基于随机规划的按订单装配库存管理:链式物料清单与M系统

Assemble‐to‐Order Inventory Management via Stochastic Programming: Chained BOMs and the M‐System

Production and Operations Management · 2016
被引 27
FT 50UTD 24ABS 4

中文导读

研究了利用两个随机规划模型来设计动态按订单装配系统的控制策略,证明了链式物料清单是模型凸性的充分条件,并通过M系统展示了参数简化与数值优势。

Abstract

We study an inventory management mechanism that uses two stochastic programs (SPs), the customary one‐period assemble‐to‐order (ATO) model and its relaxation, to conceive control policies for dynamic ATO systems. We introduce a class of ATO systems, those that possess what we call a “chained BOM.” We prove that having a chained BOM is a sufficient condition for both SPs to be [Formula: see text] convex in the first‐stage decision variables. We show by examples the necessity of the condition. For ATO systems with a chained BOM, our result implies that the optimal integer solutions of the SPs can be found efficiently, and thus expedites the calculation of control parameters. The M system is a representative chained BOM system with two components and three products. We show that in this special case, the SPs can be solved as a one‐stage optimization problem. The allocation policy can also be reduced to simple, intuitive instructions, of which there are four distinct sets, one for each of four different parameter regions. We highlight the need for component reservation in one of these four regions. Our numerical studies demonstrate that achieving asymptotic optimality represents a significant advantage of the SP‐based approach over alternative approaches. Our numerical comparisons also show that outside of the asymptotic regime, the SP‐based approach has a commanding lead over the alternative policies. Our findings indicate that the SP‐based approach is a promising inventory management strategy that warrants further development for more general systems and practical implementations.

库存管理随机规划供应链管理运营管理