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Dynamic Phase Measuring Profilometry Based on Tricolor Binary Fringe Encoding Combined Time-Division Multiplexing

机译:基于三色二进制条纹编码和时分复用的动态相位测量轮廓图

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A dynamic phase measuring profilometry (PMP) based on tricolor binary fringe combined time-division multiplexing principle is proposed. Only one tricolor binary fringe combined by red (R), green (G), and blue (B) binary fringes with the same fringe width but without any color overlapping one another is needed and sent into the flash memory of a high-speed digital light projector (HDLP) in advance. A specialized time-division multiplexing timing sequence is designed to control the HDLP to project the tricolor binary fringe saved in the flash memory onto the measured dynamic object separately and sequentially at 234 fps, at the same time, the projected light source mode is set as monochrome mode which means that all the RGB LEDs remain lighting. Meanwhile, it also triggers a high frame rate monochrome camera synchronized with the HDLP to capture the corresponding deformed patterns in R, G and B channels. By filtering, the nearly unbroken phase-shifting sinusoidal deformed patterns for three-step PMP can be extracted from the captured deformed patterns. It is equivalent to the three-dimensional (3D) shape reconstruction of the measured dynamic object at 78 fps. Experimental results verify the feasibility and the validity of the proposed method. It is effective for measuring the dynamic object and can avoid the color cross-talk effectively.
机译:提出了一种基于三色二元条纹时分复用原理的动态相位测量轮廓仪(PMP)。仅需要一个三色二进制条纹,该条纹由红色(R),绿色(G)和蓝色(B)二进制条纹组合而成,具有相同的条纹宽度,但彼此之间没有任何颜色重叠,并将其发送到高速数字闪存中预先投影机(HDLP)。设计了专门的时分多路复用时序,以控制HDLP将闪存中保存的三色二进制条纹分别以234 fps的顺序依次投影到被测动态对象上,同时,将投影光源模式设置为单色模式,这意味着所有RGB LED均保持点亮状态。同时,它还触发了与HDLP同步的高帧速单色相机,以捕获R,G和B通道中的相应变形图案。通过滤波,可以从捕获的变形图案中提取用于三步PMP的几乎完整的相移正弦形变形图案。它等效于以78 fps进行的动态对象的三维(3D)形状重建。实验结果验证了该方法的可行性和有效性。它对于测量动态物体非常有效,并且可以有效避免色彩串扰。

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