Mosallanezhad Behzad, Gholian-Jouybari Fatemeh, Cárdenas-Barrón Leopoldo Eduardo, Hajiaghaei-Keshteli Mostafa
Department of Industrial Engineering, School of Engineering and Science, Tecnologico de Monterrey, Puebla, Mexico.
Tecnologico de Monterrey, School of Engineering and Sciences, E. Garza Sada 2501 Sur, C.P. 64849, Monterrey, Nuevo León, Mexico.
Eng Appl Artif Intell. 2023 Apr;120:105903. doi: 10.1016/j.engappai.2023.105903. Epub 2023 Jan 25.
Supply chains have been impacted by the COVID-19 pandemic, which is the most recent worldwide disaster. After the world health organization recognized the latest phenomena as a pandemic, nations became incapacitated to provide the required medical supplies. In the current situation, the world seeks an essential solution for COVID-19 Pandemic Wastes (CPWs) by pushing the pandemic to a stable condition. In this study, the development of a supply chain network is contrived for CPWs utilizing optimization modeling tools. Also, an IoT platform is devised to enable the proposed model to retrieve real-time data from IoT devices and set them as the model's inputs. Moreover, sustainability aspects are appended to the proposed IoT-enabled model considering its triplet pillars as objective functions. A real case of Puebla city and 15 experiments are used to validate the model. Furthermore, a combination of metaheuristic algorithms utilized to solve the model and also seven evaluation indicators endorse the selection of efficient solution approaches. The evaluation indicators are appointed as the inputs of statistical and multicriteria decision-making hybridization to prioritize the algorithms. The result of the Entropy Weights method and Combined Compromise Solution approach confirms that MOGWO has better performance for the medium-sizes, case study and an overall view. Also, NSHHO outclasses the small-size and large-size experiments.
供应链受到了新冠疫情的影响,这是最近的一场全球灾难。在世界卫生组织将这一最新现象认定为大流行之后,各国无力提供所需的医疗物资。在当前形势下,世界通过推动疫情趋于稳定来寻求应对新冠疫情废弃物(CPW)的关键解决方案。在本研究中,利用优化建模工具为CPW构建了一个供应链网络。此外,还设计了一个物联网平台,以使所提出的模型能够从物联网设备检索实时数据并将其作为模型的输入。此外,考虑到其三重支柱作为目标函数,将可持续性方面附加到所提出的物联网模型中。以普埃布拉市的一个实际案例和15次实验来验证该模型。此外,用于求解该模型的元启发式算法组合以及七个评估指标支持选择高效的解决方案方法。这些评估指标被指定为统计和多准则决策混合的输入,以对算法进行优先级排序。熵权法和组合折衷解方法的结果证实,对于中等规模、案例研究和整体情况,MOGWO具有更好的性能。此外,NSHHO在小规模和大规模实验中表现更优。