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Response surface approach to robust design of assembly cells through simulation

dc.contributor.authorAydin, Cem Savas
dc.contributor.authorOzgurler, Senim
dc.contributor.authorDurmusoglu, Mehmet Bulent
dc.contributor.authorOzgurler, Mesut
dc.date.accessioned2026-06-27T14:15:51Z
dc.date.issued2018
dc.description.abstractPurpose - This paper aims to present a multi-response robust design (RD) optimization approach for U-shaped assembly cells (ACs) with multi-functional walking-workers by using operational design (OD) factors in a simulation setting. The proposed methodology incorporated the design factors related to the operation of ACs into an RD framework. Utilization of OD factors provided a practical design approach for ACs addressing system robustness without modifying the cell structure. Design/methodology/approach - Taguchi's design philosophy and response surface meta-models have been combined for robust simulation optimization (SO). Multiple performance measures have been considered for the study and concurrently optimized by using a multi-response optimization (MRO) approach. Simulation setting provided flexibility in experimental design selection and facilitated experiments by avoiding cost and time constraints in real-world experiments. Findings - The present approach is illustrated through RD of an AC for performance measures: average throughput time, average WIP inventory and cycle time. Findings are in line with expectations that a significant reduction in performance variability is attainable by trading-off optimality for robustness. Reductions in expected performance (optimality) values are negligible in comparison to reductions in performance variability (robustness). Practical implications - ACs designed for robustness are more likely to meet design objectives once they are implemented, preventing changes or roll-backs. Successful implementations serve as examples to shop-floor personnel alleviating issues such as operator/supervisor resistance and scepticism, encouraging participation and facilitating teamwork. Originality/value - ACs include many activities related to cell operation which can be used for performance optimization. The proposed framework is a realistic design approach using OD factors and considering system stochasticity in terms of noise factors for RD optimization through simulation. To the best of the authors' knowledge, it is the first time a multi-response RD optimization approach for U-shaped manual ACs with multi-functional walking-workers using factors related to AC operation is proposed.en
dc.description.urihttps://doi.org/10.1108/aa-08-2017-093
dc.identifier.doi10.1108/aa-08-2017-093
dc.identifier.eissn1758-4078
dc.identifier.endpage464
dc.identifier.issn0144-5154
dc.identifier.issue4
dc.identifier.startpage450
dc.identifier.urihttps://hdl.handle.net/20.500.14981/58606
dc.identifier.volume38
dc.identifier.wos000448387000008
dc.language.isoeng
dc.publisherEMERALD GROUP PUBLISHING LTD
dc.relation.ispartofASSEMBLY AUTOMATION
dc.subjectRobust design
dc.subjectResponse surface methodology
dc.subjectAssembly cell
dc.subjectOperational design
dc.subjectSimulation optimization
dc.subjectWALKING WORKERS
dc.subjectOPTIMIZATION
dc.subjectLINE
dc.subjectMODEL
dc.subjectALGORITHMS
dc.subjectTAGUCHI
dc.subjectIMPACT
dc.subjectAutomation & Control Systems
dc.subjectEngineering
dc.titleResponse surface approach to robust design of assembly cells through simulation
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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