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ROBUST DESIGN FOR QUALITY-RELIABILITY VIA FUZZY PROBABILITY

机译:通过模糊概率的质量可靠性鲁棒设计

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The purpose of this paper is to describe a robust design method for quality reliability with fuzzy design target. Fuzzy number was used to express the design target of product's quality with fuzzy character, and its membership functions in common use were given. The robustness of a design solution was studied using the theory of fuzzy probability. To maximize the fuzzy probability of quality design was proposed as a robust design criterion, and its validity and practicability were validated. The controlling effect of this criterion on the mean and variance of quality index is similar to the effect of Taguchi's signal to noise ratio. This criterion is well adaptable to the different choice of the membership functions, and can effectively controls the direction at which the mean on quality index approaches to the nominal target. A robust optimal design example of a circuit was presented, and it shows that its solution is better than traditional robust design methods.
机译:本文的目的是描述具有模糊设计目标的质量可靠性的稳健设计方法。模糊数用于表达产品质量的设计目标,用模糊特征,给出了其共同用途的成员函数。使用模糊概率理论研究了设计解决方案的鲁棒性。为了最大限度地提高质量设计的模糊概率,提出了一种强大的设计标准,验证了其有效性和实用性。该标准对质量指标的平均值和方差的控制效果类似于Taguchi信号对噪声比的影响。该标准适用于不同选择的隶属功能,可以有效地控制质量指数对标称目标的平均值的方向。提出了一种电路的稳健最佳设计示例,并显示其解决方案优于传统的鲁棒设计方法。

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