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Microscopic phase-shifting profilometry based on digital micromirror device technology

机译:基于数字微镜器件技术的显微相移轮廓仪

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摘要

A microscopic three-dimensional (3-D) shape measurement system based on digital fringe projection has been developed and experimentally investigated. A Digital Micromirror Device along with its illumination optics is integrated into a stereomicroscope, which projects computer-generated fringe patterns with a sinusoidal intensity profile through the microscope objective onto the object surface being measured. The fringe patterns deformed by the object surface are recorded by a CCD camera. The microscopic 3-D shape of the object surface is measured and reconstructed by use of a phase-shifting technique. We discuss design considerations and error analysis of the system. Experimental results successfully demonstrate the capability of this technique for surface profile measurement of rough surfaces at the micrometer level.
机译:基于数字条纹投影的微观三维(3-D)形状测量系统已经开发并进行了实验研究。数字微镜设备及其照明光学器件被集成到体视显微镜中,该立体显微镜将计算机生成的带有正弦强度轮廓的条纹图案通过显微镜物镜投射到被测物体表面上。由物体表面变形的条纹图案由CCD相机记录。通过使用相移技术来测量和重建物体表面的微观3-D形状。我们讨论系统的设计注意事项和错误分析。实验结果成功地证明了该技术在微米级别上测量粗糙表面的表面轮廓的能力。

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