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Estimation of Fibre Length Distributions from Fibre Endpoints

机译:从光纤端点估计光纤长度分布

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Estimating the fibre length distribution in composite materials is of practical relevance in materials science. We propose an estimator for the fibre length distribution using the point process of fibre endpoints as input. Assuming that this point process is a realization of a Neyman-Scott process, we use results for the reduced second moment measure to derive a consistent and unbiased estimator for the fibre length distribution. We introduce various versions of the estimator taking anisotropy or errors in the observation into account. The estimator is evaluated using a heuristic for its mean squared error as well as a simulation study. Finally, the estimator is applied to the fibre endpoint process extracted from a tomographic image of a glass fibre composite.
机译:估计复合材料中的纤维长度分布在材料科学中具有实际意义。我们建议使用光纤端点的点过程作为输入的光纤长度分布估算器。假设此点过程是Neyman-Scott过程的实现,我们使用减少的第二矩量度的结果得出光纤长度分布的一致且无偏的估计量。我们介绍了各种版本的估算器,其中考虑了观测中的各向异性或误差。使用启发式方法对均方误差和仿真研究进行评估。最后,将估计器应用于从玻璃纤维复合材料的断层图像中提取的纤维终点过程。

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