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High-Speed Phase Shifting Profilometry

机译:高速相移轮廓仪

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摘要

A microscopic 3-D shape measurement system based on a new high-speed phase shifting technique is developed and experimented. By taking advantage of the color channel switching characteristic of a commercial Digital Micromirror Device (DMD) based video projector, a potential 3-D shape measurement speed of up to 100 frames/sec can be achieved. A computer generated color fringe pattern is projected to onto an object surface. The red, green and blue channels of this pattern are programmed to be sinusoidal fringe patterns with 120 degrees in phase difference. When the color filter of the projector is removed, three grayscale fringe patterns are actually rpojected in sequence with a cycle time of approximately 10 ms. Through a stereomicroscope, the fringe patterns generated by the DMD is projected onto a small surface area of the object and then captured by a CCD camera via the same microscope objective. The 3-D microscopic shape of the object surface is reconstructed by using a phase wrapping and unwrapping algorithm. Experimental results demonstrated the feasibility of this technique for high-speed surface profile measurement.
机译:开发和实验了一种基于新型高速相移技术的微观3D形状测量系统。通过利用基于商用数字微镜设备(DMD)的视频投影仪的色彩通道切换特性,可以实现高达100帧/秒的潜在3D形状测量速度。将计算机生成的彩色条纹图案投影到对象表面上。该图案的红色,绿色和蓝色通道被编程为相位差为120度的正弦条纹图案。卸下投影仪的滤色镜后,实际上会依次喷射三个灰度条纹图案,循环时间约为10毫秒。通过立体显微镜,由DMD产生的条纹图案被投影到物体的较小表面积上,然后由CCD相机通过同一显微镜物镜捕获。通过使用相位包裹和展开算法,可以重建对象表面的3-D微观形状。实验结果证明了该技术在高速表面轮廓测量中的可行性。

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