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Equilibrium network design of shared-vehicle systems

机译:共享车辆系统的平衡网络设计

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摘要

An equilibrium network design model is formulated to determine the optimal configuration of a vehicle sharing program (VSP). A VSP involves a fleet of vehicles (bicycles, cars, or electric vehicles) positioned strategically across a network. In a flexible VSP, users are permitted to check out vehicles to perform trips and return the vehicles to stations close to their destinations. VSP operators need to determine an optimal configuration in terms of station locations, vehicle inventories, and station capacities, that maximizes revenue. Since users are likely to use the VSP resources only if their travel utilities improve, a generalized equilibrium based approach is adopted to design the system. The model takes the form of a bi-level, mixed-integer program. Model properties of uniqueness, inefficiency of equilibrium, and transformations that lead to an exact solution approach are presented. Computational tests on several synthetic instances demonstrate the nature of the equilibrium configuration, the trade-offs between operator and user objectives, and insights for deploying such systems.
机译:建立平衡网络设计模型,以确定车辆共享程序(VSP)的最佳配置。 VSP涉及战略性地跨网络定位的一组车辆(自行车,小汽车或电动汽车)。在灵活的VSP中,允许用户检出车辆进行旅行并将车辆返回到目的地附近的车站。 VSP运营商需要根据站点位置,车辆库存和站点容量确定最佳配置,以最大化收益。由于用户只有在旅行实用性提高的情况下才可能使用VSP资源,因此采用了基于平衡的广义方法来设计系统。该模型采用双层混合整数程序的形式。提出了唯一性,均衡的低效率以及导致精确求解方法的转换的模型属性。在几个综合实例上的计算测试证明了均衡配置的性质,操作员和用户目标之间的权衡以及部署此类系统的见识。

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