High-Speed Rail Networks, Capacity Investments and Social Welfare

Valentina Bracaglia, T. D'alfonso, A. Nastasi, Dian Sheng, Y. Wan, A. Zhang
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引用次数: 23

Abstract

Abstract In this paper, we analytically study the performance of two topologies of high-speed rail (HSR) networks: isolated-corridors and grid networks. We evaluate how HSR configuration affects capacity of newly developed infrastructure, profits and social welfare by considering a number of factors, namely economies of traffic density, market size, operating cost and cost of capital. Our investigations focus on a social welfare-maximizing entity which provides HSR train services as well as develops infrastructure. We find that although the grid network allows for more new markets, the isolated-corridors network may perform better in terms of social welfare when the cost of capital is high, the demand in the new markets established by the isolated-corridors network is high, the operating cost (excluding density effect) is high and the traffic density effect is weak. We also identify cases where the optimal network configuration in terms of social welfare may not be optimal in other aspects, such as capacity, consumer surplus and profits. For example, when the density effect is strong, grid network is likely to be socially optimal, but it faces more difficulty in recovering the invest cost comparing with the alterative network.
高铁网络、产能投资和社会福利
摘要本文分析研究了高铁网络的两种拓扑结构:隔离廊道网络和网格网络的性能。我们通过考虑交通密度经济、市场规模经济、运营成本经济和资金成本经济等多个因素,评估高铁配置对新建基础设施容量、利润和社会福利的影响。我们的调查重点是一个社会福利最大化的实体,它提供高铁列车服务,并开发基础设施。我们发现,尽管网格网络允许更多的新市场,但当资金成本高、孤立走廊网络建立的新市场需求高、运营成本(不包括密度效应)高、交通密度效应弱时,孤立走廊网络在社会福利方面表现更好。我们还确定了在社会福利方面的最优网络配置在其他方面(如产能、消费者剩余和利润)可能不是最优的情况。例如,当密度效应较强时,网格网络可能是社会最优的,但与备选网络相比,它在收回投资成本方面面临更大的困难。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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