A generalized algebraic model for optimizing inventory decisions in a multi-stage complex supply chain
In this paper, we deal with more generalized inventory coordination mechanism in an n-stage, multi-customer, non-serial supply chain, where we extend and generalize pervious works that use algebraic methods to optimize this coordinated supply chain. We establish the recursive expressions for this multi-variable optimization problem. These expressions are used for the derivation of the optimal replenishment policy and the development of the solution algorithm. Further, we describe a simple procedure that can help in sharing the coordination cost benefits to induce all stages to adopt the inventory coordination mechanism. We provide a numerical example for illustrative purposes.
Year of publication: |
2009
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Authors: | Seliaman, M.E. ; Ahmad, Ab Rahman |
Published in: |
Transportation Research Part E: Logistics and Transportation Review. - Elsevier, ISSN 1366-5545. - Vol. 45.2009, 3, p. 409-418
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Publisher: |
Elsevier |
Keywords: | Supply chain integration Production-inventory models Without derivatives |
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