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The research of 3D small-field imaging system based on fringe projection technique

机译:基于条纹投影技术的3D小视场成像系统研究

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This paper presents a 3D small-field imaging system by using the color fringe projection technique to measure the small objects having large slopes and/or discontinuous surface. A stereo microscope is used to generate a small-field projecting field and to capture the deformed fringe patterns on the measured small objects, respectively. Three fringe sets having the optimum fringe numbers are coded into one major color channel to generate color fringe patterns having the maximum fringe contrast of the captured fringe images. Through one channel of the stereo microscope, a DLP (Digital Light Processing) projector projects these generated color fringe pattern images onto the measured objects surface. From another channel, the fringe patterns are deformed with regard to the object surface and captured by a color CCD camera. The absolute phase of each pixel can be calculated from the captured fringe patterns by using the optimum three-fringe numbers selection method. Experimental results on measuring 3D shape of small objects show the accuracy and availability of the developed 3D imaging system.
机译:本文提出了一种利用彩色条纹投影技术来测量具有大的坡度和/或不连续表面的小物体的3D小视场成像系统。立体显微镜用于生成小视场投影场,并分别捕获所测量的小物体上的变形条纹图案。具有最佳条纹数量的三个条纹集被编码到一个主色彩通道中,以生成具有所捕获条纹图像的最大条纹对比度的彩色条纹图案。通过立体显微镜的一个通道,一台DLP(数字光处理)投影仪将这些生成的彩色条纹图案图像投影到被测物体表面。条纹图案从另一个通道相对于物体表面变形,并由彩色CCD相机捕获。通过使用最佳三条纹数选择方法,可以从捕获的条纹图案中计算出每个像素的绝对相位。测量小物体的3D形状的实验结果表明了开发的3D成像系统的准确性和可用性。

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