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Models for Ordering Multiple Products Subject to Multiple Constraints, Quantity and Freight Discounts
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作者 John Moussourakis Cengiz Haksever 《American Journal of Operations Research》 2013年第6期521-535,共15页
One of the most important responsibilities of a supply chain manager is to decide “how much” (or “many”) of inventory items to order and how to transport them. This paper presents four mixed-integer linear program... One of the most important responsibilities of a supply chain manager is to decide “how much” (or “many”) of inventory items to order and how to transport them. This paper presents four mixed-integer linear programming models to help supply chain managers make these decisions for multiple products subject to multiple constraints when suppliers offer quantity discounts and shippers offer freight discounts. Each model deals with one of the possible combinations of all-units, incremental quantity discounts, all-weight and incremental freight discounts. The models are based on a piecewise linear approximation of the number of orders function. They allow any number of linear constraints and determine if independent or common (fixed) cycle ordering has a lower total cost. Results of computational experiments on an example problem are also presented. 展开更多
关键词 INVENTORY MIXED-INTEGER Linear Programming Quantity and FREIGHT Discounts all-units and INCREMENTAL Discounts MULTIPLE Products and MULTIPLE Constraints
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