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Using simulated annealing to minimize fuel consumption for the time-dependent vehicle routing problem

机译:使用模拟退火来最大程度地减少与时间相关的车辆路径问题的油耗

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The vehicle routing problem (VRP) has been addressed in many research papers. Only a few of them take time-dependent travel speeds into consideration. Moreover, most research related to the VRP aims to minimize total travel time or travel distance. In recent years, reducing carbon emissions has become an important issue. Therefore, fuel consumption is also an important index in the VRP. In this research a model is proposed for calculating total fuel consumption for the time-dependent vehicle routing problem (TDVRP) where speed and travel times are assumed to depend on the time of travel when planning vehicle routing. In the model, the fuel consumption not only takes loading weight into consideration but also satisfies the "non-passing" property, which is ignored in most TDVRP-related research papers. Then a simulated annealing (SA) algorithm is proposed for finding the vehicle routing with the lowest total fuel consumption. An experimental evaluation of the proposed method is performed. The results show that the proposed method provides a 24.61% improvement in fuel consumption over the method based on minimizing transportation time and a 22.69% improvement over the method based on minimizing transportation distances.
机译:车辆路由问题(VRP)已在许多研究论文中得到解决。其中只有少数几个考虑了与时间有关的行驶速度。此外,大多数与VRP相关的研究旨在使总旅行时间或旅行距离最小化。近年来,减少碳排放已成为重要问题。因此,油耗也是VRP中的重要指标。在这项研究中,提出了一个用于计算与时间有关的车辆路径问题(TDVRP)的总燃料消耗的模型,其中在计划车辆路径时,速度和行驶时间取决于行驶时间。在该模型中,燃料消耗不仅考虑了装载重量,还满足了“不通过”特性,这在大多数与TDVRP相关的研究论文中都被忽略了。然后,提出了一种模拟退火算法(SA),以寻找总燃油消耗最低的车辆路线。对提出的方法进行了实验评估。结果表明,与基于最小化运输时间的方法相比,所提出的方法在燃油消耗方面的改进为24.61%,而与基于最小化运输距离的方法相比则节省了22.69%。

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