A methodology to design multimodal public transit networks : procedures and applications

This thesis deals with public transit network design problem, one of the core issues facing the existing planning and operation of public transit systems. More specifically, this problem involves designing an efficient/optimal set of routes and their associated frequencies for public transit network...

Full description

Bibliographic Details
Main Author: Ul Abedin, Zain
Other Authors: Wang Zhiwei, David
Format: Thesis-Doctor of Philosophy
Language:English
Published: Nanyang Technological University 2019
Subjects:
Online Access:https://hdl.handle.net/10356/136540
_version_ 1811694377717727232
author Ul Abedin, Zain
author2 Wang Zhiwei, David
author_facet Wang Zhiwei, David
Ul Abedin, Zain
author_sort Ul Abedin, Zain
collection NTU
description This thesis deals with public transit network design problem, one of the core issues facing the existing planning and operation of public transit systems. More specifically, this problem involves designing an efficient/optimal set of routes and their associated frequencies for public transit networks, given certain constraints. A novel route overlap-based approach is developed for this design undertake considering the perspectives of passengers and agencies. The concept of route overlap entails the ratio of common segments/arcs that each route shares with the remaining set of the routes of the transit network. Varying this ratio results with a variety of transit-network configurations such as a sparse network with lower ratios and dense network with higher ratios. The main part of the developed methodology consists of four major components. It starts with transit route creation and network construction where, at first, feasible routes are created by using the traditional k-shortest path algorithm, and then route overlap concept is used to design a public transit network. The second component is the analysis of assigning transit demand including headway derivation; this is used to assign demand onto the transit network and to generate travel times and suitable transit modes. The third component is the holistic evaluation of the transit network; this is done by using performance metrics to reflect the viewpoints of passengers, agencies and authorities. The last component is a metaheuristic search engine employed to explore feasible search space for attaining improved transit network configurations from both passengers and agencies perspectives. The new methodology undergone testing of different networks including benchmark and real-life networks. The outcomes of the experiments are used for the evaluation and validation of the proposed methodology including a comparison with other research studies. The results show that instead of using many overlapping redundant routes, it is more efficient and productive to have lesser number of routes with a reduced number of overlapping route segments; this will be more suitable and efficient for both passengers and agencies. Finally, the viability of the developed methodology is examined for the Singapore’s public transit network; the results suggest that this network can be optimised further with even lesser number of routes.
first_indexed 2024-10-01T07:06:37Z
format Thesis-Doctor of Philosophy
id ntu-10356/136540
institution Nanyang Technological University
language English
last_indexed 2024-10-01T07:06:37Z
publishDate 2019
publisher Nanyang Technological University
record_format dspace
spelling ntu-10356/1365402020-11-01T04:58:47Z A methodology to design multimodal public transit networks : procedures and applications Ul Abedin, Zain Wang Zhiwei, David Interdisciplinary Graduate School (IGS) TUMCREATE Ltd. Fritz Busch WangZhiwei@ntu.edu.sg Engineering::Civil engineering::Transportation This thesis deals with public transit network design problem, one of the core issues facing the existing planning and operation of public transit systems. More specifically, this problem involves designing an efficient/optimal set of routes and their associated frequencies for public transit networks, given certain constraints. A novel route overlap-based approach is developed for this design undertake considering the perspectives of passengers and agencies. The concept of route overlap entails the ratio of common segments/arcs that each route shares with the remaining set of the routes of the transit network. Varying this ratio results with a variety of transit-network configurations such as a sparse network with lower ratios and dense network with higher ratios. The main part of the developed methodology consists of four major components. It starts with transit route creation and network construction where, at first, feasible routes are created by using the traditional k-shortest path algorithm, and then route overlap concept is used to design a public transit network. The second component is the analysis of assigning transit demand including headway derivation; this is used to assign demand onto the transit network and to generate travel times and suitable transit modes. The third component is the holistic evaluation of the transit network; this is done by using performance metrics to reflect the viewpoints of passengers, agencies and authorities. The last component is a metaheuristic search engine employed to explore feasible search space for attaining improved transit network configurations from both passengers and agencies perspectives. The new methodology undergone testing of different networks including benchmark and real-life networks. The outcomes of the experiments are used for the evaluation and validation of the proposed methodology including a comparison with other research studies. The results show that instead of using many overlapping redundant routes, it is more efficient and productive to have lesser number of routes with a reduced number of overlapping route segments; this will be more suitable and efficient for both passengers and agencies. Finally, the viability of the developed methodology is examined for the Singapore’s public transit network; the results suggest that this network can be optimised further with even lesser number of routes. Doctor of Philosophy 2019-12-26T06:19:20Z 2019-12-26T06:19:20Z 2019 Thesis-Doctor of Philosophy Ul Abedin, Z. (2019). A methodology to design multimodal public transit networks : procedures and applications. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/136540 10.32657/10356/136540 en application/pdf Nanyang Technological University
spellingShingle Engineering::Civil engineering::Transportation
Ul Abedin, Zain
A methodology to design multimodal public transit networks : procedures and applications
title A methodology to design multimodal public transit networks : procedures and applications
title_full A methodology to design multimodal public transit networks : procedures and applications
title_fullStr A methodology to design multimodal public transit networks : procedures and applications
title_full_unstemmed A methodology to design multimodal public transit networks : procedures and applications
title_short A methodology to design multimodal public transit networks : procedures and applications
title_sort methodology to design multimodal public transit networks procedures and applications
topic Engineering::Civil engineering::Transportation
url https://hdl.handle.net/10356/136540
work_keys_str_mv AT ulabedinzain amethodologytodesignmultimodalpublictransitnetworksproceduresandapplications
AT ulabedinzain methodologytodesignmultimodalpublictransitnetworksproceduresandapplications