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Time-dependent transit fare optimization with elastic and spatially distributed demand

机译:具有弹性和空间分布的需求的时间依赖过境票价优化

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Motivated by the lack of microeconomic models that optimize time-dependent transit fares based on realistic demand formulations, this paper presents a microeconomic model for the design of a time-dependent transit pricing scheme considering elastic and spatiotemporally distributed demand. To model the spatial distribution of demand, a transit line with multiple origin-destination pairs is considered. To model the cyclical demand fluctuations, transit operations in one day are divided into multiple time periods. In the proposed model we optimize fares, headway, vehicle capacity, and maximum fleet size, with the objective of maximizing social welfare, subject to fleet size and vehicle capacity constraints. We find time-dependent pricing could avoid crosssubsidization among travelers in different time periods. Under both pricing schemes, the timedependent headways satisfy the same optimality condition: the total rider waiting cost equals the total fixed cost on the supplier side. We also demonstrate that both resource constraints (vehicle capacity and fleet size) can be binding in multiple time periods, unlike the usual assumption in the literature that resource constraints are binding only in the period with the highest demand. Two extensions (considering a financial constraint and a variable roundtrip time) are also investigated. The developed models can be used to facilitate the design of timedependent pricing schemes for practical applications.
机译:由于基于现实需求配方,缺乏微观经济模型的微观经济模型,本文提出了一种微观经济模型,用于考虑弹性和时空分布的需求的时间依赖式过境定价方案。为了模拟需求的空间分布,考虑具有多个原点目的地对的传输线。为了模拟周期性需求波动,一天内的运输操作分为多个时间段。在拟议的型号中,我们优化票价,入口,车辆容量和最高舰队规模,目的是最大化社会福利,而舰队尺寸和车辆容量限制。我们发现时间依赖的定价可以避免在不同时间段的旅行者之间进行横梁。在定价方案下,定期依存头部满足相同的最优性条件:总骑车者等待成本等于供应商侧的总固定成本。我们还证明,资源限制(车辆容量和舰队尺寸)可以在多个时间段中绑定,与文献中的通常假设仅在资源限制只在最高需求的时段中绑定。还调查了两个扩展(考虑财务约束和变量往返时间)。开发的模型可用于促进实际应用的时间依存定价方案的设计。

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