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Pixelwise Phase Unwrapping Based on Ordered Periods Phase Shift

机译:基于有序周期相移的逐像素相位展开

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摘要

The existing phase-shift methods are effective in achieving high-speed, high-precision, high-resolution, real-time shape measurement of moving objects; however, a phase-unwrapping method that can handle the motion of target objects in a real environment and is robust against global illumination as well is yet to be established. Accordingly, a robust and highly accurate method for determining the absolute phase, using a minimum of three steps, is proposed in this study. In this proposed method, an order structure that rearranges the projection pattern for each period of the sine wave is introduced, so that solving the phase unwrapping problem comes down to calculating the pattern order. Using simulation experiments, it has been confirmed that the proposed method can be used in high-speed, high-precision, high-resolution, three-dimensional shape measurements even in situations with high-speed moving objects and presence of global illumination. In this study, an experimental measurement system was configured with a high-speed camera and projector, and real-time measurements were performed with a processing time of 1.05 ms and a throughput of 500 fps.
机译:现有的相移方法有效地实现了运动对象的高速,高精度,高分辨率,实时形状测量;然而,尚未建立一种能够在真实环境中处理目标对象的运动并且也对全局照明具有鲁棒性的相位展开方法。因此,在这项研究中提出了一种鲁棒且高度准确的方法,用于确定绝对相位,至少使用三个步骤。在该提出的方法中,引入了针对正弦波的每个周期重新布置投影图案的顺序结构,从而解决了相位展开问题,从而可以计算图案顺序。通过仿真实验,已经证实了所提出的方法甚至可以用于高速,高精度,高分辨率,三维形状测量中,甚至在具有高速运动物体和存在全局照明的情况下也可以使用。在这项研究中,实验测量系统配置了高速相机和投影仪,并以1.05 ms的处理时间和500 fps的吞吐量进行了实时测量。

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