考虑排放交易的动态多技术生产库存问题

Wei Zhang, Zhongsheng Hua, Yu Xia, Baofeng Huo
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引用次数: 21

摘要

我们研究了一个周期审查的多技术生产库存问题,该问题是由多个时期组成的规划范围内具有排放交易的单一产品。制造商从具有不同单位生产成本和排放限额消耗率的多种技术中进行选择,以生产满足独立分布的随机市场需求的产品。制造商在规划期开始时获得排放配额,并获准在接下来的每个时期通过外部市场进行排放配额交易。为了解决动态多技术生产-库存问题,我们实际上将问题划分为内层和外层。基于这两层的结构特性,我们发现最优排放交易政策遵循具有两个阈值的目标区间政策,而最优生产政策具有复合基存量结构。我们的理论结果表明,在任何状态下,同时选择的技术不应超过两种。但是,在不同的状态下可能会选择不同的技术组。我们的数值测试证实,对于制造商来说,保持多种可用技术在经济上是有益的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic multi-technology production-inventory problem with emissions trading
ABSTRACT We study a periodic-review multi-technology production-inventory problem of a single product with emissions trading over a planning horizon consisting of multiple periods. A manufacturer selects among multiple technologies with different unit production costs and emissions allowance consumption rates to produce the product to meet independently distributed random market demands. The manufacturer receives an emissions allowance at the beginning of the planning horizon and is allowed to trade allowances through an outside market in each of the following periods. To solve the dynamic multi-technology production-inventory problem, we virtually separate the problem into an inner layer and an outer layer. Based on the structural properties of the two layers, we find that the optimal emissions trading policy follows a target interval policy with two thresholds, whereas the optimal production policy has a composite base-stock structure. Our theoretical results show that no more than two technologies should be selected simultaneously at any state. However, different groups of technologies may be selected at different states. Our numerical tests confirm that it can be economically beneficial for a manufacturer to maintain multiple available technologies.
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来源期刊
IIE Transactions
IIE Transactions 工程技术-工程:工业
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审稿时长
4.5 months
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