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A stochastic optimization framework for planning of waste collection and value recovery operations in smart and sustainable cities

机译:用于规划智慧和可持续城市的废物收集和价值回收业务的随机优化框架

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摘要

The concept of City 2.0 or smart city is offering new opportunities for handling waste management practices. The existing studies have started addressing waste management problems in smart cities mainly by focusing on the design of new sensor-based Internet of Things (loT) technologies, and optimizing the routes for waste collection trucks with the aim of minimizing operational costs, energy consumption and transportation pollution emissions. In this study, the importance of value recovery from trash bins is highlighted. A stochastic optimization model based on chance-constrained programming is developed to optimize the planning of waste collection operations. The objective of the proposed optimization model is to minimize the total transportation cost while maximizing the recovery of value still embedded in waste bins. The value of collected waste is modeled as an uncertain parameter to reflect the uncertain value that can be recovered from each trash bin due to the uncertain condition and quality of waste. The application of the proposed model is shown by using a numerical example. The study opens new venues for incorporating the value recovery aspect into waste collection planning and development of new data acquisition technologies that enable municipalities to monitor the mix of recyclables embedded in individual trash bins. (C) 2018 Elsevier Ltd. All rights reserved.
机译:城市2.0或智慧城市的概念为处理废物管理实践提供了新的机会。现有研究已开始着手解决智慧城市中的废物管理问题,主要是着眼于基于传感器的新型物联网(loT)技术的设计,并优化废物收集卡车的路线,以期将运营成本,能耗和成本降至最低。运输污染排放。在这项研究中,强调了从垃圾箱中回收价值的重要性。建立了基于机会约束规划的随机优化模型,以优化废物收集作业的计划。所提出的优化模型的目的是最大程度地减少总运输成本,同时最大程度地回收仍嵌入垃圾箱的价值。将收集的废物的价值建模为不确定的参数,以反映由于不确定的状况和质量而可从每个垃圾箱回收的不确定的价值。通过数值例子说明了所提出模型的应用。该研究为将价值回收方面纳入废物收集计划和开发新的数据采集技术开辟了新的场所,使市政当局能够监测嵌入单个垃圾箱的可循环利用物的混合情况。 (C)2018 Elsevier Ltd.保留所有权利。

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