A Multi-Objective Mathematical Programming Model for Transit Network Design and Frequency Setting Problem

In this study, we propose a novel multi-objective nonlinear mixed-integer mathematical programming model for the transit network design and frequency setting problem that aims at designing the routes and determining the frequencies of the routes to satisfy passenger demand in a transit network. The proposed model incorporates the features of real-life transit network systems and reflects the views of both passengers and the transit agency by considering the in-vehicle travel time, transfers, waiting times at the boarding and transfer stops, overcrowding and under-utilization of vehicles, and vehicle fleet size. Unlike previous studies that simplify several aspects of the transit network design and frequency setting problem, the proposed model is the first to determine routes and their frequencies simultaneously from scratch, i.e., without using line and frequency pools while considering the aforementioned issues, such as transfers and waiting. We solve the proposed model using Gurobi. We provide the results of what-if analyses conducted using a real-world public bus transport network in the city of Kayseri in Türkiye. We also present the results of computational tests implemented to validate and verify the model using Mandl benchmark instances from the literature. The results indicate that the model produces better solutions than the state-of-the-art algorithms in the literature and that the model can be used by public transit planners as a decision aid.

Keyword: mathematical programming; nonlinear mixed-integer programming; public transport; real-world application; transit network route design and frequency setting problem; urban public transportation; urban transit network design

Просмотры
19
23.11.2023 - с этой даты
Скачано
1
23.11.2023 - с этой даты
Дата последнего доступа
28 Mayıs 2024 11:38
Проверка Google
Нажмите
Полный текст
Детальный вид
Название публикации
(dc.title)
A Multi-Objective Mathematical Programming Model for Transit Network Design and Frequency Setting Problem
Автор/ы
(dc.contributor.yazarlar)
Abdulkerim Benli, İbrahim Akgün
Вид публикации
(dc.type)
Makale
Язык
(dc.language)
İngilizce
Год публикации
(dc.date.issued)
2023
Национальный/Международный
(dc.identifier.ulusaluluslararasi)
Uluslararası
Источник
(dc.relation.journal)
Mathematics
Номер
(dc.identifier.issue)
21
Том/№
(dc.identifier.volume)
11
Страница
(dc.identifier.startpage)
Article Number: 4488
ISSN/ISBN
(dc.identifier.issn)
ISSN: 2227-7390
Издатель
(dc.publisher)
MDPI, Switzerland
Базы данных
(dc.contributor.veritaban)
Web of Science Core Collection
Базы данных
(dc.contributor.veritaban)
MDPI
Базы данных
(dc.contributor.veritaban)
Scopus
Вид индекса
(dc.identifier.index)
SCI Expanded
Вид индекса
(dc.identifier.index)
Scopus
Импакт-фактор
(dc.identifier.etkifaktoru)
2,4 / 2022-WOS / Son 5 yıl: 2,3
Резюме
(dc.description.abstract)
In this study, we propose a novel multi-objective nonlinear mixed-integer mathematical programming model for the transit network design and frequency setting problem that aims at designing the routes and determining the frequencies of the routes to satisfy passenger demand in a transit network. The proposed model incorporates the features of real-life transit network systems and reflects the views of both passengers and the transit agency by considering the in-vehicle travel time, transfers, waiting times at the boarding and transfer stops, overcrowding and under-utilization of vehicles, and vehicle fleet size. Unlike previous studies that simplify several aspects of the transit network design and frequency setting problem, the proposed model is the first to determine routes and their frequencies simultaneously from scratch, i.e., without using line and frequency pools while considering the aforementioned issues, such as transfers and waiting. We solve the proposed model using Gurobi. We provide the results of what-if analyses conducted using a real-world public bus transport network in the city of Kayseri in Türkiye. We also present the results of computational tests implemented to validate and verify the model using Mandl benchmark instances from the literature. The results indicate that the model produces better solutions than the state-of-the-art algorithms in the literature and that the model can be used by public transit planners as a decision aid.
Резюме
(dc.description.abstract)
Keyword: mathematical programming; nonlinear mixed-integer programming; public transport; real-world application; transit network route design and frequency setting problem; urban public transportation; urban transit network design
URL
(dc.rights)
https://www.mdpi.com/2227-7390/21.11.4488
DOI
(dc.identifier.doi)
10.3390/math11214488
Факультет / Институт
(dc.identifier.fakulte)
Mühendislik Fakültesi
Кафедра
(dc.identifier.bolum)
Endüstri Mühendisliği Bölümü
Автор(ы) в учреждении
(dc.contributor.author)
İbrahim AKGÜN
№ регистрации
(dc.identifier.kayitno)
BLCE22E3CE
Дата регистрации
(dc.date.available)
2023-11-23
Заметка (Год публикации)
(dc.identifier.notyayinyili)
November 2023
Wos No
(dc.identifier.wos)
WOS:001099588800001
Тематический рубрикатор
(dc.subject)
mathematical programming
Тематический рубрикатор
(dc.subject)
nonlinear mixed-integer programming
Тематический рубрикатор
(dc.subject)
public transport
Тематический рубрикатор
(dc.subject)
real-world application
Тематический рубрикатор
(dc.subject)
transit network route design and frequency setting problem
Тематический рубрикатор
(dc.subject)
urban public transportation
Тематический рубрикатор
(dc.subject)
urban transit network design
Анализы
Просмотр публикации
Просмотр публикации
Достигнутые страны
Достигнутые города
Наши обязательства и политика в отношении файлов cookie подпадает под действие закона ТР защите персональных данных № 6698.
Да

creativecommons
Bu site altında yer alan tüm kaynaklar Creative Commons Alıntı-GayriTicari-Türetilemez 4.0 Uluslararası Lisansı ile lisanslanmıştır.
Platforms