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Study of 3D solder-paste profilometer by dual digital fringe projection

机译:双数字条纹投影技术研究3D锡膏轮廓仪

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In a 3D profilometer by the fringe projection, the shadow will be produced inevitably, thus the fringes cannot be detected in the region of the shadow. In addition, a smooth surface or a metal surface produces the specular reflection, and then, no projection fringe can be recorded in the region of oversaturation on CCD. This paper reveals a proposed system for improved these defects and shows some preliminary improved 3D profiles by the proposed dual fringe projection. To obtain the profile of sample hided in the shadow and the oversaturation, this study used the dual-projection system by two projectors. This system adopted two different directions of fringe projection and illuminates them alternately, therefore, the shadow and the oversaturation produced in their corresponding locations. Two raw 3D profiles obtained from taking the dual-projection by the four-step phase-shift. A set of algorithms used to identify the pixels of the shadow and the oversaturation, and create an error-map. According to the error-map to compensate, two 3D profiles merged into an error-reduced 3D profile. We used the solder paste as a testing sample. After comparatively analyzing the 3D images obtained by our measurement system and by a contact stylus profilometer, the result shows that our measurement system can effectively reduce the error caused by shadows and oversaturation. Fringe projection system by using a projector is a non-contact, full field and quickly measuring system. The proposed dual-projection by dual-projectors can effectively reduce the shadow and the oversaturation errors and enhance the scope of application of the 3D contour detection, especially in the detection of precision structure parts with specular reflection.
机译:在通过条纹投影的3D轮廓仪中,不可避免地会产生阴影,因此无法在阴影区域中检测到条纹。另外,光滑的表面或金属表面会产生镜面反射,因此,在CCD的过饱和区域中无法记录任何条纹。本文揭示了一种用于改善这些缺陷的提议系统,并通过提出的双条纹投影显示了一些初步改进的3D轮廓。为了获得隐藏在阴影和过饱和状态下的样本的轮廓,本研究使用了两台投影仪的双投影系统。该系统采用了条纹投影的两个不同方向并交替照射它们,因此,阴影和过饱和在它们的相应位置产生。通过四步相移获取双投影获得的两个原始3D轮廓。一组算法,用于识别阴影和过饱和的像素,并创建误差图。根据要补偿的误差图,两个3D轮廓合并为减少误差的3D轮廓。我们将焊膏用作测试样品。通过比较分析我们的测量系统和接触式测针轮廓仪获得的3D图像,结果表明我们的测量系统可以有效地减少阴影和过饱和引起的误差。使用投影仪的边缘投影系统是一种非接触式全视场快速测量系统。提出的双投影仪双投影技术可以有效减少阴影和过饱和误差,并扩大了3D轮廓检测的应用范围,尤其是在镜面反射精密结构零件的检测中。

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