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Multi-objective and multi-period hydrogen refueling station location problem

机译:多目标和多时期氢气加油站位置问题

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Creating a distribution network and establishing refueling stations arises as an important problem in order to meet the refueling needs of hydrogen fuel cell vehicles. In this study, a multi-objective and multi-period hydrogen refueling station location problem that can take into account long-term planning decisions is proposed. Firstly, single objective mathematical models are proposed for the problem by addressing the cost, risk and population convergence objectives. Afterwards, a goal programming model is proposed and the results that will arise when three objectives are taken into consideration at the same time are examined. A risk analysis approach applied for each location alternative is considered in order to handle risk concerns about the hydrogen refueling station settlement. A case study is conducted in Adana, one of the crowded cities in Turkey, to determine the long-term location network plan. Covered population, operational risk and earthquake risks are used as input of the risk analysis method. The case study results show that the goal programming model covers the area with 77 hydrogen refueling stations by different types and capacities during the years from 2020 to 2030. In addition, a computational study is carried out with different alternative scenarios (different number of consumption nodes and all parameters in the model). The computational study results show that the highest deviations from the optimal solution on the model are observed in the distances between consumption nodes and targeted service area parameters which affect about 50% of absolute deviations on average. According to results, the proposed approach selects the station location suitable for the expected changes over the years. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:创建分销网络并建立加油站是一个重要的问题,以满足氢燃料电池车辆的加油需求。在本研究中,提出了可以考虑长期规划决策的多目标和多时期氢化站位置问题。首先,通过解决成本,风险和人口融合目标来提出单身客观数学模型。之后,提出了一个目标编程模型,并检查了同时考虑三个目标时会出现的结果。考虑施加对每个地点替代方案的风险分析方法,以处理关于氢气加油站沉降的风险问题。案例研究是在土耳其拥挤城市之一的阿纳纳进行的,以确定长期地点网络计划。涵盖人口,操作风险和地震风险被用作风险分析方法的输入。案例研究结果表明,目标规划模型在2020年至2030年期间通过不同类型和容量的不同类型和容量覆盖了具有77个氢气加油站的区域。此外,使用不同的替代方案(不同数量的消费节点数量)进行计算研究和模型中的所有参数)。计算研究结果表明,在消耗节点和目标服务区域参数之间的距离之间观察到模型上的最佳解决方案的最高偏差,其平均影响约50%的绝对偏差。根据结果​​,所提出的方法选择了多年来适用于预期变化的站点。 (c)2020氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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