JOURNAL ARTICLE

Optimal Policies for Multiechelon Inventory Problems with Markov-Modulated Demand

Fangruo ChenJing-Sheng Song

Year: 2001 Journal:   Operations Research Vol: 49 (2)Pages: 226-234   Publisher: Institute for Operations Research and the Management Sciences

Abstract

This paper considers a multistage serial inventory system with Markov-modulated demand. Random demand arises at Stage 1, Stage 1 orders from Stage 2, etc., and Stage N orders from an outside supplier with unlimited stock. The demand distribution in each period is determined by the current state of an exogenous Markov chain. Excess demand is backlogged. Linear holding costs are incurred at every stage, and linear backorder costs are incurred at Stage 1. The ordering costs are also linear. The objective is to minimize the long-run average costs in the system. The paper shows that the optimal policy is an echelon base-stock policy with state-dependent order-up-to levels. An efficient algorithm is also provided for determining the optimal base-stock levels. The results can be extended to serial systems in which there is a fixed ordering cost at stage N and to assembly systems with linear ordering costs.

Keywords:
Markov chain Holding cost Mathematical optimization Average cost Stock (firearms) Computer science Markov process Markov decision process Operations research Mathematics Economics Microeconomics Statistics

Metrics

179
Cited By
8.28
FWCI (Field Weighted Citation Impact)
30
Refs
0.98
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Supply Chain and Inventory Management
Social Sciences →  Business, Management and Accounting →  Management Information Systems
Advanced Queuing Theory Analysis
Social Sciences →  Business, Management and Accounting →  Management Information Systems
Scheduling and Optimization Algorithms
Physical Sciences →  Engineering →  Industrial and Manufacturing Engineering

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