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An approach to quality function deployment based on probabilistic linguistic term sets and ORESTE method for multi-expert multi-criteria decision making

机译:基于概率语言术语集的质量函数部署方法和多专家多标准决策的ORESTE方法

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摘要

The quality function deployment (QFD) is an effective tool to translate the customer requirements (CRs) to the design requirements (DRs) of a product. The process of selecting the optimal innovative product design to maximize customer satisfaction is full of uncertainty and fuzziness regarding to the users' preferences, the relationships between CRs and DRs and the merits of product designs. This study proposes a multi-expert multi criteria decision making method to solve the innovative product design selection problem by developing an enhanced QFD method combined with the complicated fuzzy linguistic representation model, the probabilistic linguistic term set (PLTS), and the ranking method, ORESTE. Firstly, we propose a probability aggregation method to integrate the individuals' subjective evaluations into group ones expressed as PLTSs. On this basis, we extend the QFD into the probabilistic linguistic context to get the DRs' fuzzy weights. Then, based on a new distance measure between PLTSs, a probabilistic linguistic global preference score function and three kinds of probabilistic linguistic preference intensity formulas are proposed. Furthermore, we develop a PL-ORESTE method to obtain the preference, indifference and incomparability relations between the alternatives. For the facility of application, we develop the procedure of the QFD-based PL-ORESTE method. Given that the "shared cars" is a new industry appeared in Chinese market, we finally illustrate the applicability of the proposed method by a case study concerning the selection of innovative designs of Panda shared cars.
机译:质量功能部署(QFD)是将客户要求(CRS)转换为产品的设计要求(DRS)的有效工具。选择最佳创新产品设计以最大限度地提高客户满意度的过程充满了用户的偏好,对用户的偏好,CRS和DRS之间的关系以及产品设计的优点。本研究提出了一种多专家的多标准决策方法来解决创新的产品设计选择问题,通过开发增强的QFD方法与复杂的模糊语言表示模型,概率语言术语集(PLTS)以及排名方法,ORESTE 。首先,我们提出了一种概率聚集方法,将个人的主观评估集成为表达作为PLTS的群体。在此基础上,我们将QFD扩展到概率主义语言背景下,以获得DRS的模糊重量。然后,基于PLTS之间的新距离测量,提出了一种概率语言全局偏好得分和三种概率语言偏好强度公式。此外,我们开发了一种PL-Oreste方法,以获得替代方案之间的偏好,漠不关心和无与伦比的关系。对于应用程序的设施,我们开发了基于QFD的PL-Oreste方法的过程。鉴于“共用汽车”是中国市场出现的新行业,我们终于通过案例研究了涉及熊猫共用汽车创新设计的案例研究。

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