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首页> 外文期刊>IEEE Transactions on Engineering Management >Bi-Objective Vehicle Routing for Hazardous Materials Transportation With Actual Load Dependent Risks and Considering the Risk of Each Vehicle
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Bi-Objective Vehicle Routing for Hazardous Materials Transportation With Actual Load Dependent Risks and Considering the Risk of Each Vehicle

机译:具有实际负荷相关风险并考虑每辆车风险的危险物料运输的双目标车辆路径

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摘要

As a consequence of industrial development, large quantities of hazardous materials are shipped everyday. Most related studies consider the risks as fixed weights on edges. However, the loads of the vehicles are important factors about the risks. Thus, considering the risks as fixed parameters cannot reflect actual practice. In addition, the vehicle routing models in previous studies simultaneously minimize the total transportation cost and the total risk. However, simply considering the total risk of a fleet as a whole cannot evaluate each vehicle's risk. Although the total risk is low, the risk of a specific vehicle may still be very high. In this paper, the actual load dependent risk is introduced, and a corresponding bi-objective vehicle routing model for hazardous materials transportation is developed, minimizing the maximum risk of vehicles and the total transportation cost simultaneously. An exact algorithm is developed based on the epsilon-constraint method with several improvements. For large-scale problems, an approximation approach is proposed. Computational experiments on a series of instances are reported and several managerial insights are derived from the sensitivity analysis.
机译:由于工业发展,每天都会运送大量危险材料。大多数相关研究都将风险视为固定的权重。但是,车辆的负载是有关风险的重要因素。因此,将风险视为固定参数不能反映实际情况。此外,先前研究中的车辆路径模型同时将总运输成本和总风险降至最低。但是,仅考虑整个车队的总风险并不能评估每辆车的风险。尽管总风险较低,但特定车辆的风险可能仍然很高。本文介绍了与实际负荷有关的风险,并开发了相应的用于危险物品运输的双目标车辆路径模型,从而最大程度地降低了车辆的最大风险和总运输成本。基于ε约束方法开发了一种精确算法,并进行了一些改进。对于大规模问题,提出了一种近似方法。报告了一系列实例的计算实验,并从敏感性分析中得出了一些管理上的见解。

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