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Pricing and logit-based mode choice models of a transit and highway system with elastic demand

机译:具有弹性需求的公交和公路系统基于定价和对数的模式选择模型

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The objective of this paper is to enhance the insights into transport pricing mechanism and the corresponding mode choice behavior in a simple bi-modal transportation system with elastic demand. This system comprises a mass transit parallel to a bottleneck-constrained highway between a residential area and a workplace. We derive and compare three pricing schemes: the arbitrarily fixed pricing, the first-best pricing for a social optimum of the system, and the second-best pricing in the case of incapability of road toll. It is shown that the first-best pricing requires to implement a road toll and a transit fare simultaneously, and the optimal transit fare for the second-best solution should be set to be a weighted sum of the marginal external costs between auto and transit commuters. A numerical example is presented to illustrate how the pricing policies affect the demand implementation, the mode choice behavior and the efficiency of the whole transportation system.
机译:本文的目的是在具有弹性需求的简单双峰运输系统中增强对运输定价机制和相应的模式选择行为的认识。该系统包括一个平行于居住区和工作场所之间的瓶颈限制高速公路的公共交通。我们推导并比较了三种定价方案:任意固定定价,针对系统的社会最优性的最佳定价,以及在没有通行费的情况下的最佳定价。结果表明,最佳价格需要同时实施道路通行费和过境费,次佳解决方案的最佳过境费应设为自动通勤者与通勤者之间边际外部成本的加权总和。数值例子说明了定价策略如何影响需求的执行,模式选择行为和整个运输系统的效率。

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