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Range, work in progress and utilization

机译:范围,进行中的工作和利用率

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摘要

For the design of a supply chain as well as for a production system, the relationship between utilization, range, lead time and work in progress is very important. Because of the cost of the available capacity, the utilization should be high, but on the other hand full utilization has a negative impact on the lead time and work in progress. In this paper, some relationships for a continuous production system are formulated and theoretically proven between average lead time, average range, average work in progress and average utilization for a multi-item system with a dynamic demand. The basic equation that is developed is the continuous and deterministic analogous relationship to the well-known Little Law based on queuing theory. The theoretically deduced and proven logistical curves are similar to the results of the funnel model based on empirical studies and simulation. One interesting result is that the variability of the inventory or of the production load causes a waste of capacity and therefore a reduced utilization and an increased lead time. With the help of the deduced relationships, rules for the design and control of a production system are introduced.
机译:对于供应链以及生产系统的设计,利用率,范围,交货时间和进行中的工作之间的关系非常重要。由于可用容量的成本,利用率应该很高,但另一方面,完全利用率会对交付周期和进行中的工作产生负面影响。在本文中,针对具有动态需求的多项目系统,建立了连续生产系统的一些关系,并在理论上证明了平均交付时间,平均范围,平均在建工作和平均利用率之间的关系。提出的基本方程是与基于排队论的著名小法则的连续和确定性的相似关系。理论推论和证明的后勤曲线与基于经验研究和模拟的漏斗模型的结果相似。一个有趣的结果是库存或生产负荷的可变性导致容量的浪费,因此降低了利用率并增加了交货时间。在推导的关系的帮助下,引入了设计和控制生产系统的规则。

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