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Flexible Emergency Vehicle Network Design considering Stochastic Demands and Inverse-Direction Lanes

机译:考虑随机需求和反方向车道的灵活应急车辆网络设计

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We study transportation network design with stochastic demands and emergency vehicle (EV) lanes. Different from previous studies, this paper considers two groups of users, auto and EV travelers, whose road access rights are differentiated in the network, and addresses the value of incorporating inverse-direction lanes in network design. We formulate the problem as a bilevel optimization model, where the upper-level model aims to determine the optimal design of EV lanes and the lower-level model uses the user equilibrium principle to forecast the route choice of road users. A simulation-based genetic algorithm is proposed to solve the model. With numerical experiments, we demonstrate the value of deploying inverse-direction EV lanes and the computational efficiency of the proposed algorithm. We reach an intriguing finding that both regular and EV lane users can benefit from building EV lanes.
机译:我们研究具有随机需求和应急车辆(EV)车道的运输网络设计。与以前的研究不同,本文考虑了两组用户,即汽车和电动汽车旅行者,他们在网络中的道路访问权限有所不同,并探讨了在网络设计中纳入反向车道的价值。我们将该问题表述为双层优化模型,其中上层模型旨在确定电动车道的最佳设计,下层模型使用用户均衡原理来预测道路用户的路线选择。提出了一种基于仿真的遗传算法对该模型进行求解。通过数值实验,我们证明了部署反电动车道的价值以及该算法的计算效率。我们得出了一个有趣的发现,即普通和电动车道用户都可以从构建电动车道中受益。

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