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A Bilevel Multi-Objective Model for Sustainable Road Pricing Design on A Bimodal Transport Network

机译:双峰运输网络上可持续道路定价设计的双层多目标模型

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This study proposes a bilevel multi-objective model to find road tolls for sustainable urban development on a bimodal transportation network. Three objectives, including minimization of total travel time budget, total exhaust emissions and negative impacts for health, are considered in the upper level model, which correspond to economic, environmental and social sustainability, respectively. Meanwhile, the lower level is a joint model of mode split and route choice for each individual traveler in which mode choice equilibrium follows the binary logit discrete choice model and path choice equilibrium is determined by a three-objective user equilibrium that achieves the travel time budget surplus (TBS) maximization. For solving the proposed bilevel optimization model, the paper develops an algorithm that combines the multi-objective genetic algorithm (NSGA-II) and a path-based traffic assignment algorithm. Then the feasibility and effectiveness of the algorithm are well demonstrated by a numerical example.
机译:这项研究提出了一种双层多目标模型,以在双峰运输网络上寻找可持续城市发展的道路通行费。在上层模型中考虑了三个目标,包括最小化总旅行时间预算,总废气排放和对健康的负面影响,这三个目标分别对应于经济,环境和社会的可持续性。同时,下层是针对每个单独旅行者的模式划分和路线选择的联合模型,其中,模式选择均衡遵循二进制对数离散选择模型,而路径选择均衡则由达到旅行时间预算的三目标用户均衡确定剩余(TBS)最大化。为了解决所提出的双层优化模型,本文开发了一种将多目标遗传算法(NSGA-II)和基于路径的交通分配算法相结合的算法。数值例子很好地证明了该算法的可行性和有效性。

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