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Design optimization using Statistical Confidence Boundaries of response surfaces: Application to robust design of a biomedical implant

机译:使用响应面的统计置信边界进行设计优化:在生物医学植入物的稳健设计中的应用

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摘要

This paper deals with the use of Statistical Confidence Boundaries (SCB) of response surfaces in robust design optimization. An empirical model is therefore selected to describe a real design constraint function. This constraint is thus approximated by a second order polynomial expansion which is fitted to numerical simulations that use a Finite Element Method (FEM). A technique is also proposed to analyze the effects of the uncertainties of the inputs of the simulations. This approach is employed to optimize the design of a biomedical wrist implant. A real optimized implant is then manufactured and tested to validate the numerical model.
机译:本文讨论了响应表面的统计置信边界(SCB)在稳健的设计优化中的使用。因此,选择一个经验模型来描述实际的设计约束函数。因此,可以通过使用有限元方法(FEM)进行数值模拟的二阶多项式展开来近似此约束。还提出了一种技术来分析模拟输入不确定性的影响。采用这种方法来优化生物医学腕部植入物的设计。然后制造并测试真正的优化植入物,以验证数值模型。

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