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Lean Six Sigma project selection using hybrid approach based on fuzzy DEMATEL-ANP-TOPSIS

机译:基于模糊DEMATEL-ANP-TOPSIS的混合方法精益六西格玛项目选择

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Purpose - The purpose of this paper is to select the optimal Lean Six Sigma (LSS) project using hybrid fuzzy-based Multi-Criteria Decision-Making (MCDM) approach for an automotive component manufacturing organization. Design/methodology/approach - The LSS project selection has been formulated as the MCDM problem. Hybrid MCDM method based on Decision-Making Trial and Evaluation Laboratory Model (DEMATEL), Analytical Network Process (ANP) and Technique for Order Preference by Similarity to Ideal Solution (TOPSIS) has been used to select the optimal LSS project. The methodology enabled the practitioners to systematically prioritize LSS projects. Findings - The finding of this study is that, out of five LSS projects, project P3 is the best LSS project. P3 is the optimal LSS project with reduced failure risk, and efforts are being taken to implement the selected project. Research limitations/implications - The problem formulation and methodology has been tested for a single study. In future, more number of studies could be conducted using the hybrid approach. This method is presently applied for an automotive component manufacturing organization; in future, the approach could be applied in different industrial sectors for improving its effectiveness. Practical implications - The case study has been conducted in a real-time industrial problem. The practitioners expressed the usefulness of the methodology for prioritizing LSS projects Hence, the inferences derived are found to possess practical relevance. Originality/value - The original contribution of the study is the selection of optimal LSS project using hybrid MCDM technique.
机译:目的-本文的目的是为汽车零部件制造组织使用基于混合模糊的多准则决策制定(MCDM)方法选择最佳的精益六西格码(LSS)项目。设计/方法/方法-LSS项目选择已制定为MCDM问题。基于决策试验和评估实验室模型(DEMATEL),分析网络过程(ANP)和基于与理想解决方案相似性的订单偏好技术(TOPSIS)的混合MCDM方法已用于选择最佳LSS项目。该方法使从业人员能够系统地对LSS项目进行优先排序。结果-该研究的结果是,在五个LSS项目中,P3项目是最好的LSS项目。 P3是具有降低故障风险的最佳LSS项目,并且正在努力实施所选项目。研究的局限性/含意-问题的表达方式和方法论已针对一项研究进行了测试。将来,可以使用混合方法进行更多的研究。该方法目前应用于汽车零部件制造组织。将来,该方法可应用于不同的工业部门以提高其有效性。实际意义-案例研究是在实时工业问题中进行的。从业人员表示了该方法对LSS项目进行优先级排序的有用性。因此,发现得出的推论具有实际意义。原创性/价值-研究的最初贡献是使用混合MCDM技术选择了最佳LSS项目。

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