A Modeling and Hybridized Decomposition Approach for the Multi-level Capacitated Lot-Sizing Problem with Setup Carryover, Backlogging, and Emission Control

被引:0
|
作者
Nusrat T. Chowdhury
Mohammed F. Baki
Ahmed Azab
机构
[1] Bemidji State University,School of Technology, Art and Design
[2] University of Windsor,Odette School of Business
[3] University of Windsor,Production & Operations Management Research Laboratory, Faculty of Engineering
关键词
Inventory; Multi-level capacitated lot-sizing; Emission control; Setup carryover; Dantzig-Wolfe decomposition;
D O I
10.1007/s43069-024-00350-8
中图分类号
学科分类号
摘要
The goal of the production planning problem is to determine the optimum quantity to produce in order to satisfy demand over a predetermined planning horizon with the least amount of money spent. Making the appropriate choices in production planning will impact a manufacturing company’s performance and productivity, which is crucial to remain competitive in the market. Therefore, developing and enhancing techniques for solving production planning problems is very significant. This paper proposes a mixed-integer linear programming model for this extension of the dynamic multi-level capacitated lot-sizing under study, where setup carryover, backlogging, and emission control are considered. An item Dantzig-Wolfe decomposition-based heuristic procedure is developed, and a dynamic programming and column generation approach is used to solve the problem. We also propose a multi-step iterative capacity allocation heuristic procedure to handle any infeasibilities that arise when solving the problem. We evaluate the performance of the developed solution approach using a test data set available in the literature. Computational results show that the proposed optimization framework provides competitive solutions within a reasonable timeframe.
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