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Minimizing CO(2)e emissions by setting a road toll

机译:通过设定道路通行费来最大程度地减少CO(2)e排放

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The main purpose of this paper is to develop a bi-level pricing model to minimize the CO(2)e emissions and the total travel time in a small road network. In the lower level of the model, it is assumed that users of the road network find a dynamic user equilibrium which minimizes the total costs of those in the system. For the higher level of the model, different road toll strategies are applied in order to minimize the CO(2)e emissions. The model has been applied to an illustrative example. It shows the effects on traffic flows, revenues, total time and CO(2)e emissions for different numbers of servers collecting tolls and different pricing strategies over a morning peak traffic period. The results show that the CO(2)e emissions produced can be significantly affected by the number of servers and the type of toll strategy employed. The model is also used to find the best toll strategy when there is a constraint on the revenue that is required to be raised from the toll and how this affects the emissions produced. Further runs compare strategies to minimize the CO(2)e emissions with those that minimize total travel time in the road system. In the illustrative example, the results for minimizing CO(2)e emissions are shown to be similar to the results obtained from minimizing the total travel time. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文的主要目的是开发一种双层定价模型,以最小化小型道路网络中的CO(2)e排放量和总行驶时间。在模型的较低级别中,假定路网的用户找到了动态的用户平衡,该平衡使系统中那些用户的总成本最小化。对于较高级别的模型,应用了不同的道路通行费策略,以最大程度地减少CO(2)e排放。该模型已应用于说明性示例。它显示了在高峰高峰时段,不同数量的服务器收取通行费和采用不同的定价策略对流量,收入,总时间和CO(2)e排放的影响。结果表明,所产生的CO(2)e排放会受到服务器数量和采用的收费策略类型的显着影响。当需要从通行费中收取的收入以及这对所产生的排放有何影响时,该模型还可用于找到最佳的通行费策略。进一步的运行比较策略以最小化CO(2)e排放与最小化道路系统总行驶时间的策略。在说明性示例中,将CO(2)e排放量最小化的结果显示为与使总行驶时间最小化的结果相似。 (C)2016 Elsevier Ltd.保留所有权利。

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