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Promet - Traffic&Transportation journal

Accelerating Discoveries in Traffic Science

Accelerating Discoveries in Traffic Science

PUBLISHED
27.12.2018
LICENSE
Copyright (c) 2024 Ozgur Baskan, Cenk Ozan, Mauro Dell’Orco, Mario Marinelli

Improving the Performance of the Bilevel Solution for the Continuous Network Design Problem

Authors:

Ozgur Baskan
Pamukkale University

Cenk Ozan
Adnan Menderes University

Mauro Dell’Orco
Polytechnic University of Bari

Mario Marinelli
Polytechnic University of Bari

Keywords:continuous network design, capacity enhancement, mutual interaction, user equilibrium

Abstract

For a long time, many researchers have investigated the continuous network design problem (CNDP) to distribute equitably additional capacity between selected links in a road network, to overcome traffic congestion in urban roads. In addition, CNDP plays a critical role for local authorities in tackling traffic congestion with a limited budget. Due to the mutual interaction between road users and local authorities, CNDP is usually solved using the bilevel modeling technique. The upper level seeks to find the optimal capacity enhancements of selected links, while the lower level is used to solve the traffic assignment problem. In this study, we introduced the enhanced differential evolution algorithm based on multiple improvement strategies (EDEMIS) for solving CNDP. We applied EDEMIS first to a hypothetical network to show its ability in finding the global optimum solution, at least in a small network. Then, we used a 16-link network to reveal the capability of EDEMIS especially in the case of high demand. Finally, we used the Sioux Falls city network to evaluate the performance of EDEMIS according to other solution methods on a medium-sized road network. The results showed that EDEMIS produces better solutions than other considered algorithms, encouraging transportation planners to use it in large-scale road networks.

References

  1. Baskan O. Harmony search algorithm for continuous network design problem with link capacity expansions. KSCE Journal of Civil Engineering. 2014; 18(1): 273-283. DOI: 10.1007/s12205-013-0122-6.

    Farahani RZ, Miandoabchi E, Szeto WY, Rashidi H. A review of urban transportation network design problems. European Journal of Operational Research. 2013; 229: 281-302. DOI: 10.1016/j.ejor.2013.01.001

    Baskan O, Ceylan H. Modified Differential Evolution Algorithm for the Continuous Network Design Problem. Procedia-Social and Behavioral Sciences. 2014; 111: 48-57. DOI: 10.1016/j.sbspro.2014.01.037

    Abdulaal M, LeBlanc L. Continuous equilibrium network design models. Transportation Research Part B. 1979; 13(1): 19-32. DOI: 10.1016/0191-2615(79)90004-3.

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    Marcotte P. Network optimization with continuous control

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How to Cite
Baskan, O. (et al.) 2018. Improving the Performance of the Bilevel Solution for the Continuous Network Design Problem. Traffic&Transportation Journal. 30, 6 (Dec. 2018), 709-720. DOI: https://doi.org/10.7307/ptt.v30i6.2789.

SPECIAL ISSUE IS OUT

Guest Editor: Eleonora Papadimitriou, PhD

Editors: Marko Matulin, PhD, Dario Babić, PhD, Marko Ševrović, PhD


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