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Three-dimensional measurement of object surfaces with complex shape and color distribution based on projection of color fringe patterns

机译:基于彩色条纹图案投影的复杂形状和颜色分布的物体表面的三维测量

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摘要

A challenging issue associated with three-dimensional (3D) fringe patterns profilometry (FPP) is the unwrapping of phase maps resulting from color object surfaces. This paper proposes a new color-projection-based 3D FPP, making use of the three primary color channels [i.e., red, green, and blue (RGB)] associated with digital projectors. One channel (e.g., red) is used for projecting sinusoidal fringes required by phase shift profilometry (PSP); the other two channels are employed for generating binary stripe patterns. In order to achieve reliable phase unwrapping, each fringe of the sinusoidal patterns is identified by a unique binary sequence. These sequences are then encoded by a channel-encoding scheme used in the area of communication. The encoded sequences are embedded in the binary coding stripe images, which are projected together with the sinusoidal patterns. The three image patterns are reflected by the object surface and captured by an RGB 3-CCD camera. The reflected sinusoidal patterns are employed to yield a wrapped phase map, and the binary stripe patterns are used to retrieve the encoded sequences, which are then decoded to yield the original binary sequences for phase unwrapping. Compared with existing color-encoded algorithms, the proposed approach uses binary codes instead of fringe color to identify the fringes, which are less sensitive to the disturbances caused by object surface color and illumination noises. Furthermore, use of the channel-coding scheme provides extra resistance to the disturbances caused by object surface color and illumination noises. Experimental results are presented to confirm the effectiveness of the proposed technique.
机译:与三维(3D)条纹图案轮廓测量(FPP)相关的挑战性问题是由彩色物体表面产生的相位图的展开。本文提出了一种新的基于颜色投影的3D FPP,它利用了与数字投影仪相关的三个主要颜色通道[即,红色,绿色和蓝色(RGB)]。一个通道(例如红色)用于投影相移轮廓仪(PSP)所需的正弦条纹;其他两个通道用于生成二进制条纹图案。为了实现可靠的相位展开,正弦波模式的每个条纹都由唯一的二进制序列标识。然后,通过通信领域中使用的信道编码方案对这些序列进行编码。编码的序列嵌入到二进制编码的条带图像中,并与正弦波模式一起投影。这三个图像图案被物体表面反射并由RGB 3-CCD相机捕获。反射的正弦波模式用于产生包裹相位图,二进制条纹模式用于检索编码序列,然后将其解码以产生原始二进制序列用于相位展开。与现有的颜色编码算法相比,该方法使用二进制代码代替条纹颜色来识别条纹,这些条纹对物体表面颜色和照明噪声造成的干扰不太敏感。此外,信道编码方案的使用为由物体表面颜色和照明噪声引起的干扰提供了额外的抵抗力。提出了实验结果以证实所提出技术的有效性。

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