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Cited 7 time in webofscience Cited 7 time in scopus
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Evolutionary neural network for learning of scalable heuristics for pickup and delivery problems with time windowsopen access

Authors
Jun, SungbumLee, Seokcheon
Issue Date
Jul-2022
Publisher
Elsevier Ltd.
Keywords
Pickup and delivery problem; Machine learning; Evolutionary neural network; Scalable information; Mixed-integer linear programming
Citation
Computers & Industrial Engineering, v.169, pp 1 - 20
Pages
20
Indexed
SCIE
SCOPUS
Journal Title
Computers & Industrial Engineering
Volume
169
Start Page
1
End Page
20
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/2901
DOI
10.1016/j.cie.2022.108282
ISSN
0360-8352
1879-0550
Abstract
In this paper, we address the pickup and delivery problem with time windows (PDP-TW) and heterogenous vehicles for minimisation of total tardiness by learning heuristics from a given set of solutions. In order to extract scalable heuristics from optimal or best feasible solutions, we propose a machine-learning (ML)-based approach called ENSIGHT (Evolutionary Neural network with Scalable Information for Generation of Heuristics for Transportation). ENSIGHT consists of three phases: solution generation, interpretation of solutions, and improvement of heuristics by an evolutionary neural network (ENN). First, a set of optimal or best feasible solutions for the training set of problem instances is acquired by using the proposed mathematical model. Second, as for the process interpreting those solutions, an approach for transforming them into training data by way of scalable input attributes as well as output discretisation is followed. Third, the ENN improves the learned heuristics by an evolutionary parameter optimisation process for minimization of total tardiness. To verify the performance of the proposed ENSIGHT, we conducted experiments and the results of which showed that it outperforms other ML techniques and the current dispatching rules (DRs). Moreover, the approach was demonstrated to be effective in learning scalable heuristics based on combined scalable inputs and discretisation as well as an evolutionary improvement process.
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