An inspection model of products and their input materials

Neng-Hui Shih, Chih-Hsiung Wang
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引用次数: 1

Abstract

Consider an input material with a nonconforming probability that is used for the production of a product through a deteriorating process, which is initially maintained in an in-control state, but can randomly shift into an out-of-control state after some products are produced. To economically control the total quality-related cost for a given production lot, an optimal inspection policy for the products and their input materials is proposed. Furthermore, under the optimal inspection policy, a decision on the optimal production lot size is also incorporated. The unique properties and conditions that give the optimal production lot size are explored. Numerical examples are given to illustrate our proposed inspection and production model. The effects of the model's parameter values, such as inspection error rate, unit inspection cost for the input material, unit inspection cost for the product, etc., on the optimal solution are investigated. Finally, some useful insights that should help industrial operations are presented.
产品及其输入材料的检验模型
考虑一种具有不合格概率的输入材料,用于经过变质过程的产品的生产,该材料最初保持在控制状态,但在生产出部分产品后,可能会随机转入失控状态。为了经济地控制给定生产批次的总质量成本,提出了一种针对产品及其输入材料的最优检验策略。此外,在最优检验策略下,还纳入了最优生产批数的决策。探讨了产生最佳生产批量的独特性质和条件。数值算例说明了我们提出的检验和生产模型。考察了模型的检验错误率、输入材料的单位检验成本、产品的单位检验成本等参数值对最优解的影响。最后,提出了一些有助于工业操作的有用见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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