Coordination-based reactive resource-constrained project scheduling

Due to the increasing use of prefabricated building blocks in construction projects, on-site storages with limited space need to be utilized more efficiently to start the construction activities relating to the blocks on time. Especially when the construction schedule is disrupted by an unexpected e...

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Veröffentlicht in:Procedia CIRP Jg. 81; S. 51 - 56
Hauptverfasser: Joo, Byung Jun, Chua, Tay Jin, Cai, Tian Xiang, Chua, Ping Chong
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Elsevier B.V 2019
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ISSN:2212-8271, 2212-8271
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Abstract Due to the increasing use of prefabricated building blocks in construction projects, on-site storages with limited space need to be utilized more efficiently to start the construction activities relating to the blocks on time. Especially when the construction schedule is disrupted by an unexpected event, it needs to be revised by coordinating the delivery times of prefabricated blocks from suppliers, subject to the limited storage space, for minimizing the impact on the project duration. In this paper, a coordination-based reactive scheduling procedure is proposed for a reactive multimode resource-constrained project scheduling problem with limited on-site storage space and its effectiveness is validated through computational experiments. The authors expect that the proposed procedure is also applicable to engineer-to-order (ETO) and make-to-order (MTO) manufacturing systems with limited on-site storage space for raw materials.
AbstractList Due to the increasing use of prefabricated building blocks in construction projects, on-site storages with limited space need to be utilized more efficiently to start the construction activities relating to the blocks on time. Especially when the construction schedule is disrupted by an unexpected event, it needs to be revised by coordinating the delivery times of prefabricated blocks from suppliers, subject to the limited storage space, for minimizing the impact on the project duration. In this paper, a coordination-based reactive scheduling procedure is proposed for a reactive multimode resource-constrained project scheduling problem with limited on-site storage space and its effectiveness is validated through computational experiments. The authors expect that the proposed procedure is also applicable to engineer-to-order (ETO) and make-to-order (MTO) manufacturing systems with limited on-site storage space for raw materials.
Author Cai, Tian Xiang
Chua, Tay Jin
Joo, Byung Jun
Chua, Ping Chong
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Keywords prefabrication
penalty
negotiation
Project scheduling
reward contract
reactive scheduling
coordination
Language English
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Snippet Due to the increasing use of prefabricated building blocks in construction projects, on-site storages with limited space need to be utilized more efficiently...
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StartPage 51
SubjectTerms coordination
negotiation
penalty
prefabrication
Project scheduling
reactive scheduling
reward contract
Title Coordination-based reactive resource-constrained project scheduling
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