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A stochastic dynamic programming approach-based yield management with substitution and uncertainty in semiconductor manufacturing

机译:基于随机动态规划方法的良率管理,在半导体制造中具有替代性和不确定性

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摘要

Yield management is important and challengeable in semiconductor industry for the quality uncertainty of the final products. The total yield rate of the semiconductor manufacturing process is uncertain, each product is graded into one of several quality levels according to performance before being shipped. A product originally targeted to satisfy the demand of one product may be used to satisfy the demand of other products when it conforms to their specifications. At the same time, the products depreciate in allocation periods, which mainly results from technical progresses. This paper studies the semiconductor yield management issue of a make-to-stock system with single input, multi-products, multi-demand periods, upward substitution and periodic depreciation. The whole time horizon of the system operation process can be divided into two stages: the production stage and the allocation stage. At the first stage, the firm invests in raw materials before any actual demand is known and produces multiple types of products with random yield rates. At the second stage, products are classified into different classes by quality and allocated in numbers of periods. The production and allocation problem are modeled as a stochastic dynamic program in which the objective is to maximize the profit of the firm. We show that the PRA (parallel allocation first, then upgrade) allocation policy is the optimal allocation policy and the objective function is concave in production input. An iterative algorithm is designed to find the optimal production input and numerical experiments are used to illustrate its effectiveness.
机译:对于最终产品的质量不确定性,良率管理在半导体行业中是重要且具有挑战性的。半导体制造工艺的总成品率尚不确定,每种产品在出厂前都会根据性能分为几种质量等级之一。当最初旨在满足一种产品需求的产品符合其规格时,可以用于满足其他产品的需求。同时,产品在分配期间内贬值,这主要是由于技术进步所致。本文研究了具有单输入,多产品,多需求期,向上替代和定期折旧的按库存生产的半导体产量管理问题。系统运行过程的整个时间范围可以分为两个阶段:生产阶段和分配阶段。在第一阶段,该公司在不知道任何实际需求之前就对原材料进行投资,并以随机的生产率生产多种类型的产品。在第二阶段,按质量将产品分为不同的类别,并按周期数进行分配。生产和分配问题被建模为一个随机动态程序,其目的是使公司的利润最大化。我们表明,PRA(先并行分配,然后升级)分配策略是最优分配策略,目标函数在生产投入中是凹入的。设计了一种迭代算法来找到最佳的生产投入,并通过数值实验来说明其有效性。

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