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The Research of Performance Evaluation System on Manufacturing System with Reconfigurable Configuration

机译:可重构配置制造系统性能评估系统研究

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Due to unpredictable global competition and high-frequency market changes, to stay competitive, manufacturers must possess some new and advanced manufacturing systems with reconfigurability in order to meet all these changes rapidly and cost-effectively. These manufacturing systems should adjust their production functionality and capacity in time by changing system configurations; hence, it is very important to analyze the impact of different configuration on manufacturing system performance. A systematic analysis method is needed to evaluate overall performance based on system hierarchy process. By using manufacturing system engineering theory, Boolean algebra, probability statistics theory, stream of variation methodology and so on, the impact of system configuration on performance is studied with respect to reliability, scalability, convertibility, quality, productivity and cost. A case study shows some preliminary conclusions for the performance analysis of different configurations of manufacturing system. These performance factors have been developed an integrated performance evaluation model as the criterion to select manufacturing system configuration, the elementary flow frame of this model is presented.
机译:由于不可预测的全球竞争和高频率的市场变化,为了保持竞争力,制造商必须拥有一些具有可重构性的新的和先进的制造系统,以便快速,经济高效地应对所有这些变化。这些制造系统应通过更改系统配置及时调整其生产功能和产能。因此,分析不同配置对制造系统性能的影响非常重要。需要一种系统的分析方法来评估基于系统层次结构过程的总体性能。通过使用制造系统工程理论,布尔代数,概率统计理论,变化方法论等方法,从可靠性,可扩展性,可转换性,质量,生产率和成本等方面研究了系统配置对性能的影响。案例研究显示了针对制造系统不同配置的性能分析的一些初步结论。这些性能因素已经发展成为一个综合性能评估模型,作为选择制造系统配置的标准,并给出了该模型的基本流程框架。

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