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Va riable fleet size and mix VRP with fleet heterogeneity in Integrated Solid Waste Management

机译:可变的船队规模,并在综合固体废物管理中将VRP与车队异质性混合

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摘要

The Integrated Solid Waste Management (ISWM) is a recent effective tool to manage with the growing challenge of Municipal Solid Waste (MSW). The ISWM integrates all the system components (i.e. transfer, treatment, recycling and disposal of wastes) to enhance the sustainable waste management whilst reducing operational costs. In this paper, we investigate an integrated framework of the Fleet Size and Mix Vehicle Routing Problem (VRP) to optimize the cost-effective ISWM system. A novel bi-objective Mixed-Integer Linear Programming (MILP) model is developed to concurrently minimize the transportation cost in the entire waste management system and total deviation from the fair load allocation to transfer stations. A complete ISWM system with all interdependent facilities and multiple technologies, is developed to address a tri-echelon Fleet Size and Mix VRP with a heterogeneous fleet of vehicles under multiple technologies and waste compatibility constraints. The model was solved for both the Preemptive and Non-Preemptive conditions using Lexicographic and Goal Programming optimization approaches. The model was tested on a case of ISWM in the Southern part of Tehran, Iran. (C) 2019 Elsevier Ltd. All rights reserved.
机译:综合固体废物管理(ISWM)是应对城市固体废物(MSW)日益严峻挑战的最新有效工具。 ISWM集成了所有系统组件(即废物的转移,处理,回收和处置),以增强可持续的废物管理,同时降低运营成本。在本文中,我们研究了机队规模和混合车辆路径问题(VRP)的集成框架,以优化具有成本效益的ISWM系统。开发了一种新颖的双目标混合整数线性规划(MILP)模型,以同时最小化整个废物管理系统中的运输成本以及从公平负荷分配到转运站的总偏差。已开发出具有所有相互依存的设施和多种技术的完整ISWM系统,以解决在多种技术和废物兼容性约束下,具有异构车辆群的三级车队规模和混合VRP的问题。使用词典和目标编程优化方法,针对先占条件和非先占条件都对模型进行了求解。该模型在伊朗德黑兰南部的ISWM案例中进行了测试。 (C)2019 Elsevier Ltd.保留所有权利。

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