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Green vehicle routing and scheduling problem with optimized travel speed

机译:优化旅行速度的绿色车辆路由和调度问题

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Among all logistics activities, transportation is presented as a major source of air pollution and other environmental concerns worldwide. Road transportation significantly increases carbon dioxide, which is a known greenhouse gas emissions of vehicles. Therefore, environmental targets are added to economic targets in the vehicle routing decision making to find the right balance between these two dimensions. Research into quantifying emission rates based on travel speeds and for different vehicle sizes, showed that based on the vehicle type and using specific emission coefficients, optimum travel speeds that minimize carbon dioxide emissions can be obtained. In this paper we propose a mixed integer programming model for the green vehicle routing and scheduling problem with time dependent travel speeds and heterogeneous fleet, in which vehicles are characterized by different capacities, costs and emissions factors. The model aims at minimizing CO2 emissions by minimizing the deviation of travel speed from optimum travel speeds.
机译:在所有物流活动中,运输是作为全世界空气污染和其他环境问题的主要来源。道路运输显着提高二氧化碳,这是一种已知的汽车燃气排放。因此,将环境目标添加到车辆路由决策中的经济目标中,以发现这两个维度之间的正确平衡。基于旅行速度和不同车辆尺寸的量化排放率的研究表明,基于车辆类型并使用特定的发射系数,可以获得最小化二氧化碳排放的最佳行驶速度。在本文中,我们提出了一种用于绿色汽车路由和调度问题的混合整数编程模型,随着时间的行进速度和异构舰队,其中车辆的特征在于不同的能力,成本和排放因素。该模型旨在通过最小化从最佳行驶速度最小化行驶速度的偏差来最小化CO 2 排放。

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