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Economic, Robust and Quality Design of Engineering Systems using a Hybrid Six Sigma-second Moment Approach

机译:使用混合六西格玛秒矩方法的工程系统的经济,稳健和质量设计

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摘要

This paper presents a new approach to rationally allocate means and tolerances in engineering systems at the design stage. Features of second-moment methods and Design for Six Sigma methods are combined. Either point or global variance methods may be invoked to model the uncertainty in the design variables. Shortcomings of Taguchi's expected loss function and the need to integrate over the failure region in probabilistic methods are obviated. Multiple responses, each with any of the performance metrics including target-is-best, smaller-is-best and larger-is-best, are handled. The novelty of the approach is that cost or quality may serve as an objective with the other serving as a constraint in the optimization process. The impact of the method is that it reinforces quality concepts from Six Sigma design while ensuring that robustness is maximized. Two diverse case studies justify the methodology.
机译:本文提出了一种在设计阶段合理分配工程系统中均值和公差的新方法。结合了第二矩方法的功能和六西格玛方法的设计。可以调用点或全局方差方法来对设计变量中的不确定性进行建模。避免了Taguchi预期损失函数的缺点以及在概率方法中对故障区域进行积分的需求。处理多个响应,每个响应具有任何性能指标,包括目标为最佳,较小为最佳和较大为最佳。该方法的新颖之处在于,成本或质量可以作为目标,而另一个可以作为优化过程的约束。该方法的影响在于,它增强了六西格码(Six Sigma)设计中的质量概念,同时确保了鲁棒性的最大化。两个不同的案例研究证明了该方法的合理性。

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