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An Application of Fuzzy Signal-to-Noise Ratio to the Assessment of Manufacturing Processes

机译:模糊信噪比在制造过程评估中的应用

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Taguchi method is an important tool used for robust design to produce high quality products efficiently. In Taguchi method, the signal-to-noise (SN) ratio serves as the objective function for optimization. This ratio is a useful measurement indicator for manufacturing processes. Conventionally, one calculates the SN ratio with the crisp observations. However, there are cases that observations are difficult to measure precisely, or observations need to be estimated. This paper develops a fuzzy nonlinear programming model, based on the SN ratio, to assess the manufacturing processes with fuzzy observations. A pair of nonlinear fractional programs is formulated to calculate the lower and upper bounds of the fuzzy SN ratio. By model reduction and variable substitutions, the nonlinear fractional programs are transformed into quadratic programs. Solving the transformed quadratic programs, we obtain the global optimum solutions of the lower bound and upper bound fuzzy SN ratio. By deriving the ranking index of the fuzzy SN ratios of the manufacturing process alternatives, the ranking result of the assessment is determined.
机译:田口方法是用于坚固设计以有效生产高质量产品的重要工具。在田口方法中,信噪比(SN)作为优化的目标函数。该比率是制造过程中有用的度量指标。按照惯例,人们会用清晰的观察结果来计算信噪比。但是,在某些情况下,很难精确地测量观测值,或者需要对观测值进行估计。本文基于信噪比建立了一个模糊的非线性规划模型,以模糊的观测值来评估制造过程。制定了一对非线性分数程序,以计算模糊信噪比的上下限。通过模型约简和变量替换,非线性分数程序被转换为二次程序。求解变换后的二次程序,我们获得了下界和上界模糊SN比率的全局最优解。通过得出制造工艺备选方案的模糊信噪比的等级指数,可以确定评估的等级结果。

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