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首页> 外文期刊>Journal of intelligent & fuzzy systems: Applications in Engineering and Technology >Developing a M/G/C-FCFS queueing model with continuous review (R, Q) inventory system policy in a cement industry
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Developing a M/G/C-FCFS queueing model with continuous review (R, Q) inventory system policy in a cement industry

机译:在水泥行业中开发具有连续审查(R,Q)库存系统政策的M / G / C-FCFS排队模型

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摘要

Queueing models, in which the arrival and/or departure procedure do not follow the Poisson assumption, are more complex and may produce less tractable systematic results. In a production network, each stage or echelon can be portrayed with a lining framework with stock, especially when the procedure is liable to a long sitting tight time for retailers to meet the item. In particular, these problems lead to the uncertainty in demand and lead-time, both of which can be assumed as a probabilistic problem. Therefore, it is vital to create a mechanism to facilitate and reduce the long waiting time in the system. This paper considers an M/G/6-first come first service queueing model under the continued review (R, Q) policy. The DMEI-FCFS model is developed to reduce the long expected waiting time of the retailers in the system. The proposed model is able to reduce the expected waiting time in the system from 13 hours and 30 minutes to 6 hours and 2 minutes. From the model, the optimal expected number of the retailers and also the expected waiting time for both the queue and the system can be determined. Finally, the evaluation of the DMEI-FCFS model is conducted based on the performance measures of the expected waiting time in the system and also sensitivity analysis by using a simulation.
机译:排队模型,其中到达和/或出发程序不遵循泊松假设,更复杂,可能产生较差的系统结果。在生产网络中,每个阶段或梯子都可以用衬里框架与股票的衬里框架描绘,特别是当该程序允许长时间坐着零售商达到物品时。特别是,这些问题导致了需求和延期时间的不确定性,这两者都可以被认为是概率的问题。因此,创建一种机制至关重要,以减少系统中的长等待时间至关重要。本文在继续审查(R,Q)政策下,考虑了M / G / 6-First的第一服务队列模式。 DMEI-FCFS模型是开发的,以减少系统中零售商的长期预期等待时间。所提出的模型能够将系统中的预期等候时间从13小时减少到30分钟至6小时和2分钟。从模型中,可以确定零售商的最佳预期数量以及队列和系统的预期等待时间。最后,基于系统中预期等待时间的性能测量来进行DMEI-FCFS模型的评估,以及使用模拟的灵敏度分析。

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