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Accurate characterisation of hole geometries by fringe projection profilometry

机译:通过条纹投影轮廓测定精确表征孔几何形状

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Accurate localisation and characterisation of holes is often required in the field of automated assembly and quality control. Compared to time consuming coordinate measuring machines (CMM), fringe-projection-based 3D scanners offer an attractive alternative as a fast, non-contact measurement technique that provides a dense 3D point cloud of a large sample in a few seconds. However, as we show in this paper, measurement artefacts occur at such hole edges, which can introduce errors in the estimated hole diameter by well over 0.25 mm, even though the estimated hole centre locations are largely unaffected. A compensation technique to suppress these measurement artefacts has been developed, by modelling the artefact using data extrapolated from neighboring pixels. By further incorporating a sub-pixel edge detection technique, we have been able to reduce the root mean square (RMS) diameter errors by up to 9.3 times using the proposed combined method.
机译:在自动组装和质量控制领域通常需要精确定位和孔的表征。与耗时的坐标测量机(CMM)相比,基于边缘投影的3D扫描仪提供有吸引力的替代品,作为快速,非接触式测量技术,在几秒钟内提供大型样品的密集3D点云。然而,如我们在本文中所展示的那样,即使估计的孔中心位置大大不受影响,在这种孔边缘处发生测量伪距在这种孔边缘处发生距离超过0.25mm的漏洞。通过使用从相邻像素推断的数据建模的人工法来建立抑制这些测量人工制品的补偿技术。通过进一步掺入子像素边缘检测技术,我们能够使用所提出的组合方法将根均方(RMS)直径误差减小到9.3次。

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