DocumentCode
1357044
Title
Multiperiod Remanufacturing Planning With Uncertain Quality of Inputs
Author
Denizel, Meltem ; Ferguson, Mark ; Souza, Gilvan Gil C
Author_Institution
Fac. of Manage., Sabanci Univ., Istanbul, Turkey
Volume
57
Issue
3
fYear
2010
Firstpage
394
Lastpage
404
Abstract
In this paper, we consider production planning when inputs have different and uncertain quality levels, and there are capacity constraints. This situation is typical of most remanufacturing environments, where inputs are product returns (also called cores). Production (remanufacturing) cost increases as the quality level decreases, and any unused cores may be salvaged at a value that increases with their quality level. Decision variables include, for each period and under a certain probabilistic scenario, the amount of cores to grade, the amount to remanufacture for each quality level, and the amount of inventory to carry over for future periods for ungraded cores, graded cores, and finished remanufactured products. Our model is grounded with data collected at a major original equipment manufacturer that also remanufactures. We formulate the problem as a stochastic program; although it is a large linear program, it can be solved easily using Cplex. We provide a numeric study to generate insights into the nature of the solution.
Keywords
decision making; linear programming; production planning; recycling; stochastic programming; Cplex; capacity constraints; equipment manufacturer; linear program; multiperiod remanufacturing planning; production planning; stochastic program; uncertain input quality; Capacity planning; Costs; Cultural differences; Process planning; Production planning; Programming profession; Stochastic processes; Technological innovation; Uncertainty; Virtual manufacturing; Production planning; remanufacturing; stochastic programming;
fLanguage
English
Journal_Title
Engineering Management, IEEE Transactions on
Publisher
ieee
ISSN
0018-9391
Type
jour
DOI
10.1109/TEM.2009.2024506
Filename
5223593
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