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Using a Route-based and Vehicle Type specific Range Constraint for Improving Vehicle Routing Problems with Electric Vehicles

机译:利用基于路线和车辆类型的特定范围限制,用于改善电动车辆的车辆路由问题

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In this research project, we implement a vehicle type dependent range constraint into a Vehicle Routing Problem (VRP) to consider the limited range of electric vehicles in urban freight transport planning due to the its restricted battery capacity and energy consumption. We apply this VRP in the route optimization jsprit which is linked to the microscopic agent-based simulation MATSim. In the framework of a case study focusing on food retail distribution in Berlin, Germany, we operationalize the range constraint and demonstrate the functionality and the effectiveness of this constraint using the distance from routing in a transport simulation network. Based on the simulation results, we analyze and discuss the impacts of the limitations of Battery Electric Vehicles (BEVs) on freight transport demand, road mileage performed and the resulting transport costs and greenhouse gas (GHG) emissions.
机译:在本研究项目中,我们将车辆类型依赖范围限制实施到车辆路由问题(VRP)中,以考虑由于其限制的电池容量和能耗而导致城市货运运输规划中的有限电动车辆。我们在路由优化JSPRIT中应用此VRP,该JSPRIT链接到基于微观代理的仿真MATSIM。在案例研究的框架中,专注于德国柏林的食品零售分配,我们使用远程在运输仿真网络中路由的距离来运营范围约束并演示该约束的功能和有效性。根据仿真结果,我们分析和讨论电池电动车(BEV)局限性对货运需求,道路行驶中的影响以及由此产生的运输成本和温室气体排放的影响。

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