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An Uncertainty Estimator for Slitting Method Residual Stress Measurements Including the Influence of Regularization

机译:用于切割方法的不确定性估计器,包括规则化的影响

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摘要

This paper describes the development of a new uncertainty estimator for slitting method residual stress measurements. The new uncertainty estimator accounts for uncertainty in the regularization-based smoothing included in the residual stress calculation procedure, which is called regularization uncertainty. The work describes a means to quantify regularization uncertainty and then, in the context of a numerical experiment, compares estimated uncertainty to known errors. The paper further compares a first-order uncertainty estimate, established by a repeatability experiment, to the new uncertainty estimator and finds good correlation between the two estimates of precision. Furthermore, the work establishes a procedure for automated determination of the regularization parameter value that minimizes total uncertainty. In summary, the work shows that uncertainty in the regularization parameter is a significant contributor to the total uncertainty in slitting method measurements and that the new uncertainty estimator provides a reasonable estimate of single measurement uncertainty.
机译:本文介绍了用于切割方法残留应力测量的新不确定性估计器的开发。新的不确定性估计人员在残余应力计算程序中包含的基于正规化的平滑中的不确定性,称为正则化不确定性。该工作描述了一种量化正则化不确定性的方法,然后在数值实验的上下文中,将估计的不确定性与已知误差进行比较。本文进一步比较了通过重复性实验建立的一阶的不确定性估计,到新的不确定性估计器,并在精度的两个估计之间找到良好的相关性。此外,该工作建立了一个自动确定正则化参数值的过程,最小化总不确定性。总之,该工作表明,正则化参数中的不确定性是分切方法测量中的总不确定性的重要因素,并且新的不确定性估计器提供了合理的单一测量不确定性估计。

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