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A multiobjective modeling approach to locate multi-compartment containers for urban-sorted waste

机译:用于定位城市分类垃圾的多隔室容器的多目标建模方法

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摘要

The location of multi-compartment sorted waste containers for recycling purposes in cities is an important problem in the context of urban waste management. The costs associated with those facilities and the impacts placed on populations are important concerns. This paper introduces a mixed-integer, multiobjective programming approach to identify the locations and capacities of such facilities. The approach incorporates an optimization model in a Geographical Information System (ClS)-based interactive decision support system that includes four objectives. The first objective minimizes the total investment cost; the second one minimizes the average distance from dwellings to the respective multi-compartment container; the last two objectives address the "pull" and "push" characteristics of the decision problem, one by minimizing the number of individuals too close to any container, and the other by minimizing the number of dwellings too far from the respective multi-compartment container. The model determines the number of facilities to be opened, the respective container capacities, their locations, their respective shares of the total waste of each type to be collected, and the dwellings assigned to each facility. The approach proposed was tested with a case study for the historical center of Coimbra city, Portugal, where a large urban renovation project, addressing about 800 buildings, is being undertaken. This paper demonstrates that the models and techniques incorporated in the interactive decision support system (IDSS) can be used to assist a decision maker (DM) in analyzing this complex problem in a realistically sized urban application. Ten solutions consisting of different combinations of underground containers for the disposal of four types of sorted waste in 12 candidate sites, were generated. These solutions and tradeoffs among the objectives are presented to the DM via tables, graphs, color-coded maps and other graphics. The DM can then use this information to "guide" the IDSS in identifying additional solutions of potential interest. Nevertheless, this research showed that a particular solution with a better objective balance can be identified. The actual sequence of additional solutions generated will depend upon the objectives and preferences of the DM in a specific application.
机译:在城市废物管理的背景下,将多室分类废物容器放置在城市中以进行回收利用是一个重要的问题。与这些设施有关的费用以及对人口的影响是重要的问题。本文介绍了一种混合整数,多目标编程方法,以识别此类设施的位置和容量。该方法在包含四个目标的基于地理信息系统(ClS)的交互式决策支持系统中结合了优化模型。第一个目标是使总投资成本最小化;第二个最小化从房屋到相应的多隔间容器的平均距离;最后两个目标解决了决策问题的“拉动”和“推动”特征,一个目标是使离任何容器太近的人员数量减至最少,另一个目标是使离多隔室容器太远的住宅数量减至最少。该模型确定要打开的设施的数量,相应的容器容量,它们的位置,每种要收集的每种类型的总废物中它们各自的份额以及分配给每个设施的住宅。在葡萄牙科英布拉市的历史中心进行了案例研究,对提出的方法进行了测试,该城市正在进行一项涉及约800座建筑物的大型城市改造项目。本文演示了交互式决策支持系统(IDSS)中包含的模型和技术可用于帮助决策者(DM)在实际规模的城市应用中分析此复杂问题。产生了十种解决方案,包括地下容器的不同组合,用于在12个候选站点中处理四种类型的分类废物。目标之间的这些解决方案和折衷方案通过表格,图形,颜色编码的地图和其他图形显示给DM。然后,DM可以使用此信息来“引导” IDSS识别潜在的其他解决方案。尽管如此,这项研究表明,可以确定具有更好客观平衡的特定解决方案。生成的其他解决方案的实际顺序将取决于特定应用中DM的目标和偏好。

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  • 来源
    《Waste Management》 |2010年第12期|p.2418-2429|共12页
  • 作者单位

    INESC-Coimbra, Rua Antero Quental 199, 3000-141 Coimbra, Portugal;

    Civil and Environmental Engineering, INESC-Coimbra, Department of Civil Engineering,Faculty of Science and Technology, University of Coimbra, Polo II, 3030-194 Coimbra, Portugal;

    Computer Science, PhD Researcher at INESC-Coimbra, Faculty of Economics, University of Coimbra, Av. Dias da Silva 765, 3004-512 Coimbra, Portugal;

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