full Flow shop scheduling of hybrid make-to-stock and make-to-order in a distributed precast concrete production system
title_fullStr Flow shop scheduling of hybrid make-to-stock and make-to-order in a distributed precast concrete production system
title_full_unstemmed Flow shop scheduling of hybrid make-to-stock and make-to-order in a distributed precast concrete production system
title_sort flow shop scheduling of hybrid make-to-stock and make-to-order in a distributed precast concrete production system
publishDate 2023
url https://hdl.handle.net/10356/170020
_version_ 1779156248549130240