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首页> 外文期刊>Journal of intelligent material systems and structures >Active subspace analysis and uncertainty quantification for a polydomain ferroelectric phase-field model
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Active subspace analysis and uncertainty quantification for a polydomain ferroelectric phase-field model

机译:多域铁电相场模型的主动子空间分析和不确定性量化

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摘要

We perform parameter subset selection and uncertainty analysis for phase-field models that are applied to the ferroelectric material lead titanate. A motivating objective is to determine which parameters are influential in the sense that their uncertainties directly affect the uncertainty in the model response, and fix noninfluential parameters at nominal values for subsequent uncertainty propagation. We employ Bayesian inference to quantify the uncertainties of gradient exchange parameters governing 180 degrees and 90 degrees tetragonal phase domain wall energies. The uncertainties of influential parameters determined by parameter subset selection are then propagated through the models to obtain credible intervals when estimating energy densities quantifying polarization and strain across domain walls. The results illustrate various properties of Landau and electromechanical coupling parameters and their influence on domain wall interactions. We employ energy statistics, which quantify distances between statistical observations, to compare credible intervals constructed using a complete set of parameters against an influential subset of parameters. These intervals are obtained from the uncertainty propagation of the model input parameters on the domain wall energy densities. The investigation provides critical insight into the development of parameter subset selection, uncertainty quantification, and propagation methodologies for material modeling domain wall structure evolution, informed by density functional theory simulations.
机译:我们对应用于铁电材料钛酸铅的相场模型执行参数子集选择和不确定性分析。一个激励目标是确定哪些参数具有一定的影响力,即它们的不确定性直接影响模型响应中的不确定性,并将无影响的参数固定在名义值上,以便随后进行不确定性传播。我们使用贝叶斯推断来量化控制180度和90度四方相畴壁能量的梯度交换参数的不确定性。由参数子集选择确定的有影响力的参数的不确定性随后通过模型传播,从而在估算能量密度(量化跨域壁的极化和应变)时获得可靠的区间。结果说明了Landau的各种特性和机电耦合参数及其对畴壁相互作用的影响。我们使用能量统计来量化统计观测值之间的距离,以比较使用一组完整的参数与有影响力的参数子集构造的可信区间。这些间隔是从模型输入参数在畴壁能量密度上的不确定性传播中获得的。通过密度泛函理论仿真,该研究为材料子域壁结构演化的参数子集选择,不确定性量化和传播方法的开发提供了重要的见识。

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