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首页> 外文期刊>Transportation Research >The two-echelon time-constrained vehicle routing problem in linehaul-delivery systems considering carbon dioxide emissions
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The two-echelon time-constrained vehicle routing problem in linehaul-delivery systems considering carbon dioxide emissions

机译:考虑二氧化碳排放的线路运输系统中的两级时间受限车辆路径问题

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摘要

Multi-echelon distribution strategy is primarily to alleviate the environmental (e.g., energy consumption and emissions) consequence of logistics operations. Differing from the long-term strategic problems (e.g., the two-echelon vehicle routing problem (2E-VRP), the two echelon location routing problem (2E-LRP) and the truck and trailer routing problem (TTRP)) that make location decisions in depots or satellites, the paper introduces a short-term tactical problem named the two-echelon time-constrained vehicle routing problem in linehaul-delivery systems (2E-TVRP) considering carbon dioxide (CO2) emissions. The linehaul level and the delivery level are linked through city distribution centers (CDCs). The 2E-TVRP, which takes CO2 emissions per ton-kilometer as the objective, has inter-CDC linehaul on the 1st level and delivery from CDCs to satellites on the 2nd level. The Clarke and Wright savings heuristic algorithm (CW) improved by a local search phase is put forward. The case study shows the applicability of the model to real-life problems. The results suggest that the vehicle scheduling provided by the 2E-TVRP is promising to reduce the CO2 emissions per ton-kilometer of the linehaul-delivery system. Adjusting the central depot location or developing the loaded-semitrailer demand among O-D pairs to eliminate empty-running of tractors will contribute to reduce the CO2 emission factor. (C) 2016 Elsevier Ltd. All rights reserved.
机译:多级分销策略主要是为了减轻物流运营的环境影响(例如,能源消耗和排放)。与长期的战略问题(例如,两层车辆路线问题(2E-VRP),两层位置路线问题(2E-LRP)和卡车和拖车路线问题(TTRP))不同在仓库或卫星中,本文介绍了一种短期战术问题,即考虑二氧化碳(CO2)排放的线路运输系统(2E-TVRP)中的两级时间受限车辆路径问题。通过城市配送中心(CDC)链接线路级别和交付级别。 2E-TVRP以每吨公里的二氧化碳排放量为目标,在第一层具有CDC间线路传输,在第二层具有从CDC到卫星的传输。提出了一种通过局部搜索阶段改进的克拉克和赖特储蓄启发式算法。案例研究表明该模型适用于现实生活中的问题。结果表明,由2E-TVRP提供的车辆调度有望减少线路运输系统每吨公里的二氧化碳排放量。调整中央仓库的位置或在O-D对之间增加半挂车的需求,以消除拖拉机的空运行,将有助于减少CO2排放因子。 (C)2016 Elsevier Ltd.保留所有权利。

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