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Indexing electron backscatter diffraction patterns with a refined template matching approach

机译:用精细模板匹配方法索引电子反向散射衍射图案

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摘要

Electron backscatter diffraction (EBSD) is a well-established method of characterisation for crystalline materials. Using this technique, we can rapidly acquire and index diffraction patterns to provide phase and orientation information about the crystals on the material surface. The conventional analysis method uses signal processing based on a Hough/Radon transform to index each diffraction pattern. This method is limited to the analysis of simple geometric features and ignores subtle characteristics of diffraction patterns, such as variations in relative band intensities. A second method, developed to address the shortcomings of the Hough/Radon transform, is based on template matching of a test experimental pattern with a large library of potential patterns. In the present work, the template matching approach has been refined with a new cross correlation function that allows for a smaller library and enables a dramatic speed up in pattern indexing. Refinement of the indexed orientation is performed with a follow-up step to allow for small alterations to the best match from the library search. The refined template matching approach is shown to be comparable in accuracy, precision and sensitivity to the Hough based method, even exceeding it in some cases, via the use of simulations and experimental data collected from a silicon single crystal and a deformed alpha-iron sample. The speed up and pattern refinement approaches should increase the widespread utility of pattern matching approaches.
机译:电子反向散射衍射(EBSD)是一种良好的结晶材料表征方法。使用这种技术,我们可以快速获取和折射衍射图案,以提供关于材料表面上晶体的相位和取向信息。传统的分析方法使用基于Hough / Radon变换的信号处理来索引每个衍射图案。该方法仅限于简单几何特征的分析,忽略衍射图案的微妙特性,例如相对频带强度的变化。开发用于解决Hough / Radon变换的缺点的第二种方法,基于测试实验模式与大型潜在模式的模板匹配。在目前的工作中,模板匹配方法已被精制,具有新的跨相关函数,允许更小的库,并在模式索引中启用戏剧性加速。使用后续步骤执行索引方向的改进,以允许对库搜索的最佳匹配进行小的更改。通过使用从硅单晶和变形的α-铁样品收集的模拟和实验数据,精确,精确,精度和敏感性的精度,精度和敏感性的精度,精确度和敏感性均可相当,甚至超过它,甚至在某些情况下超过它。加速和模式细化方法应增加模式匹配方法的广泛效用。

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