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Supporting mobile WEEE collection on demand: A method for multi-criteria vehicle routing, loading and cost optimisation

机译:支持按需移动WEEE收集:一种用于多标准车辆路线,装载和成本优化的方法

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摘要

The task of increasing collection rates of waste electrical and electronic equipment (WEEE) is an important challenge in the global economy, and especially in the European Union where stiffer collection targets set out in a new WEEE directive are to be effective by 2019. As the circular economy approach replaces the linear model, resource recycling activities become a priority in waste management policy. As new techniques and possibilities of waste collection systems emerge, opportunities are created for improving efficiency for collection companies and affording benefits for the environment. A model proposed for mobile WEEE collection in this study considers a multi-criteria approach in developing a cost efficient method for pick up on demand from residents or electrical and electronic equipment (EEE) stores. The algorithm used in this model optimises vehicle routes and helps in selecting a number of vehicles from a heterogeneous fleet, incorporating the WEEE loading problem. Using genetic algorithm and fuzzy logic, this model optimises costs and resources required to complete the WEEE collection assuring timely pick up of the waste equipment. The numerical model is verified in a case study in Opole, a city in the south of Poland. The results show that the proposed model can handle the multiple parameter optimisation problem including operational costs, efficient use of vehicles from a fleet, efficient waste loading in vehicles and residents' satisfaction with timely pick up of the waste equipment from a household. Such system can be successfully applied even for large cities. The algorithm provides an opportunity for writing software or mobile apps design to be used by WEEE collection companies.
机译:提高废旧电气电子设备(WEEE)的收集率的任务是全球经济中的一项重要挑战,尤其是在欧盟中,新的WEEE指令中设定的更严格的收集目标将于2019年生效。循环经济替代线性模型,资源回收活动成为废物管理政策中的优先事项。随着新技术和废物收集系统可能性的出现,为提高收集公司的效率并为环境带来收益创造了机会。本研究中为移动WEEE收集提出的模型考虑了一种多准则方法,以开发一种经济高效的方法来满足居民或电气和电子设备(EEE)商店的需求。该模型中使用的算法可优化车辆路线,并从WEEE加载问题出发,帮助从异构车队中选择许多车辆。该模型使用遗传算法和模糊逻辑,优化了完成WEEE收集所需的成本和资源,从而确保及时收集废物设备。在波兰南部城市奥波莱(Opole)的案例研究中验证了该数值模型。结果表明,所提出的模型可以处理多参数优化问题,包括运营成本,有效利用车队的车辆,有效地装载车辆中的废物以及居民对及时从家庭中收集废物设备的满意度。这样的系统即使在大城市中也可以成功地应用。该算法为编写由WEEE收藏公司使用的软件或移动应用程序设计提供了机会。

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