利用模块化自动驾驶车辆改进传统公交服务:双层编程方法

IF 5.1 2区 工程技术 Q1 TRANSPORTATION
Di Huang, Zhitao Hu, Jingyang Tian, Ran Tu
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引用次数: 0

摘要

模块化自动驾驶公交车技术有望被引入公共交通系统,市场渗透率将逐步提高,并将在多式联运公共交通系统中运营,由自动驾驶公交车和传统人工驾驶公交车组成混合车队。本研究建立了一个用于协调优化混合公交系统的双层编程模型,考虑了公交公司和乘客在客流分配中的目标冲突,并从运营和环境角度最大限度地降低了系统成本。结果表明,与传统公交系统相比,自动驾驶公交车的集成大大提高了公交系统的可持续性,运营成本降低了 25.1%,环境成本降低了 27.72%。在减少乘客等待时间的同时,还降低了当前公交系统的碳排放量。本研究最后提出了对引进自动驾驶公交车的一些管理见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving conventional transit services with modular autonomous vehicles: A bi-level programming approach
Modular autonomous bus technology is highly anticipated to be introduced into public transit systems with a gradually increasing market penetration, and it will be operated within a multimodal public transport system with a mixed fleet of autonomous buses and conventional human-driving buses. This study establishes a bi-level programming model for the coordinated optimization of hybrid transit system, considering transit company and passengers with conflicting objectives in passenger flow assignment and minimizing the systematic cost from operational and environmental perspectives. Results show that the integration of autonomous buses significantly improves the sustainability of the transit system, reducing operating costs by 25.1% and environmental costs by 27.72% compared to the conventional transit system. While reducing passenger waiting times, it also decreases carbon emissions of the current transit system. This study concludes with some managerial insights into the introduction of autonomous buses.
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来源期刊
CiteScore
9.80
自引率
7.70%
发文量
109
期刊介绍: Travel Behaviour and Society is an interdisciplinary journal publishing high-quality original papers which report leading edge research in theories, methodologies and applications concerning transportation issues and challenges which involve the social and spatial dimensions. In particular, it provides a discussion forum for major research in travel behaviour, transportation infrastructure, transportation and environmental issues, mobility and social sustainability, transportation geographic information systems (TGIS), transportation and quality of life, transportation data collection and analysis, etc.
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