基于比率分析(MOORA)的离散事件仿真多目标优化方法的时间成本作业优化

K. R. Sungkono, Tio Arya Dewa Prakasa, Alfado Rafly Hermawan, Ganendra Aby Bhamakerti, R. Sarno
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摘要

医院的医疗废物管理至关重要,必须得到妥善处理。废物管理疏忽可导致废物堆积,从而引发新的疾病。垃圾堆积的原因之一是资源数量不足。工人数量的优化是很重要的,因为它会对产生的成本和废物处理的完成时间产生影响。医疗废物管理过程的模拟可以描绘许多情况,以提供最佳资源。现有的一些研究利用离散事件模拟(DES)来模拟废物处理过程;但是,这些出版物没有根据不同配给的成本和时间确定最佳资源量,也没有确定成本和时间之比的差异对资源数量的影响。本文提出将离散事件仿真(DES)与MOORA相结合,在不同的时间和成本比下确定资源的数量。然后,本文实现了两个仿真,即少量传入废物的仿真和大量传入废物的仿真,以确定成本和时间的比率与工人数量之间的显著性。本研究使用东爪哇一家医院医疗废物管理的过程模型来建立DES。本研究的结果表明,在废物较少的情况下,所需的工人数量少于废物大量进入的情况。在有少量废物进入的情况下,平衡比例与不平衡比例的差异对工人的资源需求也没有太大的影响。与大量废物流入的情况相反,就每项活动所需的工人数量而言,这一比例的差异将被显著地看到。
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Optimizing Time and Cost Activity based on Discrete Event Simulation with Multi-Objective Optimization Method by Ratio Analysis (MOORA)
Medical waste management in a hospital is critical and must be treated properly. Waste management negligence can lead to accumulation of waste, which can trigger new diseases. One of the reasons for the accumulation of waste is insufficient number of resources. Optimization of the number of workers is important, because it will have an impact on the costs incurred and the complete time of the waste treatment. A simulation of medical waste management processes can portray many situations to provide optimal resources. Several existing research utilize Discrete Event Simulation (DES) to simulate waste processes; however, those publications have not determined optimal amount of resources based on cost and time in different rations and identified the effect of difference in the ratio of cost and time to the number of resources. This paper proposes a combination of Discrete Event Simulation (DES) and MOORA to determine amount of resources in different ratio of time and cost. Then, this paper implements two simulations, i.e., a simulation with small amount of incoming waste and a simulation with high amount of incoming waste, to identify the significant between the ratio of cost and time to the number of workers. This study uses a process model of medical waste management of a hospital in East Java to establish the DES. The results of this study indicate that in the case where there is less waste going in, fewer workers will be required than in the case where there is a lot of waste going in. The difference between the balanced ratio and the unbalanced ratio in the case where there is a small amount of incoming waste also does not have a big impact on the resource requirements of workers. In contrast to the case of a lot of incoming waste, the difference in the ratio will be seen significantly in terms of the number of workers needed for each activity.
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