Multi-stage multi-objective production planning using linguistic and numeric data-a fuzzy integer programming model

•We solve multi-stage production planning problem with multiple conflicting; non-commensurable and fuzzy objectives.•The trade off among the criteria is elicited by DM in linguistic terms and incorporated into the model.•The Induced Ordered Weighted Averaging (IOWA) operator is used to aggregate the...

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Veröffentlicht in:Computers & industrial engineering Jg. 87; S. 454 - 464
Hauptverfasser: Gupta, Mahima, Mohanty, B.K.
Format: Journal Article
Sprache:Englisch
Veröffentlicht: New York Elsevier Ltd 01.09.2015
Pergamon Press Inc
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ISSN:0360-8352, 1879-0550
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Abstract •We solve multi-stage production planning problem with multiple conflicting; non-commensurable and fuzzy objectives.•The trade off among the criteria is elicited by DM in linguistic terms and incorporated into the model.•The Induced Ordered Weighted Averaging (IOWA) operator is used to aggregate the objectives as per their priorities.•The production process is formulated as a Mixed Integer Programming (MIP) problem.•The methodology is illustrated with a real life application of crankshaft productions in an automobile industry. This paper introduces a methodology to solve a multi-stage production planning problem having multiple objectives, which are conflicting, non-commensurable and fuzzy in nature. The production process consists of multiple stages having one or more machines in each stage. Every processing stage produces work-in-process, semi-finished items as an output, which becomes an input to the subsequent stage either fully or partially depending on the cycle times of the machines. Events of machine breakdowns and imbalances in input–output relations in one or more stages may affect both work-in-process (WIP) and final production targets. Our paper provides a methodology based on fuzzy logic to maintain the desired balanced input–output relation at each stage and the targeted production output at the final stage. This is done by procurement of work-in-process inventory (WIP) and installation of new machines at appropriate stages. The objectives or goals expressed in linguistic terms are represented as fuzzy sets. The Induced Ordered Weighted Averaging (IOWA) operator is used to aggregate the objectives as per their priorities and finally to formulate the production process as a Mixed Integer Programming (MIP) problem. The solution to MIP shows the degrees of achievements of the production process objectives. The methodology is illustrated with a real life application of crankshaft productions in an automobile industry.
AbstractList This paper introduces a methodology to solve a multi-stage production planning problem having multiple objectives, which are conflicting, non-commensurable and fuzzy in nature. The production process consists of multiple stages having one or more machines in each stage. Every processing stage produces work-in-process, semi-finished items as an output, which becomes an input to the subsequent stage either fully or partially depending on the cycle times of the machines. Events of machine breakdowns and imbalances in input-output relations in one or more stages may affect both work-in-process (WIP) and final production targets. Our paper provides a methodology based on fuzzy logic to maintain the desired balanced input-output relation at each stage and the targeted production output at the final stage. This is done by procurement of work-in-process inventory (WIP) and installation of new machines at appropriate stages. The objectives or goals expressed in linguistic terms are represented as fuzzy sets. The Induced Ordered Weighted Averaging (IOWA) operator is used to aggregate the objectives as per their priorities and finally to formulate the production process as a Mixed Integer Programming (MIP) problem. The solution to MIP shows the degrees of achievements of the production process objectives. The methodology is illustrated with a real life application of crankshaft productions in an automobile industry.
•We solve multi-stage production planning problem with multiple conflicting; non-commensurable and fuzzy objectives.•The trade off among the criteria is elicited by DM in linguistic terms and incorporated into the model.•The Induced Ordered Weighted Averaging (IOWA) operator is used to aggregate the objectives as per their priorities.•The production process is formulated as a Mixed Integer Programming (MIP) problem.•The methodology is illustrated with a real life application of crankshaft productions in an automobile industry. This paper introduces a methodology to solve a multi-stage production planning problem having multiple objectives, which are conflicting, non-commensurable and fuzzy in nature. The production process consists of multiple stages having one or more machines in each stage. Every processing stage produces work-in-process, semi-finished items as an output, which becomes an input to the subsequent stage either fully or partially depending on the cycle times of the machines. Events of machine breakdowns and imbalances in input–output relations in one or more stages may affect both work-in-process (WIP) and final production targets. Our paper provides a methodology based on fuzzy logic to maintain the desired balanced input–output relation at each stage and the targeted production output at the final stage. This is done by procurement of work-in-process inventory (WIP) and installation of new machines at appropriate stages. The objectives or goals expressed in linguistic terms are represented as fuzzy sets. The Induced Ordered Weighted Averaging (IOWA) operator is used to aggregate the objectives as per their priorities and finally to formulate the production process as a Mixed Integer Programming (MIP) problem. The solution to MIP shows the degrees of achievements of the production process objectives. The methodology is illustrated with a real life application of crankshaft productions in an automobile industry.
Author Gupta, Mahima
Mohanty, B.K.
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Keywords Fuzzy goals
Inventory balance
Linguistic data
Multiple objectives
New machine installation
Multi stage production systems
Language English
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Snippet •We solve multi-stage production planning problem with multiple conflicting; non-commensurable and fuzzy objectives.•The trade off among the criteria is...
This paper introduces a methodology to solve a multi-stage production planning problem having multiple objectives, which are conflicting, non-commensurable and...
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SubjectTerms Automobile industry
Fuzzy
Fuzzy goals
Fuzzy logic
Fuzzy set theory
Fuzzy sets
Integer programming
Inventory balance
Linguistic data
Linguistics
Mathematical models
Methodology
Multi stage production systems
Multiple objectives
New machine installation
Production planning
Studies
Work in process
Workflow
Title Multi-stage multi-objective production planning using linguistic and numeric data-a fuzzy integer programming model
URI https://dx.doi.org/10.1016/j.cie.2015.06.001
https://www.proquest.com/docview/1705135145
https://www.proquest.com/docview/1730065387
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