Mathematical modeling for optimizing the blood supply chain network

Amir Rahimzadeh Dehaghani, Muhammad Nawaz, Rohullah Sultanie, Tawiah Kwatekwei Quartey-Papafio
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引用次数: 1

Abstract

PurposeThis research studies a location-allocation problem considering the m/m/m/k queue model in the blood supply chain network. This supply chain includes three levels of suppliers or donors, main blood centers (laboratories for separation, storage and distribution centers) and demand centers (hospitals and private clinics). Moreover, the proposed model is a multi-objective model including minimizing the total cost of the blood supply chain (the cost of unmet demand and inventory spoilage, the cost of transport between collection centers and the main centers of blood), minimizing the waiting time of donors in blood donating mobile centers, and minimizing the establishment of mobile centers in potential places.Design/methodology/approachSince the problem is multi-objective and NP-Hard, the heuristic algorithm NSGA-II is proposed for Pareto solutions and then the estimation of the parameters of the algorithm is described using the design of experiments. According to the review of the previous research, there are a few pieces of research in the blood supply chain in the field of design queue models and there were few works that tried to use these concepts for designing the blood supply chain networks. Also, in former research, the uncertainty in the number of donors, and also the importance of blood donors has not been considered.FindingsA novel mathematical model guided by the theory of linear programming has been proposed that can help health-care administrators in optimizing the blood supply chain networks.Originality/valueBy building upon solid literature and theory, the current study proposes a novel model for improving the supply chain of blood.
血液供应链网络优化的数学建模
目的研究血液供应链网络中考虑m/m/m/k队列模型的位置分配问题。这条供应链包括三个层次的供应商或献血者、主要血液中心(分离实验室、储存和配送中心)和需求中心(医院和私人诊所)。此外,所提出的模型是一个多目标模型,包括最小化血液供应链的总成本(未满足需求和库存损坏的成本,采集中心与主要血液中心之间的运输成本),最小化献血者在献血流动中心的等待时间,最小化在潜在地点建立流动中心。针对多目标NP-Hard问题,提出了求解Pareto解的启发式算法NSGA-II,并利用实验设计描述了算法参数的估计。通过对以往研究的回顾,在血液供应链设计队列模型领域的研究较少,尝试使用这些概念进行血液供应链网络设计的作品较少。此外,在以前的研究中,献血者数量的不确定性以及献血者的重要性都没有被考虑到。研究结果提出了一种以线性规划理论为指导的新型数学模型,可以帮助卫生保健管理者优化血液供应链网络。原创性/价值基于坚实的文献和理论,本研究提出了一个改善血液供应链的新模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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