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首页> 外文期刊>Simulation modelling practice and theory: International journal of the Federation of European Simulation Societies >A simulation analysis of the impact of finite buffer storage on manufacturing system reliability
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A simulation analysis of the impact of finite buffer storage on manufacturing system reliability

机译:有限缓冲区存储对制造系统可靠性影响的仿真分析

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摘要

This paper develops a Monte Carlo Simulation (MCS) approach to estimate the system reliability for a multistate manufacturing network with parallel production lines (MMN-PPL) considering finite buffer storage. System reliability indicates the probability that all workstations provide sufficient capacity to satisfy a specified demand and buffers possess adequate storage. The buffers are modeled as a network-structured MMN-PPL. Storage usage of buffers is analyzed based on the MMN-PPL. MCS algorithms are developed to generate the capacity state and to check the storage usage of buffers to determine whether the demand can be satisfied or not. System reliability of the MMN-PPL is estimated through simulation. The MCS approach is an efficient method to estimate system reliability for an MMN-PPL with a reasonable accuracy and time. A pair of practical examples including a tile and a touch panel manufacturing systems shows that system reliability is overestimated when buffer storage is assumed to be infinite. Demand satisfaction probability is further addressed to provide guidance for a proper production policy. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文开发了一种蒙特卡罗模拟(MCS)方法,以考虑有限缓冲存储器的情况,为具有并行生产线(MMN-PPL)的多州制造网络估计系统可靠性。系统可靠性表示所有工作站提供足够容量以满足指定需求并且缓冲区拥有足够存储空间的可能性。缓冲区被建模为网络结构的MMN-PPL。基于MMN-PPL分析缓冲区的存储使用情况。开发了MCS算法以生成容量状态并检查缓冲区的存储使用情况,以确定是否可以满足需求。 MMN-PPL的系统可靠性通过仿真估算。 MCS方法是一种以合理的准确性和时间来估算MMN-PPL系统可靠性的有效方法。一对包括瓷砖和触摸面板制造系统的实际示例表明,当缓冲区存储被假定为无限时,系统可靠性被高估了。进一步解决了需求满足概率,以为适当的生产策略提供指导。 (C)2016 Elsevier B.V.保留所有权利。

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