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Economic production lot sizing with two independent/dependent imperfect key subsystems

机译:具有两个独立/相关的不完善关键子系统的经济生产批量

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摘要

This paper applies an economic production quantity model to determine a lot size for manufacturing a product in batches on an imperfect production system. Typically, a single machine is considered for production. Generalising this situation and for providing a wide-range application, a new model is developed where the production system is affected by two key production subsystems (KPSs) that may shift from an in-control state to an out-of-control state. When a shifting happens, a fixed percentage of items produced become defective. Let X and Y denote the time-to-shift of these two KPSs, respectively. They are exponentially distributed random variables. Depending on whether X and Y are statistically independent, two cases are investigated. The objective is to find an optimal production run time so as to minimise the expected total costs including setup, inventory holding, and defective costs. A glass pot production system of a cutting module and a spout forming module is introduced to show the application. Numerical analyses are given at the end to illustrate the models.
机译:本文采用经济生产数量模型来确定在不完善的生产系统上批量生产产品的批量。通常,考虑将一台机器用于生产。概括这种情况并提供广泛的应用,开发了一种新模型,其中生产系统受到两个关键生产子系统(KPS)的影响,这两个子系统可能会从控制中状态转换为失控状态。当发生移位时,固定百分比的产品将变成有缺陷的产品。令X和Y分别表示这两个KPS的移动时间。它们是指数分布的随机变量。根据X和Y是否在统计上独立,研究了两种情况。目的是找到最佳的生产运行时间,以便将包括安装,库存持有和缺陷成本在内的预期总成本降至最低。介绍了具有切割模块和喷嘴形成模块的玻璃罐生产系统,以展示其应用。最后给出数值分析以说明模型。

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