Department of Industrial Engineering, Faculty of Engineering, Khayyam University, Mashhad, Islamic Republic of Iran.
Waste Manag Res. 2022 Apr;40(4):458-469. doi: 10.1177/0734242X211003947. Epub 2021 Mar 24.
Today, reverse logistics (RL) is one of the main activities of supply chain management that covers all physical activities associated with return products (such as collection, recovery, recycling and destruction). In this regard, the designing and proper implementation of RL, in addition to increasing the level of customer satisfaction, reduces inventory and transportation costs. In this paper, in order to minimize the costs associated with fixed costs, material flow costs, and the costs of building potential centres, a complex integer linear programming model for an integrated direct logistics and RL network design is presented. Due to the outbreak of the ongoing global coronavirus pandemic (COVID-19) at the beginning of 2020 and the consequent increase in medical waste, the need for an inverse logistics system to manage waste is strongly felt. Also, due to the worldwide vaccination in the near future, this waste will increase even more and careful management must be done in this regard. For this purpose, the proposed RL model in the field of COVID-19 waste management and especially vaccine waste has been designed. The network consists of three parts - factory, consumers' and recycling centres - each of which has different sub-parts. Finally, the proposed model is solved using the cuckoo optimization algorithm, which is one of the newest and most powerful meta-heuristic algorithms, and the computational results are presented along with its sensitivity analysis.
如今,逆向物流(RL)是供应链管理的主要活动之一,涵盖了与退货产品相关的所有物理活动(如收集、回收、再利用和销毁)。在这方面,RL 的设计和正确实施除了提高客户满意度外,还可以降低库存和运输成本。在本文中,为了最小化与固定成本、物流成本以及潜在中心建设成本相关的成本,提出了一个综合直接物流和 RL 网络设计的复杂整数线性规划模型。由于 2020 年初全球冠状病毒大流行(COVID-19)的爆发,以及随之而来的医疗废物增加,强烈需要建立一个逆向物流系统来管理废物。此外,由于未来全球范围内的疫苗接种,这种废物将会增加,因此必须在这方面进行谨慎管理。为此,设计了针对 COVID-19 废物管理,特别是疫苗废物的 RL 模型。该网络由工厂、消费者和回收中心三个部分组成,每个部分都有不同的子部分。最后,使用布谷鸟优化算法(一种最新、最强大的元启发式算法之一)对所提出的模型进行了求解,并给出了计算结果及其敏感性分析。