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Performance analysis for serial production lines with Bernoulli Machines and Real-time WIP-based Machine switch-on/off control

机译:使用Bernoulli机器和基于WIP的实时机器开关控制的串行生产线的性能分析

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摘要

In recent years, achieving high energy efficiency has become one of the primary goals in manufacturing, along with maintaining high productivity and quality. In many manufacturing systems, it is sometimes possible to temporarily switch off a machine to reserve energy, and switch it back on when a certain condition is met. Indeed, production control-based shop floor continuous improvement is recognised as one of the most cost-effective ways to achieve energy-efficient production. In this paper, we study serial production lines with Bernoulli machines and finite capacity buffers and assume that some of the machines in the line can be switched on and off during the production process according to a state-based feedback control policy. Mathematical models for the system under consideration are derived and analytical methods are developed for calculating the system performance measures during transients. Specifically, exact Markovian analysis is used for two- and three-machine lines in which the switch-on/off operations of only one machine is considered. For longer lines, the switch-on/off operations of multiple machines are considered and an aggregation-based approximation approach is applied to evaluate the system performance measures. Numerical experiments show that the method developed can be used to efficiently calculate the system's performance with high accuracy.
机译:近年来,在保持高生产率和高质量的同时,实现高能效已成为制造的主要目标之一。在许多制造系统中,有时可以暂时关闭机器以保留能量,然后在满足特定条件时重新打开机器。实际上,基于生产控制的车间持续改进被认为是实现节能生产的最经济有效的方法之一。在本文中,我们研究了使用Bernoulli机器和有限容量缓冲区的串行生产线,并假设生产线中的某些机器可以根据基于状态的反馈控制策略在生产过程中打开和关闭。得出了所考虑系统的数学模型,并开发了分析方法来计算瞬态过程中的系统性能指标。具体来说,精确的马尔可夫分析用于两台和三台机器的生产线,其中仅考虑一台机器的打开/关闭操作。对于更长的生产线,考虑了多台机器的接通/断开操作,并且采用了基于聚集的近似方法来评估系统性能指标。数值实验表明,所开发的方法可用于高效,高精度地计算系统性能。

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