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An Advanced Heuristic for Multiple-Option Spare Parts Procurement after End-of-Production

机译:生产结束后多选项备件采购的高级启发式方法

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After-sales service is a major source of profit for many original equipment manufacturers in industries with durable products. Successful engagement in after-sales service improves customer loyalty and allows for competitive differentiation through superior service like an extended service period during which customers are guaranteed to be provided with service parts. Inventory management during this period is challenging due to the substantial uncertainty concerning demand over a long time horizon. The traditional mechanism of spare parts acquisition is to place a large final order at the end of regular production of the parent product, causing major holding costs and a high level of obsolescence risk. With an increasing length of the service period, more flexibility is needed and can be provided by adding options like extra production and remanufacturing. However, coordinating all three options yields a complicated stochastic dynamic decision problem. For that problem type, we show that a quite simple decision rule with order-up-to levels for extra production and remanufacturing is very effective. We propose a heuristic procedure for parameter determination which accounts for the main stochastic and dynamic interactions in decision making, but still consists of relatively simple calculations that can be applied to practical problem sizes. A numerical study reveals that the heuristic performs extremely well under a wide range of conditions, and therefore can be strongly recommended as a decision support tool for the multi-option spare parts procurement problem. A comparison with decision rules adapted from practice demonstrates that our approach offers an opportunity for major cost reductions.
机译:对于具有耐用产品行业的许多原始设备制造商而言,售后服务是主要的利润来源。成功地参与售后服务可以提高客户忠诚度,并通过优质的服务(例如延长服务期限)保证竞争优势,在此期间,可以确保为客户提供服务部件。由于长期内需求的不确定性,在此期间的库存管理具有挑战性。传统的备件采购机制是在母产品的常规生产结束时下达较大的最终订单,这会导致大量的持有成本和较高的过时风险。随着服务期限的延长,需要更大的灵活性,并且可以通过添加诸如额外的生产和再制造之类的选项来提供更大的灵活性。但是,协调所有三个选项会产生一个复杂的随机动态决策问题。对于该问题类型,我们证明了一个非常简单的决策规则,该规则具有多达额外生产和再制造的订单级别,非常有效。我们提出了一种用于参数确定的启发式程序,该程序考虑了决策过程中的主要随机和动态交互作用,但仍包含可用于实际问题规模的相对简单的计算。数值研究表明,启发式算法在各种条件下均表现出色,因此,强烈建议将其用作多选项备件采购问题的决策支持工具。与根据实践改编的决策规则进行的比较表明,我们的方法为大幅降低成本提供了机会。

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