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Frequency-multiplexed profilometric phase coding for three-dimensional object recognition without 2μ phase ambiguity

机译:频率多路轮廓测量相位编码,用于二维目标识别,相位不模糊2μ

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摘要

A novel phase-coding technique based on Fourier-transform profilometry (FTP) is proposed for three-dimensional object recognition. Two spatially multiplexed grating patterns of different spatial frequencies are projected simultaneously onto the objects-target, and the phase changes in the distorted patterns are detected. An algebraic addition or subtraction of these phase values is utilized to code the two-dimensional plans of the objects-target with spatial harmonic modulations. The phase-coded plans of the objects and the target are cross correlated digitally to yield a high correlation peak at the target location. The 2π ambiguity of the phase associated with FTP has been resolved in correlation results without recourse to phase unwrapping. Experimental results show an excellent discrimination capability for target recognition.
机译:提出了一种基于傅立叶变换轮廓测量法(FTP)的新型相位编码技术,用于三维物体识别。同时将两个不同空间频率的空间复用光栅图案投影到目标物体上,并检测失真图案中的相位变化。这些相位值的代数加法或减法用于对具有空间谐波调制的对象目标的二维平面进行编码。将对象和目标的相位编码计划进行数字互相关,以在目标位置产生一个高相关峰。与FTP相关联的相位的2π歧义已在相关结果中得到解决,而无需求助于相位展开。实验结果表明,该算法具有很好的目标识别能力。

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