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Calculating safety stocks for assembly systems with random component procurement lead times: A branch and bound algorithm

Mohamed-Aly Ould Louly and Alexandre Dolgui

European Journal of Operational Research, 2009, vol. 199, issue 3, 723-731

Abstract: In this paper, a discrete single-level multi-component inventory control model for assembly systems with random component procurement lead times is considered. The economic order quantity (EOQ) policy is used for a type of finished product. The requirements of the components are constant and cyclic (periodic), and their values per period are deduced from the EOQ for the finished product. The paper focuses on the components safety stock calculation. The objective is to minimise the average holding cost of the components while keeping the desired service level for the finished product. For this, an upper bound, two lower bounds, two dominance properties and an efficient branch and bound algorithm are suggested. Several tests are executed and conclusions are drawn. The proposed model provides a substantial saving for assembly systems with a large number and unreliable delivery of components as in semi-conductor and automotive industries.

Keywords: Supply; chain; management; Inventory; Uncertainty; modelling; Combinatorial; optimization; Branch; and; bound (search for similar items in EconPapers)
Date: 2009
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Citations: View citations in EconPapers (10)

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European Journal of Operational Research is currently edited by Roman Slowinski, Jesus Artalejo, Jean-Charles. Billaut, Robert Dyson and Lorenzo Peccati

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