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A green delivery-pickup problem for home hemodialysis machines; sharing economy in distributing scarce resources

机译:家用血液透析机的绿色提货问题;在分配稀缺资源中共享经济

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In this paper, we address a green delivery-pickup problem for Home Hemodialysis Machines (HHMs) categorized as scarce commodities. The system supplies the HHMs either from the central depot of the company or from the individual owners. Based on the sharing economy concept, the individuals who own the HHM devices can involve in this home health care system and share them with others through the fleet of the company to make money. After delivery of portable HHM devices to the clients (patients), they will be collected, disinfected and reallocated to fulfill the demands of the other customers. Moreover, respecting the environmental concerns, the vehicles' fuel consumption and consequently the GHG emissions are realistically assumed as a function of the vehicles' load, such that the company and especially the individual owners contribute to reducing GHG emissions, in addition to the primary economic motivations. Current research provides a bi-objective mixed-integer linear programming model which seeks minimizing total system cost and total carbon emissions. In order to solve the problem, Torabi and Hassini's (TH) technique is applied and then a multi-objective meta-heuristic algorithm, self-learning non-dominated sorting genetic algorithm (SNSGA-II), is developed for medium- and large-sized problems. Finally, the application of the problem is investigated by a real case study from the healthcare sector. Numerical analyses indicate that the proposed green sharing-enabled model has a meaningful impact on both operational-level logistics determinations as well as the environmental important attainment indicators. As notable savings are guaranteed in terms of total system cost and emission, the proposed model has a great potential to provide the item sharing activities with a proper sustainable solution.
机译:在本文中,我们解决了归类为稀缺商品的家用血液透析机(HHM)的绿色提货问题。该系统从公司的中央仓库或个人所有者提供HHM。基于共享经济概念,拥有HHM设备的个人可以参与该家庭保健系统,并通过公司的车队与他人共享它们以赚钱。将便携式HHM设备交付给客户(患者)后,将对其进行收集,消毒和重新分配,以满足其他客户的需求。此外,出于对环境的考虑,现实中假设车辆的油耗以及因此而产生的GHG排放是车辆负荷的函数,因此,除了主要的经济效益外,公司,尤其是个人车主也为减少GHG排放做出了贡献动机。当前的研究提供了一种双目标混合整数线性规划模型,该模型寻求最小化总系统成本和总碳排放量。为了解决该问题,应用了Torabi和Hassini(TH)技术,然后针对大中型企业开发了一种多目标元启发式算法,即自学习非主导排序遗传算法(SNSGA-II)。大小问题。最后,通过医疗保健部门的实际案例研究了该问题的应用。数值分析表明,所提出的支持绿色共享的模型对运营水平的物流确定以及环境重要成就指标都具有有意义的影响。由于在总的系统成本和排放方面保证了显着的节约,因此该模型具有很大的潜力,可以为项目共享活动提供适当的可持续解决方案。

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