A possibilistic aggregate production planning model for brass casting industry |
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Authors: | Ümit Sami Sakallı Ömer Faruk Baykoç Burak Birgören |
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Affiliation: | 1. Department of Industrial Engineering , K?r?kkale University , 71451, K?r?kkale, Turkey ssakalli@kku.edu.tr;3. Department of Industrial Engineering , Gazi University , 06570, Ankara, Turkey;4. Department of Industrial Engineering , K?r?kkale University , 71451, K?r?kkale, Turkey |
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Abstract: | This article discusses a possibilistic aggregate production planning (APP) model for blending problem in a brass factory; the problem computing optimal amounts of raw materials for the total production of several types of brass in a planning period. The model basically has a multi-blend model formulation in which demand quantities, percentages of the ingredient in some raw materials, cost coefficients, minimum and maximum procurement amounts are all imprecise and have triangular possibility distributions. A mathematical model and a solution algorithm are proposed for solving this model. In the proposed model, the Lai and Hwang's fuzzy ranking concept is relaxed by using ‘Either-or’ constraints. An application of the brass casting APP model to a brass factory demonstrates that the proposed model successfully solves the multi-blend problem for brass casting and determines the optimal raw material purchasing policies. |
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Keywords: | blending possibilistic programming aggregate production planning brass casting |
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