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An improved multi-objective framework for the Rich arc routing problem

Producción científica: Articlerevisión exhaustiva

3 Citas (Scopus)

Resumen

This article introduces a Rich Arc Routing Problem (RARP). Required arcs are partitioned into given clusters, and each cluster shall be serviced for prescribed times during the planning horizon. There is a time limit that restricts the visits that can be performed in a single day. Each vehicle has to stop at one of intermediate facilities before the end of the specific hours per day. Accordingly, several days may be necessary to complete all tasks, and paths traveled by different vehicles on the same day shall not overlap. The RARP consists of finding a set of routes with (i) the minimum total distance, (ii) the minimum number of vehicles, (iii) the minimum pure working days, and (iv) the temporal service time interval consistency of each cluster. Recently, a Local-Ideal-Points based Autonomous Space Decomposition (LIP-ASD) algorithm has been demonstrated to be a competitive multi-objective framework. However, randomly generating an initial population in each decomposed space decreases the convergence speed of LIP-ASD. In addition, retaining only one individual preserved in each sub-space limits population diversity. In response to these issues, an Improved LIP-ASD (I-LIP-ASD) for RARP is developed. The two improvements of the proposed algorithm are as follows: (i) the initial population in the current sub-space is generated by combining existing nondominated individuals, and (ii) all nondominated solutions will be output from the evolved population in each decomposed sub-space. Finally, we conduct a series of experiments over converted capacitated arc routing problem instances, as well as analyze them under a real-world case to evaluate and demonstrate the effectiveness of the proposed solution algorithm.

Idioma originalEnglish
Número de artículo106345
PublicaciónComputers and Operations Research
Volumen159
DOI
EstadoPublished - nov 2023

Nota bibliográfica

Publisher Copyright:
© 2023 Elsevier Ltd

Financiación

We are grateful to the reviewers whose constructive comments have helped us to improve the work. This work was supported by the Fundamental Research Funds for the Central Universities (2022YJS063 and 2019JBZ105). This research has also been financially supported by Beijing Metro Operation through a project. The metro network and other detailed data are from Beijing Metro Corporation. We are grateful to the reviewers whose constructive comments have helped us to improve the work. This work was supported by the Fundamental Research Funds for the Central Universities (2022YJS063 and 2019JBZ105). This research has also been financially supported by Beijing Metro Operation through a project. The metro network and other detailed data are from Beijing Metro Corporation.

FinanciadoresNúmero del financiador
Beijing Metro Corporation
Beijing Metro Operation
Fundamental Research Funds for the Central Universities2019JBZ105, 2022YJS063

    ASJC Scopus subject areas

    • General Computer Science
    • Modeling and Simulation
    • Management Science and Operations Research

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