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Error-corrected fringe discrimination using nonary-encoded patterns for phase-shifting projected fringe profilometry

机译:利用非读取图案进行误差校正条纹辨别,用于相移投影条纹轮廓测量法

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摘要

Most 3D profile measurements based on phase-shifting techniques require additional projected patterns to identify fringe orders for the task of phase unwrapping. The total number of projections is usually more than that used for phase extraction. For surfaces with low signal-to-noise ratios, these approaches might further encounter challenges in phase unwrapping. In this study, an error-corrected scheme for fringe discrimination using nonary-encoded patterns is presented. There is no need to take additional projections for phase unwrapping. The fringe patterns used for phase extraction can be analyzed to obtain the absolute phase directly. Any two adjacent fringes on the inspected surface can be discerned. To identify fringes for surfaces which are projected by only two fringes is available. Even though one of the projected fringes is decoded incorrectly, the error-corrected scheme can detect such a mistake and recover the fringe order.
机译:基于移相技术的大多数3D轮廓测量需要额外的投影模式来识别相位展开任务的边缘订单。 预测总数通常比用于相位提取的总数。 对于具有低信噪比的表面,这些方法可能进一步遇到相位展开中的挑战。 在该研究中,介绍了使用非碱定模式的用于边缘辨别的纠错方案。 没有必要采取额外的预测进行相位展开。 可以分析用于相萃取的条纹图案直接获得绝对相。 检查表面上的任何两个相邻的条纹都可以辨别出来。 要识别仅有两个条纹的表面的条纹。 尽管其中一个投影的条纹被错误地解码,但纠正的方案也可以检测到这样的错误并恢复边缘顺序。

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