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Color fringe-projected technique for measuring dynamic objects based on bidimensional empirical mode decomposition

机译:基于二维经验模态分解的彩色条纹投影动态物体测量技术

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摘要

A triple-frequency color fringe-projected technique is presented to measure dynamic objects. Three fringe patterns with a carrier frequency ratio of 1:3:9 are encoded in red, green, and blue channels of a color fringe pattern and projected onto an object's surface. Bidimensional empirical mode decomposition is used for decoupling the cross talk among color channels and for extracting the fundamental frequency components of the three fringe patterns. The unwrapped phase distribution of the high-frequency fringe is retrieved by a three-step phase unwrapping strategy to recover the object's height distribution. Owing to its use of only a single snapshot, the technique is suitable for measuring dynamically changing objects with large discontinuity or spatially isolated surfaces.
机译:提出了一种三频彩色条纹投影技术来测量动态物体。载频比为1:3:9的三个条纹图案分别在彩色条纹图案的红色,绿色和蓝色通道中编码,并投影到对象的表面上。二维经验模式分解用于将颜色通道之间的串扰去耦,并提取三个条纹图案的基频分量。通过三步相位展开策略来检索高频条纹的展开相位分布,以恢复对象的高度分布。由于仅使用单个快照,该技术适用于测量具有较大不连续性或空间隔离表面的动态变化对象。

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