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Reducing pollutant emissions in a waste collection vehicle routing problem using a variable neighborhood tabu search algorithm: a case study

机译:使用可变邻域禁忌搜索算法减少废物收集车道路由问题中的污染物排放:一个案例研究

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This paper focuses on designing waste collection routes with a single landfill using eco-efficiency as a performance indicator. In this problem, there are a limited number of heterogeneous vehicles based at a single depot. Empty vehicles leave the depot, collect waste from a set of locations and drop off the collected waste at a specific landfill. Then, vehicles leave the landfill and may collect more waste from other locations or return empty to the depot. Traditional performance indicators in vehicle routing problems are mainly focused on economic objectives, not explicitly considering environmental issues. In this paper, a mathematical model is presented with an eco-efficient objective function that takes into account external costs (climate change and air pollution). The COPERT model is used for estimating fuel consumption, carbon dioxide and pollutant emissions. The problem is first heuristically solved using a semi-parallel construction algorithm. Then, solutions are improved by a variable neighborhood tabu search algorithm developed for this problem. The algorithm is validated for a real problem in the municipality of Alcala de Guadaira, within the metropolitan area of Seville (Spain). Results obtained on a set of case studies improve the solution that is currently implemented in the municipality, in terms of total distance traveled, carbon dioxide emissions and pollutant emissions.
机译:本文侧重于使用单次垃圾填埋场设计废物收集路线,作为绩效指标。在该问题中,基于单个仓库存在有限数量的异质车辆。空车辆离开仓库,从一组位置收集废物,并在特定垃圾填埋场下降收集的废物。然后,车辆离开垃圾填埋场,并且可以从其他地方收集更多的废物或将空返回到仓库中。车辆路线问题的传统绩效指标主要集中在经济目标上,而不是明确考虑环境问题。在本文中,介绍了一种生态有效的目标函数,考虑到外部成本(气候变化和空气污染)。 Copert模型用于估计燃料消耗,二氧化碳和污染物排放。问题是使用半并行施工算法首次启发式解决。然后,通过为此问题开发的可变邻域塔布搜索算法来提高解决方案。该算法在塞维利亚大都会区阿尔卡拉德瓜蒂瓦市的实地验证了真正的问题。在一组案例研究中获得的结果改善了当前在市政当局实施的解决方案,就总距离,二氧化碳排放和污染物排放而言。

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