用贝叶斯方法计算二维保证下异质物品的最佳烧毁策略

Yinzhao Wei, Xiaoliang Ling, Sanyang Liu
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引用次数: 0

摘要

各种预烧程序已被广泛用于筛选薄弱项目和降低保修成本。本文提出了一种新的烧损模型,适用于具有不可更新的二维保修期的异质产品。假设在预烧和保修期内的所有故障都会通过最小修复进行修复。然后,我们根据物品在预烧期间的故障信息对物品进行筛选。我们建立了一个基于成本的模型,以优化投入市场的每件产品的平均总成本。我们证明,在某些条件下,最佳预烧时间或使用率应达到其上限。在实践中,由于模型参数的不确定性,物品的可靠性和平均总成本可能是随机的。因此,我们还提出了一种贝叶斯方法来计算物品的平均总成本和最佳待机策略,该方法充分考虑了模型参数的不确定性。我们还给出了一个例子来演示所提出的预烧模型和贝叶斯方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bayesian calculation of optimal burn-in policy for heterogeneous items under two-dimensional warranty
Various burn-in procedures have been greatly used to screen weak items and reduce warranty costs. This paper proposes a new burn-in model for heterogeneous items with non-renewing two-dimensional warranty. All failures within burn-in and warranty are assumed to be repaired through the minimal repair. Then we screen the items according to the failure information of the items during burn-in. We establish a cost-based model to optimize the mean total cost of each item put into the market. We demonstrate that the optimal burn-in time or usage rate should reach its upper bound under some conditions. In practice, the reliability and mean total cost of an item may be random due to the uncertainty of parameters in the model. Therefore, we also propose a Bayesian method to calculate the mean total cost and optimal burn-in policy of an item, which fully considers the uncertainty of parameters in the model. An example is also given to demonstrate the proposed burn-in model and Bayesian method.
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