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Integrated production and outbound distribution scheduling problems with job release dates and deadlines

Fu, Liangliang; Aloulou, Mohamed Ali; Artigues, Christian (2017), Integrated production and outbound distribution scheduling problems with job release dates and deadlines, Journal of Scheduling, 21, 4, p. 443–460. 10.1007/s10951-017-0542-0

Type
Article accepté pour publication ou publié
External document link
https://hal.archives-ouvertes.fr/hal-01351929
Date
2017
Journal name
Journal of Scheduling
Volume
21
Number
4
Publisher
Springer
Pages
443–460
Publication identifier
10.1007/s10951-017-0542-0
Metadata
Show full item record
Author(s)
Fu, Liangliang
Laboratoire d'analyse et modélisation de systèmes pour l'aide à la décision [LAMSADE]
Aloulou, Mohamed Ali
Laboratoire d'analyse et modélisation de systèmes pour l'aide à la décision [LAMSADE]
Artigues, Christian
Laboratoire d'analyse et d'architecture des systèmes [LAAS]
Abstract (EN)
In this paper, we study an integrated production and outbound distribution scheduling model with one manufacturer and one customer. The manufacturer has to process a set of jobs on a single machine and deliver them in batches to the customer. Each job has a release date and a delivery deadline. The objective of the problem is to issue a feasible integrated production and distribution schedule minimizing the transportation cost subject to the production release dates and delivery deadline constraints. We consider three problems with different ways how a job can be produced and delivered: non-splittable production and delivery (NSP–NSD) problem, splittable production and non-splittable delivery problem and splittable production and delivery problem. We provide polynomial-time algorithms that solve special cases of the problem. One of these algorithms allows us to compute a lower bound for the NP-hard problem NSP–NSD, which we use in a branch-and-bound (B&B) algorithm to solve problem NSP–NSD. The computational results show that the B&B algorithm outperforms a MILP formulation of the problem implemented on a commercial solver.
Subjects / Keywords
Single machine scheduling; Production and delivery; Release dates; DeadlinesTransportation costs; Branch-and-bound

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    Fu, Liangliang; Aloulou, Mohamed Ali; Artigues, Christian (2014) Communication / Conférence
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    Production and Interplant Batch Delivery Scheduling: Dominance and Cooperation 
    Agnetis, Alessandro; Aloulou, Mohamed Ali; Fu, Liangliang (2013) Communication / Conférence
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