Smart City Public Transportation Route Planning Based on Multi-objective Optimization: A Review

This paper investigates the implementation of a Multi-Objective Optimization technique for improving public transportation route planning in the setting of smart cities. Recognizing the difficulties of urban mobility, our technique incorporates a variety of criteria, including traffic patterns, cost...

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Published inArchives of computational methods in engineering Vol. 31; no. 6; pp. 3351 - 3375
Main Authors Xiao, Ming, Chen, Lihua, Feng, Haoxiong, Peng, Zhigao, Long, Qiong
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Netherlands 01.08.2024
Springer Nature B.V
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Online AccessGet full text
ISSN1134-3060
1886-1784
DOI10.1007/s11831-024-10076-9

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Abstract This paper investigates the implementation of a Multi-Objective Optimization technique for improving public transportation route planning in the setting of smart cities. Recognizing the difficulties of urban mobility, our technique incorporates a variety of criteria, including traffic patterns, cost-effectiveness, and environmental impact, to create an efficient route design system. The research applies complex algorithms to overcome the issues present in existing route planning procedures, using real-world data sources such as GPS data and traffic reports. We illustrate the efficacy of our strategy in boosting time efficiency, lowering costs, and decreasing environmental footprints via extensive case studies. The assessment measures used emphasise the suggested system’s advantages over current techniques. The debate digs into the larger implications for smart city development, recognising limits and providing possibilities for further study. This study adds vital insights and practical answers to the developing subject of smart city transportation, providing a solid basis for the continuing growth of urban mobility.
AbstractList This paper investigates the implementation of a Multi-Objective Optimization technique for improving public transportation route planning in the setting of smart cities. Recognizing the difficulties of urban mobility, our technique incorporates a variety of criteria, including traffic patterns, cost-effectiveness, and environmental impact, to create an efficient route design system. The research applies complex algorithms to overcome the issues present in existing route planning procedures, using real-world data sources such as GPS data and traffic reports. We illustrate the efficacy of our strategy in boosting time efficiency, lowering costs, and decreasing environmental footprints via extensive case studies. The assessment measures used emphasise the suggested system’s advantages over current techniques. The debate digs into the larger implications for smart city development, recognising limits and providing possibilities for further study. This study adds vital insights and practical answers to the developing subject of smart city transportation, providing a solid basis for the continuing growth of urban mobility.
Author Long, Qiong
Feng, Haoxiong
Xiao, Ming
Chen, Lihua
Peng, Zhigao
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  fullname: Long, Qiong
  organization: College of Civil Engineering, Hunan City University
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Snippet This paper investigates the implementation of a Multi-Objective Optimization technique for improving public transportation route planning in the setting of...
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SubjectTerms Algorithms
Cost effectiveness
Engineering
Environmental impact
Mathematical and Computational Engineering
Multiple objective analysis
Optimization techniques
Pattern recognition
Public transportation
Review Article
Route planning
Smart cities
Spatial data
Traffic planning
Urban transportation
Title Smart City Public Transportation Route Planning Based on Multi-objective Optimization: A Review
URI https://link.springer.com/article/10.1007/s11831-024-10076-9
https://www.proquest.com/docview/3098253091
Volume 31
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