Simultaneous optimization of network and fares for self-financing public transportation system

Atsushi Sugama , Makoto Okumura
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Abstract

The public transportation system in densely populated areas is often managed as a self-financing system due to fare passenger revenues. In a self-financing system, the network structure and the monetary fare mutually interact; therefore, it is efficient to design both simultaneously. We developed an optimization model that endogenously determines the bus network and fares to maximize the total social surplus of the region. In this study, we conducted numerical applications of the model to a public transportation system around a railroad station in a metropolitan suburb area. The results showed that the optimal network topology changes with the scale of demand, and network shape significantly alters the optimal fare structure. Three types of virtual regions were examined to illustrate optimal fares.

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同时优化自筹资金公共交通系统的网络和票价
人口稠密地区的公共交通系统通常是以乘客票价收入为基础的自筹资金系统。在自筹资金系统中,网络结构和货币票价是相互影响的;因此,同时设计两者是有效的。我们建立了一个优化模型,通过内生决定公交网络和票价,使该地区的社会总剩余最大化。在本研究中,我们将该模型应用于大都市郊区铁路车站周围的公共交通系统。结果表明,最佳网络拓扑结构会随着需求规模的变化而变化,网络形状会显著改变最佳票价结构。研究了三种类型的虚拟区域,以说明最优票价。
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