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Improved formulations and algorithmic components for the electric vehicle routing problem with nonlinear charging functions

机译:具有非线性充电功能的电动汽车路径问题的改进公式和算法组件

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Electric vehicle routing problems (E-VRPs) are receiving growing attention from the operations research community. Electric vehicles differ substantially from internal combustion engine vehicles, the main difference lying in their limited autonomy, which can be recovered at charging stations. Modeling the charging functions is a focal point of E-VRPs. Most of the research has focused on constant or linear charging functions. The E-VRP with nonlinear charging function (E-VRP-NL) was recently introduced to account for the more realistic nonlinear relationship between the time spent charging and the amount of energy charged. We propose two new formulations for this problem. We first develop an arc-based tracking of the time and the state of charge which, according to our experiments, outperforms the classical node based tracking of these values. To avoid replicating the charging stations nodes, as done for both node and arc based formulations, we also introduce a path-based model. We develop an algorithm to generate a tractable number of these paths. This path-based model outperforms the classical models in our experiments. We also propose a new model, a heuristic, and an exact labeling algorithm for the problem of finding the optimal charging decisions for a given route. Extensive computational results show that charging decisions considerably impact the quality of the E-VRP-NL solutions. Indeed, we improve 23 out of 120 best known E-VRP-NL solutions by solely revising the charging decisions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:电动汽车路线问题(E-VRP)受到运筹学界的越来越多的关注。电动汽车与内燃机汽车大不相同,主要区别在于其有限的自主性,可以在充电站进行回收。对充电功能进行建模是E-VRP的重点。大多数研究集中在恒定或线性充电功能上。最近引入了具有非线性充电功能的E-VRP(E-VRP-NL),以解决充电时间和充电能量之间更现实的非线性关系。我们针对此问题提出了两种新的提法。我们首先开发了基于电弧的时间和充电状态跟踪,根据我们的实验,该跟踪性能优于基于经典节点的这些值的跟踪。为了避免像基于节点和弧的公式那样复制充电站节点,我们还引入了基于路径的模型。我们开发了一种算法来生成大量这些路径。在我们的实验中,这种基于路径的模型优于经典模型。我们还针对发现给定路线的最佳充电决策的问题,提出了一种新的模型,一种启发式方法和一种精确的标记算法。大量的计算结果表明,计费决策会严重影响E-VRP-NL解决方案的质量。实际上,我们仅通过修改充电决策就可以在120个最著名的E-VRP-NL解决方案中改进23个。 (C)2018 Elsevier Ltd.保留所有权利。

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