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Fuzzy Nonlinear Models for New Product Development Using Four-Phase Quality Function Deployment Processes

机译:使用四阶段质量函数展开过程的新产品开发模糊非线性模型

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Quality function deployment (QFD) frameworks are useful tools for constructing a new product development (NPD) plan that enables the clear itemization of customer needs and the systematic evaluation of each solution to maximize customer satisfaction. A complete QFD process includes four sequential phases in which four important decision outcomes are determined for NPD, namely, the fulfillment levels of design requirements (DRs), part characteristics, process parameters, and production requirements. Unlike prior studies which have focused only on determining DRs, this paper extends Chen and Ko's models to consider the close link between the four phases in NPD using the means-end chain concept to build up a series of fuzzy nonlinear programming models for determining the fulfillment levels of each decision outcome for customer satisfaction. In addition, this paper incorporates risk analysis, which is treated as the constraint in the models, into the QFD process. To deal with the vague nature of product development processes, fuzzy sets are applied for both QFD and risk analysis. A numerical example is used to demonstrate the applicability of the proposed model.
机译:质量功能部署(QFD)框架是用于构建新产品开发(NPD)计划的有用工具,该计划使客户需求的明细项目和对每个解决方案的系统评估能够最大程度地提高客户满意度。完整的QFD流程包括四个连续阶段,其中为NPD确定了四个重要的决策结果,即设计要求(DR)的实现水平,零件特性,过程参数和生产要求。与先前仅专注于确定灾难恢复的研究不同,本文扩展了Chen和Ko的模型,以均值链概念来考虑NPD四个阶段之间的紧密联系,从而建立了一系列用于确定履行的模糊非线性规划模型每个决策结果的水平,以提高客户满意度。此外,本文将风险分析(在模型中被视为约束)纳入了QFD过程。为了应对产品开发过程的模糊性,将模糊集应用于QFD和风险分析。数值例子说明了该模型的适用性。

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