A Comparative Study of Hybrid Approaches for Solving Capacitated Lot Sizing Problem With Setup Carryover and Backordering
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Date
2016
Authors
Tunali, Semra
Journal Title
Journal ISSN
Volume Title
Publisher
Inderscience Enterprises Ltd
Open Access Color
Green Open Access
Yes
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OpenAIRE Views
Publicly Funded
No
Abstract
The classical capacitated lot sizing problem is shown to be NP -hard for even a single item problem. This study deals with an extended version of this problem with setup carryover and backordering. To solve this computationally difficult lot sizing problem, we propose a number of hybrid meta -heuristic approaches consisting of genetic algorithms and a mixed integer programming -based heuristic. This MIP-based heuristic is combined with two types of decomposition schemes (i.e., product and time decomposition) to generate subproblems. Computational experiments are carried out on various problem sizes. We found that hybrid approaches employing only time decomposition scheme or combination of both time and product decomposition schemes in different forms outperform the other hybrid approaches. Moreover, we investigated the sensitivity of the two best performing approaches to changes in problem-specific parameters including backorder costs, setup times, setup costs, capacity utilisation and demand variability.
Description
ORCID
Keywords
lot sizing, setup carryover, backordering, hybrid approaches, sensitivity analysis, paired-t test, Times, Algorithms, Complexity, Sizes, Model, Clsp, Setup carryovers, T-tests, lot sizing, Integer programming, Genetic algorithms, 650, Heuristic programming, Hybrid approach, 004, Hybrid approaches, Paired-t test, Lot sizing, Setup carryover, Heuristic algorithms, Heuristic methods, Sensitivity analysis, Backordering
Fields of Science
05 social sciences, 0211 other engineering and technologies, 02 engineering and technology, 0502 economics and business
Citation
WoS Q
Q4
Scopus Q
Q2

OpenCitations Citation Count
4
Source
European Journal of Industrıal Engıneerıng
Volume
10
Issue
6
Start Page
683
End Page
702
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Scopus : 4
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