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An orthogonal arrays approach to robust parameter designs methodology

机译:鲁棒参数设计方法的正交阵列方法

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Robust parameter design methodology was originally introduced by Taguchi [14] as an engineering methodology for quality improvement of products and processes. A robust design of a system is one in which two different types of factors are varied; control factors and noise factors. Control factors are variables with levels that are adjustable, whereas noise factors are variables with levels that are hard or impossible to control during normal conditions, such as environmental conditions and raw-material properties. Robust parameter design aims at the reduction of process variation by properly selecting the levels of control factors so that the process becomes insensitive to changes in noise factors. Taguchi [14,15] proposed the use of crossed arrays (inner-outer arrays) for robust parameter design. A crossed array is the cross-product of an orthogonal array (OA) involving control factors (inner array) and an OA involving noise factors (outer array). Objecting to the run size and the flexibility of crossed arrays, several authors combined control and noise factors in a single design matrix, which is called a combined array, instead of crossed arrays. In this framework, we present the use of OAs in Taguchi's methodology as a useful tool for designing robust parameter designs with economical run size.
机译:稳健的参数设计方法最初是由Taguchi [14]引入的,作为改善产品和过程质量的工程方法。一种健壮的系统设计是其中两种不同类型的因素都发生变化的设计。控制因素和噪声因素。控制因子是具有可调整水平的变量,而噪声因子是具有在正常条件(例如环境条件和原材料特性)下难以控制或无法控制的水平的变量。健壮的参数设计旨在通过适当选择控制因素的水平来减少过程变化,从而使过程对噪声因素的变化不敏感。 Taguchi [14,15]提出了使用交叉数组(内外数组)进行健壮的参数设计。交叉阵列是包含控制因子的正交阵列(OA)(内部阵列)和包含噪声因子的OA(外部阵列)的乘积。针对交叉阵列的运行大小和灵活性,一些作者在单个设计矩阵中将控制因子和噪声因子组合在一起,称为组合阵列,而不是交叉阵列。在此框架中,我们介绍了田口方法中OA的使用,将其作为设计经济运行规模的可靠参数设计的有用工具。

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