首页> 外文期刊>International journal for uncertainty quantifications >A NONSTATIONARY COVARIANCE FUNCTION MODEL FOR SPATIAL UNCERTAINTIES IN ELECTROSTATICALLY ACTUATED MICROSYSTEMS
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A NONSTATIONARY COVARIANCE FUNCTION MODEL FOR SPATIAL UNCERTAINTIES IN ELECTROSTATICALLY ACTUATED MICROSYSTEMS

机译:静电驱动微系统空间不确定性的非平稳协方差函数模型

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This paper presents a data-driven method of estimating stochastic models that describe spatial uncertainties. Relating these uncertainties to the spatial statistics literature, we describe a general framework that can handle heterogeneous random processes by providing a parameterization for the nonstationary covariance function in terms of a transformation function and then estimating the unknown hyperparameters from data using Bayesian inference. The transformation function is specified as a displacement that transforms the coordinate space to a deformed configuration in which the covariance between points can be represented by a stationary model. This approach is then used to model spatial uncertainties in microelectromechanical actuators, where the ground plate is assumed to have a spatially varying profile. We estimate the stochastic model corresponding to the random surface using synthetic profilometric data that simulate multiple experimental measurements of ground plate surface roughness. We then demonstrate the effect of the uncertainty on the displacement of the actuator as well as on other parameters, such as the pull-in voltage. We show that the nonstationarity is essential when performing uncertainty quantification in electrostatic microactuators.
机译:本文提出了一种数据驱动的估计描述空间不确定性的随机模型的方法。将这些不确定性与空间统计文献联系起来,我们描述了一个通用框架,该框架可以通过为非平稳协方差函数提供转换函数的参数化,然后使用贝叶斯推断从数据中估计未知超参数,从而处理异构随机过程。转换函数被指定为将坐标空间转换为变形构型的位移,其中点之间的协方差可以由固定模型表示。然后,该方法用于对微机电执行器中的空间不确定性进行建模,其中假定接地板具有空间变化的轮廓。我们使用合成轮廓曲线数据来估计与随机表面相对应的随机模型,该数据模拟了地面板表面粗糙度的多次实验测量。然后,我们演示了不确定性对执行器位移以及其他参数(例如,引入电压)的影响。我们表明,在静电微执行器中执行不确定性量化时,非平稳性至关重要。

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