论文标题
大都市出租车舰队的强大充电网络计划
Robust Charging Network Planning for Metropolitan Taxi Fleets
论文作者
论文摘要
我们研究了大型商业出租车机队的强大充电站位置问题。车队内的车辆协调了充电操作,但没有在客户获取方面进行。我们决定一套充电站以确保运营可行性。为了做出这一决定,我们提出了一种新颖的解决方案方法,该方法位于内部设施的位置路由问题和供电的位置问题之间。此外,我们介绍了一个问题变体,该变量做出了站大小的决定。使用我们的确切方法,可以计划为全市范围的出租车舰队进行强大运营的充电站。我们采用切割平面方法来解决战略问题的确定性核心问题,以及用于操作问题的分支机构分解。我们将这个问题嵌入基于对抗性采样的强大解决方案框架中,从而允许计划者可选择的风险耐受性。我们解决了慕尼黑都会区的现实数据中得出的实例,其中包含1,000辆汽车和60个潜在的充电站位置。我们对技术发展的敏感性的调查表明,与增加的充电速度相比,电池能力的提高对多达10个百分点的车辆可行性有更有利的影响。允许仓库充电占主导地位。最后,我们表明,仅允许1%的运营不可行风险降低基础设施成本20%。
We study the robust charging station location problem for a large-scale commercial taxi fleet. Vehicles within the fleet coordinate on charging operations but not on customer acquisition. We decide on a set of charging stations to open to ensure operational feasibility. To take this decision, we propose a novel solution method situated between the Location Routing Problems with Intraroute Facilities and Flow Refueling Location Problems. Additionally, we introduce a problem variant that makes a station sizing decision. Using our exact approach, charging stations for a robust operation of city-wide taxi fleets can be planned. We develop a deterministic core problem employing a cutting plane method for the strategic problem and a branch-and-price decomposition for the operational problem. We embed this problem into a robust solution framework based on adversarial sampling, which allows for planner-selectable risk tolerance. We solve instances derived from real-world data of the metropolitan area of Munich, containing 1,000 vehicles and 60 potential charging station locations. Our investigation of the sensitivity of technological developments shows that increasing battery capacities show a more favorable impact on vehicle feasibility of up to 10 percentage points compared to increasing charging speeds. Allowing for depot charging dominates both of these options. Finally, we show that allowing just 1% of operational infeasibility risk lowers infrastructure costs by 20%.