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Performance Analysis of Assembly Systems With Bernoulli Machines and Finite Buffers During Transients

机译:瞬态过程中带有Bernoulli机器和有限缓冲器的装配系统的性能分析

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摘要

Serial lines and assembly systems are two of the most fundamental production system structures used in practical manufacturing environments. While serial lines have been studied extensively in production systems literature and practice, assembly systems have received much less attention. Among existing results on assembly systems, most are focused on steady state performance evaluation, system properties, and improvement. On the other hand, transient behavior of such systems remains largely unexplored. In the framework of assembly systems with Bernoulli machines and finite buffers, this paper develops a mathematical model for transient analysis and derives closed-form formulas to calculate the real-time production rate, consumption rates, work-in-process, and probabilities of machine starvation and blockage, during transients. Then, an improved computationally efficient algorithm for transient performance evaluation in Bernoulli serial lines is proposed. Based on the improved algorithm, an effective and efficient method for transient performance evaluation in Bernoulli assembly systems is derived. Finally, the method is extended to complex assembly system structures.
机译:串行生产线和组装系统是实际制造环境中使用的两个最基本的生产系统结构。尽管串行线已在生产系统文献和实践中进行了广泛的研究,但装配系统受到的关注却少得多。在组装系统的现有结果中,大多数结果集中在稳态性能评估,系统特性和改进上。另一方面,这种系统的瞬态行为在很大程度上仍未开发。在具有伯努利机器和有限缓冲器的装配系统的框架中,本文建立了用于瞬态分析的数学模型,并导出了封闭形式的公式,以计算机器的实时生产率,消耗率,在制品和概率在瞬态过程中出现饥饿和堵塞。然后,提出了一种改进的计算效率高的伯努利串行线路暂态性能评估算法。基于改进算法,推导了伯努利装配系统瞬态性能评估的有效方法。最后,该方法扩展到复杂的装配系统结构。

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