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Optimal Work-in-Process Control for a Closed Multistage Production System with Machine Preference

机译:具有机器偏好的封闭式多级生产系统的最佳工作控制控制

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In this work, we expose a closed-loop production system which has great similarity with the Kanban system as the Work-in-Process (WIP) is constant (CONWIP). This system is a multistage single product and it supports more than one machine at every stage. These machines can have different characteristics and they have limited capacity of buffering. We consider also that there is a preference for a machine usage in each stage. We use a Closed Queueing Network (CQN) with a repetitive blocking mechanism to model this system. The used resolution approach is the Maximum Entropy Method (MEM). In the first place, we look for the optimal WIP to keep in this system with respect to a production rate. In the second place, the routings to machines in the same stage are evaluated regarding the buffering capacity and the machine characteristic. We present some numerical results on a simple two-stage production system which holds the same number of batches looping. Interesting perspectives for the development of the presented model are looked over.
机译:在这项工作中,我们公开了一个闭环生产系统,与Kanban系统具有很大的相似性,因为过程中的工作(WIP)是恒定的(Conwip)。该系统是多级单一产品,并且在每个阶段都支持多台机器。这些机器可以具有不同的特性,并且它们具有有限的缓冲能力。我们还考虑到每个阶段都有偏好机器使用。我们使用具有重复阻塞机制的关闭排队网络(CQN)来模拟该系统。使用的分辨率方法是最大熵方法(MEM)。首先,我们寻找最佳的WIP以相对于生产速度保持在该系统。在第二个地方,对相同阶段的机器的路由进行评估关于缓冲能力和机器特性。我们在简单的两级生产系统上提出了一些数值结果,该系统占据了相同数量的批次。浏览了呈现模型的开发的有趣观点。

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