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Intensity range extension method for three-dimensional shape measurement in phase-measuring profilometry using a digital micromirror device camera

机译:使用数字微镜设备相机进行相位测量轮廓图中的三维形状测量的强度范围扩展方法

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摘要

Phase-measuring profilometry is an accurate and effective technique for performing three-dimensional (3D) shape and deformation measurements of diffuse objects by fringe projection. However, phase analysis cannot be performed in underexposed or overexposed areas of the detector when an object with wide reflectance is measured. A novel intensity range extension method using a digital micromirror device (DMD) camera is proposed. In the optics of the DMD camera, each pixel of the CCD corresponds exactly to each mirror of the DMD. The phase-shifted fringe patterns with high contrast can be easily captured by programming an inverse intensity pattern that depends on the reflectance of the object. Our method can provide a wider intensity range and higher accuracy for 3D shape measurement than other conventional methods in both underexposed and overexposed areas. The measurements of a replica of a metallic art object and a flat plane are analyzed experimentally to verify the effectiveness of our method. In the experiment, the percentage of invalid points due to underexposure and overexposure can be reduced from 20percent to 1percent.
机译:相位测量轮廓仪是一种通过条纹投影执行漫射对象的三维(3D)形状和变形测量的准确有效的技术。但是,在测量反射率较宽的物体时,无法在检测器的曝光不足或曝光过度的区域中进行相位分析。提出了一种使用数字微镜器件(DMD)相机的强度范围扩展方法。在DMD摄像机的光学系统中,CCD的每个像素都与DMD的每个镜面完全对应。通过对取决于物体反射率的反强度图案进行编程,可以轻松捕获具有高对比度的相移条纹图案。在曝光不足和曝光过度的区域,我们的方法可为3D形状测量提供比其他传统方法更宽的强度范围和更高的精度。实验分析了金属艺术品的复制品和平面的测量结果,以验证我们方法的有效性。在实验中,由于曝光不足和曝光过度而导致的无效点百分比可以从20%降低到1%。

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