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Fare Design in Urban Transit Network considering Elastic Demand and Adverse Weather's Impact

机译:考虑弹性需求和不利天气影响的城市公交网络票价设计

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Due to the disturbance of unexpected effects and adverse weather conditions, transit supply and demand manifests many uncertainties. In this paper, we take account of these uncertainties and propose a transit fare structure design model including both ground and underground public transportation. Such transit fare design problem is described through bilevel programming, inwhich the upper level is the transportation authority's transit fare structure decision aiming to minimize the transit network's total travel and operation cost, while the lower level is a transit network assignment model considering supply and demand uncertainties that influence passengers' travel choice decisions. A heuristic algorithmis developed to solve the problem, and a numerical example is presented to illustrate the application. We get some important results: (1) a diversified fare structure considering uncertain weather's impact is quite necessary; (2) when the value of time is at a high level, metro fare should be higher than bus fare; (3) the optimal metro and bus fare should be close under an extremely adverse weather condition; (4) fare structure could be quite different with varied value of time.
机译:由于意外影响和不利天气条件的干扰,过境供需表现出许多不确定性。在本文中,我们考虑了这些不确定性,并提出了包括地面和地下公共交通在内的公交票价结构设计模型。这种运输票价设计问题是通过双层编程来描述的,其中上层是运输当局的运输票价结构决策,旨在最小化中转网络的总行驶和运营成本,而下层是考虑供需不确定性的中转网络分配模型。影响乘客的旅行选择决定。提出了一种启发式算法来解决该问题,并通过数值例子说明了该应用。我们得到一些重要的结果:(1)考虑不确定天气影响的多元化票价结构是非常必要的; (2)时间价值较高时,地铁票价应高于公交票价; (3)在极端恶劣的天气条件下,最佳地铁和公交车票价应接近; (4)票价结构可能会随着时间价值的变化而大不相同。

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